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Autonomic Pharmacology (Ar) - Lec 03 - Epinephrine

1:08:27EnglishTranscribed Jul 20, 2026
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Hello everyone We will specify

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this video for illustration of sympathomimetics first of all ,what does sympathomimitcs mean ?

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In the past video I told you about the  adrenergic receptors , do you remember them ?

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Alpha 1 alpha 2 beta 1 beta 2 and beta 3 We have a rule stating that any drug activating

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these receptors either all of them or  part of them is termed sympathomimetic

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In other words any drug that  has an effect resembling or

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mimicking the stimulation of sympathetic system Is termed sympatho …. Sympathomimetic ..something

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imitating the sympathetic stimulation Okay .. this sympathomimetic family is such

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a large one it has so many drugs  which we will study together

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Now how are they classified ? They are classified by two

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methods .. the first one is according to their  mechanism or mode of action ….the way they act

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The second method is more of a  chemical one … they are classified

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according to their chemical nature I tell you the advantages of each

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classification and why we are doing this Acoording to the mechanisim of action

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imaing if this is a nerve ending ..adrenergic  or sympathetic nerve ending releasing nor

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epinephrine as you already know this norepinephrine is released to

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act on alpha and beta as you already know now if the drug which is applied externally

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is going directly to these receptors and I told you it doesn`t have to stimulate

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all of them it can only stimulate some  of them such as a certain subtype

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if the drug is stimulating alpha and beta  at the first hand then it is called direct

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acting sympathomimetic , it acts directly however it can act through another indirect

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method it may not go to the receptors but it go  to the nerve ending releasing norepinephrine

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in this method it didn`t go the receptors  directly instead it went to the norepinephrine

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releasing it from the nerve ending but is there another method ? that`s possible

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you can disable the enzyme you know as MAO what would happen if you give me MAO

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inhibitor ? this MAO enzyme is disabled so  norepinephrine present in the nerve ending won`t

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get broken thus its level is increased … activating the receptors which will

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result in sympathetic stimulation this is how we classify them according to mode

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or the mechanism of action by which they work again … direct means it works on the receptors

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… indirect means it either releases  norepinephrine from the nerve ending

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or disables this MAO enzyme now we have finished the first

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title … direct and indirect sympathomimetics then according to the chmical nature

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we are going to see the advantage behind  this chmical classification although I

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told you that we don`t care much about  chemistry Except in the narrowest limits

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you know that there is an amino  acid called tyrosine this tyrosine

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undergoes hydroxylation turning into dopa which is then decarboxylated into dopamine

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…again this dopamine undergoes  hydroxylation turning into noradrenaline

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and nor adrenaline is methylated  turning into adrenaline

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this is what you had studied in biochemistry now remember that tyrosine structures has a

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ring like this … we will later  call this ring catechol ring

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this ring has OH here and OH here so  there are two OH attaching to it

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this ring is preserved when tyrosine  turns into dopa then dopamine

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it is kept with all of these compounds then all of these compounds dopa dopamine

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noradrenaline or adrenalie they all keep this original

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tyrosine ring which we call catechol ring then all of these compounds and everything similar

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any compound other than these having this ring is called catecholamine .. cate chol amine

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but what about those that doesn`t have a ring ? if there are drugs stimulating sympathetic system

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and they don`t have this ring then  they are called noncatecholamine

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why are we saying this ? when a drug have this catechol

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ring like these drugs dopa dopamine and so on this ring as you can see has two OH groups and

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these OH groups are water soluable  so they are the ones making

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these drugs water soluble and you know  that anything in order to be absorbed

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any drug swallowed orally in order to  be absorbed and reach the circulation

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it shouldn`t be water soluble  instead it should be lipid soluble

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so these two OH groups are the reason  why these drugs are not absorbed orally

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and these two Oh groups are also the reason why  these drugs can`t cross the blood brain barrier

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when we are asked why can`t these  drugs cross the blood brain barrier ?

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we say because it contain catechol ring but truth  to be old it is not because of the catechol ring

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it is the two OH groups and sometimes  there are a third one .. they are the

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ones preventing drugs from being absorbed  or crossing the blood brain barrier

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not only this but any catecholamine  can be broken down by MAO and COMT

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and it is destroyed within minutes  3 or 4 minutes at the latest

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so we are classifying catecholamine  sometimes according to chemistry

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whether they contain catechol  ring and called catecholamine

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or desn`t contain catechol ring  and called non catecholamine

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thus if you say your drug is catecholamine  then take into consideration that it has

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these four qualities I told you about any catecholamine .. any drug containing

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this ring is not absorbed orally cannot cross the blood brain

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barrier .. destroyed by MAO and COMT doesn`t last for minutes in your body

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but is there a way for these drugs to be absorbed  and cross the blood brain barrier and so on ?

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of course there is a way … remove these two  OH groups that are making these problems

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however when you remove these OH groups from the  structure it is no longer called catechol ring

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so you converted this compound from  catecholamine into noncatechoamine

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okay .. this was about the  classification of sympathomimetics

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now when we study the sympathomimetics  we will pick the drugs in order .. and

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discuss them one by one we will begin with the most important

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member of the family which is adrenaline the most important drug in the family is

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always called prototype .. Prototype when you see a large family of drugs and

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there is one major important drug it is always called prototype

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then adrenaline .. it is the  prototype of all sympathomimitics

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so we will discuss it in detail and the rest  of drugs will be explained in relation to it

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one or two line in relation to it … thus  we will discuss adrenaline in detail

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now lets talk about this adrenaline first of all adrenaline is not the

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scientific term the scientific term  is epinephrine .. epinephrine

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what is its story ? epinephrine is the chemical transmitter that you

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know present inside sympathetic nervous system not only this but it is the one released from the

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gland you know as suprarenal medulla so it is natural in your body

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when they discovered it in nineteen  hundred or in eighteen ninty five

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they could isolate the epinephrine  or extract it from the suprarenal

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and they later could synthesize it  in labs .. when they synthesized

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it in labs in 1904 ninteen zero four the company which chemically synthesized

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it … it called it adrenaline thus this adrenaline had become

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his trade name .. hence if you want to  be scientifically exact use epinephrine

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the trade name is adrenaline but since it is  a very old well known name then books are now

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using these two names interchangeably with each other so you can see both

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names in books they are both correct still the more scientific name is epinephrine

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okay … for each drug scpecially when it  is a prototype and an important one

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you will have to talk about a group of  headlines so we don`t get confused

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the first headline is chemistry …  of the drug we are talking about

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two .. pharmacokinetics and we will  explain what does kinetics mean soon

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three the mechanisim of action … how does it

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work in your body ? four .. what are its

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uses … in which diseases you need it five .. how do you give this drug ? in

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other words administration ? how can you  administer this drug ? orally ..by syringes

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or in what way ? six what are the

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adverse effects that we don`t desire adverse effects are sometime called side effects

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however the term adverse effects is better because  it mean they are undesirable unlikable effects

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seven … the contraindications …  contraindications means specific

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situations in which a drug should not be used eight if there are certain precautions .. warnings

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and recommendations during drug  administration so you don`t cause preoblems …

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what do you think is the safe drug safe drug is the drug which

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the patient hasn`t taken yet once the patient receives a drug from you or it

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enters his body then it has become unsafe you can`t get it out

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that is why we are teaching you all of these  headlines so you know what you are doing

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now back to adrenaline … let`s  begin with its chemistry

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first of all and as I told you before ..  adrenaline is something natural in your body

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here it is formed in the never ending and in  the suprarenal gland …. Thus it is natural

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okay ? it is natural and its chemical  structre contains this ring which I told

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you about called catechol ring and has OH groups … so it is

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natural catecholamine in my body but then do you think that adrenaline

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present in this bolus is extracted from humans ? of course not … it was chemically synthesized

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by a drug company and when it was firstly

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synthesized by this company .. it was in  the form of crystals like sugar crystals

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the sugar we eat .. the pure adrenaline  or epinephrine is originally crystals

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like sugar crystals but it order to be

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admistered it must dissolve in water so the company dissolved it in water

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and released it in small boluses like this but when the company released it in boluses

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they observed something important they observed that when adrenaline

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crystals dissolve in water they  don`t remain as such for long time

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because they are unstable ..unstable means they  are rapidly broken or oxidized … they change

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so if adrenaline remains in its bolus or if you  draw it but left it the syringe for long period

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it might be oxidized by the air sometimes it  is not the air but it is the light itself

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and this process is called photoionization

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so that is why sometimes  when you draw epinephrine

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but keep in mind that when you draw epinephrine by  a syringe its colour should be clear like water

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this is the sound epinephrine not the expired  however sometimes you may see a bolus like this

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it is also epiniphine … I`ll put them both  beside one another and hopefully you can see

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and spot the difference sometimes you see another

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epinephrine blus but its color is darker if you draw this darkcolored bolus by the syringe

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its color will be like this .. tea color where did this dark color come

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from ? it is because this one is expired … long  period had passed so it is damaged by light

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or if it was exposed to air  then it is damaged by oxygen

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this brown compound you see is  called adrenochrome … adrenochrome

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this adrrenochrome is not adrenaline  … adrenochrome … this is toxic .. this

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brown compound is toxic in other words when you draw

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adrenaline by the syringe if you noticed its  color has changed then don`t administer it

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this one is expired and it is no longer of use okay … when the company made epinephrine

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and dissolved it in the bolus they made this bolus one milli

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this is the bolus … they designed it to  contain one milli .. one milli liter

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and they dissolved in this  one milliliter one milligram

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so it is one milligram  dissolved in one milliliter

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this concentration means it  is one per one thousand

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because if you dissolve one gram in one milliliter  …. Gram in milli .. then this is one to onw

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but you dissolved one milligram in one milliliter  …. One milligram is one per thousand of a gram

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so the concentration in this  bolus is one per thousand

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when I tell you that we use epinephrine solution  with a concentration of one per thousand

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it doesn`t mean that we dilute  this bolus by one thousand

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we don`t dilute it with water the  compay is already producing them

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diluted by one thousand they are ready for use so this bolus is a one per thousand solution

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… this is about its chemical composition ... we  said that it is a natural catecholamine and I told

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you how it is manufactured and produced now let`s discuss the second

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headline … pharmacokinetics When we say pharmacokinetics … kinetics

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means the motion of the drug ..when you say  kinetic it means the motion of something

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what does motion mean ? it means four topics  which are absorption how about its absorption

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Distribution … how it spreads throughout  the body and to which tissues

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Metabolism .. how it gets broken Excretion ? from where does it

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exit ? and in what form ? Now about the absorption … I

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told you adrenaline has catechol ring Could it be absorbed orally ? can I make

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adrenaline pills ? the answer is  no because the catechol ring is

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preventing its absorption not only this … it is not only prevented by the catechol

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ring…but you also have in your  intestine MAO and COMT enzymes

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so even if it didn`t contain catechol  ring ..MAO and COMT would destroy it

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before it reach the circulation Then its oral absorption is not

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available .. so what about the skin  … can I put adrenaline on my skin

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I`ll tell you later it causes vasoconstriction  so its absorption is very minimal

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Because when it makes vasoconstriction  this area won`t have sufficient blood so

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its absorption is decreased But what about the eye ? can

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we make it eyedrops We used to say that if adrenaline

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is made into eyedrops and installed  in eyes it woldn`t be absorbed

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Why ? they said because tears is  alkaline and it destroys adrenaline

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Later it was found out this isn`t  scientifically accurate … because adrenaline

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can be indeed absorped into the eyes Not only absorbed but it may also reach

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the heart resulting in systemic effect But anyway its absorption into the eye is

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little …. So it could be absorbed via conjunctival  sac in the eye but its absorption is little

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They later made a better form of adrenaline  with better absorption called di pivalyl

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adrenaline ..di pivalyl adrenaline This word di pivalyl refers to better

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absorption into the eyes .. so it could be  available when we need it for the eyes

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So there is no oral absorption ..skin  absorption is sluggish very little amount

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is absorbed due to vasoconstriction …it could be absorbed into the eyes

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but it is better to use the other  form called di pivalyl adrenaline

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It can also be taken by breathing …. Breathing  means by inhalation …we take this bolus .. brake

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it and dissolve it in water Then we add this solution to

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a device called nebulizer … nebulizer is a  device that vapors the water by ultrasound

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the patient can inhale the water vapor  containing adrenaline so it can be

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absorbed by the lungs and acts locally there.. now about the second headline , distribution

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when I gave you adrenaline it  spreads throughout your body

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but could I ask you a question ? can it reach the CNS … can it cross the blood

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brain barrier ? the answer is no …. why ? you know it can`t cross the blood brain

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barrier because it has catechol  ring preventing it from this

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thus it can spread anywhere but the brain … the  brain is forbidden from external adrenaline

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but don`t allow anyone to trap you …. The  brain is filled with adrenaline however the

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brain is locally synthesizing this adrenaline adrenaline is synthesized within the nerve body

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….CNS synthesizes adrenaline and uses it  as a chemical transmitter but externally

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admistered adrenaline doesn`t reach the brain does the brain contain adrenaline ? that’s certain

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from where ? it is synthesized there okay … now the metabolism …. I told you that

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adrenaline is broken down by something  called MAO and COMT within minutes

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the bolus you take doesn`t last for  two or three minutes in your body

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but in what form is it excreted ? I told you  in a previous video that adrenaline is broken

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down and converted into two compounds a compound called metaniphrine if you

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remember .. do you remember metaniphrine ? the other compound which is more well known

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and present in your book .. it  is called valenyl mandelic acid

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it is excreted in urine in this form … do you  remember when I told you that when we find high

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level of epinephrine or its metabolites it means this patient may have a certain

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tumor .. do you remember ? which  is called phenochromocytoma

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this is about pharmacokinetics …. But  then a drug that is not absorbed orally

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nor it is absorped from the skin then I have to use it in the form of

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boluses … so it is administered by syringes  ….and when we use this adrenaline syringe

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it is better to be administered subcutaneously  …subcutaneous means beneath the skin

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then can it be given by IV route ? IV means in the  vein .. yes but it is dangerous …we fear this

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it is extremely unfavorable unless it is highly  indicated in the case then you can give it by IV

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there is a risk to cause a heart problem if given  by IV so it is better to give it subcutaneously

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or sometimes by intramuscular route in the muscles … we fear this IV route

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…because it could cause a heat problem and it  could lead to a type of dangerous arrhythmias

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called ventricular fibrillation now we explained its pharmacokinetics

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and how can it be administered the mechanism of action of the epinephrine

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I told you that epinephrine is the natural  transmitter present in your body and responsible

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for activation of the sympathetic nervous system Naturally it can activate all of these receptors

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from alpha to beta all of  them by the same degree

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It is not biased to any type of the receptors  ..it activates them all by the same degree

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However its effect on alpha two is not  apparent … its effect can be apparent on

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them all except for alpha two For some reasons

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First of all is because this alpha two is  presynaptic …if you remember … presynaptic

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means it is present in the nerve endings And in the central nervous system

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thus adrenaline don`t reach it The dose of adrenaline we use can`t

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be sufficient to stimulate alpha two receptors  which are presynaptic and somehow far away

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Even if it reached them … the second reason  … even if it reached alpha two receptors

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What is the function of this alpha two ? its  function in the first place is to decrease

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the natural nor adrenaline release in your body So when we give external adrenaline then it should

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decrease the internal norepinephrine But then external adrenailine

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covers this effect That`s why we never discuss

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its effect on alpha two receptor .. we always  explain its effect on alpha one and all of betas

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But its effect on alpha two is not apparent and  not clinically significant nor it is important

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Now when adrenaline stimulate these  receptors … do you remember when I

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told you that when alpha one is activated It activates a second messenger .. do you

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remember its name ? it is called G Q so  it increases a substance called IP3

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Which increases calcium level … do you  remember this from the last video ?

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And when it stimulates all of the betas it  increases a substance called cyclic AMP which

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activates many protein kinases Resulting in diverse range of

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effects according to the receptor This is according to the molecular

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mechanism …so when I ask you about the  mechanism of action of adrenaline

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Tell me it stimulates all of  the adrenergic receptors alpha

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1 alpha 2 beta 1 beta 2 and beta 3 But if I ask you about the molecular

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mechanism .. then you should tell me about these  effects on the level of alpha and beta receptors

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However I may ask you about the effects  .. you told me that it activates

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these receptors .. correct But what are the manifestations

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of these effects o the patients ? Don`t tell me it activates the receptors

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and stop ..you must tell what will happen to  the patient when we activate these receptors

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I can easily summarize this and tell you when we  administer adrenaline subcutaneously it can make

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all the effects you know from the past video … think about the sites and functions of alpha

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and mention them Think about the sites

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and functions of beta one and so on But we tend to care about the relevant

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effects ..the very prominent ones When I give adrenaline bolus what

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do I see Immediately ? So if we think about the

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heart .. needless to say effects on the heart  are the most important effects we have

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So if you hold the heart what would you see ? You can see that epniphrine immediately increases

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the heart rate and increase  the force of contraction

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Since it increases the heart rate then it is  termed psoitive chronotropic .. chronotropic

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means it increases the heart rate Since it increases the force of contraction then

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it is called positive inotropic … that’s okay ? So instead of explaining the heart rate and

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contractility you can just say adrenaline is  positive inotropic and positive chronotropic

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But what happens if it level  is slightly increased

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This is bad it causes arrhythmia  th heart is confused .. and if

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its level is increased further Arrhythmia turns into a dangerous

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form of arrhythmia called ventricular fibrillation  the heart could stop and the patient could die

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If this is an ECG .. cardiography of a normal  person … it continues like this .. for example

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If you give epinephrine in a therapeutic dose  .. therapeutic dose means the exact required

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quantity to induce the desired effect Which is like this bolus here …this

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bolus is called therapeutic dose … this  milli is therapeutic or sometimes we

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suffice with half of the bolus If you give this dose .. heart rate

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becomes like this .. do you see this  … this is tacky cardia .. okay ?

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and if its level is slightly increased … this  tacky cardia starts to be disordered .. it

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becomes disordered tachycardia but if its level is increased even

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further … this tackycardia turns into  something like this … this zigzag you

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see is called ventriculat fibrillation and it means the patient could die

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that is why I told you before that we fear to give  adrenaline by IV route ….because in the vein ..

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it can reach the heart suddenly …  before it is broken down here or

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there …all the quantity reach the heart now you can`t ensure its effect … sometimes

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it suddenly causes ventricular fibrillation  specially if it is an IV overdose

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that is why we fear it this is about the heart but what do you

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think of adrenaline effect on blood pressure ? normal blood pressure is one hundred twenty for

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systolic blood pressure and diastolic is eighty … it can be elevated up to one hundred forty and

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up to ninety and still be normal allow me to draw your attention here

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if this is the systole and this is  the diastole …. Systolic diastolic

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if I may ask you what is the major determinant  of systolic blood pressure ? which force

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controls systolic blood pressure ? if you are good in physiology then

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you know the major force controlling  the systole is the cardiac output

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but again what is the major  determinant of diastolic blood

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pressure ? which force controls diastolic  blood pressure which is the low pressure

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if you remember it then you will tell  me it is the peripheral resistance

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what does peripheral resistance means ? It means  your veins …. still what does this mean ?

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is it because of vasoconstriction  or vasodilatation … this is what

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controls the peripheral resistance and I told you before that epinephrine

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administration stimulates all of the  receptors in your body alpha and beta

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and I told you that it increases  the cardiac output

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thus it is reasonable to say systole will  grow up because it increases the cardiac

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output which is the major determinant of  systolic blood pressure …not only this

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but it also causes vasoconstriction in blood  vessels … most of the blood vessels except for

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skeletal muscles blood vessels and  coronaries they contain beta two

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now cardiac output plus this  vasoconstriction both increases the systole

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but vasoconstriction is not the major force instead it is the cardiac output because it is the

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major determinant of systolic blood pressure now there is a problem

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because epinephrine is causing vasoconstriction  in some of the blood vessels while it causes

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vasodilatation in other blood vessels which is skeletal muscles blood vessels

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but does this mean the forces determining the  peripheral resistance are somehow equal ?

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no they are not equal it is said that this therapeutic dose …this

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one bolus or the half bolus that you administer affects beta two that is present in skeletal

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muscles more than alpha so in the therapeutic dose

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regarding your arteries ….the effect of a  therapeutic dose on beta two is more prominent

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than it is on alpha …this leads to more increase  in vasodilatation than vasoconstriction

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resulting in decreased peripheral resistance  with the therapeutic dose consequently

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diastolic pressures goes down like this so after you administer a bolus or half bolus

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of adrenaline …you will see this figure systole goes up and diastole goes down

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..so you may find blood pressure has now  become one hundred seventy over sixty

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do you see what happened … this  went up and this went down

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however if you give a very large  dose .. two or three boluses which

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is more than a therapeutic dose then beta refuses to play along

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arguing that it only responds to  the therapeutic dose and no more

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so once you go over the therapeutic dose alpha  one starts to dominate all over the body

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and beta two disappears … not  disappears but hides ….alpha covers it

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and now the majority of the peripheral  resistance is under the control of

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vasoconstriction …with the high dose this means with high doses periphral

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resistance goes up so with a high dose

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the graph becomes more like this systole is increased and also diastole

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is increased .. this occurs with high doses  of epinephrine like two or three boluses

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this is its effect on the blood  pressure …. And That`s why you

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shouldn`t rush to answer such questions is you are asked about its effect on blood

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pressure don`t say increase nor decrease instead be organized like this

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tell him it is according to the given  dose …..therapeutic dose which is a

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bolus or half a bolus increases systole and

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decrease diastole then illustrate large dose more than a therapeutic dose

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increases both systole and diastole together why ? because in this situation alpha one

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predominates in high doses leading  to generalized vasoconstriction

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increasing the peripheral resistance  and the diastolic blood pressure

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okay ? this is about its  effect on the blood pressure

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so lets see its effects on the other systems now I can be very brief … why ? because all

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effects present on the table in your book  can occur … all effects you know can occur

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so let`s remember the most common what do you think of the bronchi ?

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you will tell me I remember it  has beta two… correct … but what

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is the function of this beta two ? it causes Broncho dilatation …it widens

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the bronchi …if the airway is narrow beta  two widens it through Broncho dilatation

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still there is something important …. If  this is a cross section in the bronchi …I

28:09

told you beta two causes broncho dilatation here are bronchial glands ..these bronchial

28:16

glands secrete fluid … this is the fluid  irritating you and it is called sputum

28:21

bronchial asthma patients always cough  excreting sputum from their mouths

28:29

these glands have neighboring  blood vessels feeding the gland

28:33

which group do these blood vessels  belong to ? are they considered

28:39

skeletal muscles or visceral blood vessels ? as long as it is not a skeletal muscle then it

28:45

contains alpha which causes vasoconstriction so epinephrine cause broncho dilatation on the

28:51

bronchi by beta two receptors while  it suffocates these blood vessels

28:56

and when these blood vessels are  suffocated by vasoconstriction

29:00

these glands don`t have enough blood supply thus they stop secreting the fluid decreasing

29:07

sputum production and this is  very good for asthma patients

29:10

or patients with acute bronchial  episode … the patient who is

29:14

coughing a lot and is about to have asthma this effect is very good for them and this

29:20

effect is called bronchial decongestion .. the word congestion means blockage and

29:25

decongestion means to removes this blockage this is on the level of the bronchi

29:28

what about its effect on the CNS ? what happens  when this adrenaline reaches the brain ?

29:34

watch out ! watch out ! don`t let them fool you it doesn`t go nor it reach nor it has anything

29:40

to do with the brain it flows with the blood

29:43

indeed but it doesn`t cross the blood  brain barrier nor enters brain tissue

29:47

it has nothing to do with the brain okay … what about its effect on the

29:51

eye ? how does adrenaline affect the eye ? lets draw the eye and see its effect their

29:57

This is the iris.. Naturally This is a coronal  section This is the pupil here is the lens..

30:04

this is the suspensory ligament of  the lens and this is the cilliary

30:07

body on both sides.. It turns like this. This part is called cilliary body which

30:14

holds the lens of the eye It is covered with  columnar epithelium called cilliary epithelium

30:19

That's ok?.. This cilliary epithelium  contains beta two Do you remember when

30:25

I told you that it is responsible for  aqous humor secretion during running

30:29

Its function is to secrete the aqous humor  the eye fluid which fills the spaces in the

30:35

eyes And if this beta is increased and  secretes large quantities of fluid.

30:40

. The pressure inside the eye is increased and  this pressure is called intra ocular pressure..

30:47

If it is increased behind certain limits  it causes a disease called glaucoma

30:51

.. Okay.? If the intra ocular pressure  is increased more than 22 mmhg it is

30:57

called glaucoma or blue water What  is that has to do with adrenaline?

31:02

First of all how are you planning  to administer adrenaline into the

31:05

eye I told you there is an eye drops Back then I told you They thought it

31:10

couldn't be absorbed into the eye but  they later found it could be absorbed

31:14

Now when you apply these  adrenaline drops into the eye

31:18

This is the cornea and this is the whitish part  called sclera Here by the cilliary body we have

31:26

blood vessels called cilliary blood vessels These are the ones responsible foe supplying

31:31

the cilliary epithelium with blood That's okay? Adrenaline drops once they enter the eye.. They

31:39

enter from here and from here They  cause cilliary vasoconstriction

31:43

Because cilliary vessels  contain alpha Don't it have

31:47

beta? No because it is not a skeletal muscle T hey contain alpha one causing vasoconstriction

31:54

And when these blood vessels are suffocated  Epithelial blood supply is decreased

31:59

So it doesn't secrete fluid thus ocular  pressure is decreased This effect is

32:04

very useful if the patient has glaucoma Glaucoma patients with high intra ocular

32:10

pressure can use adrenaline eye drops causing  vasoconstriction in the cilliary blood vessels

32:14

depriving the cilliary epithelium from  blood so this beta two does not secrete

32:19

fluid and ocular pressure is decreased That's why we invented the eye drops I

32:24

told you about called di pevalyl adrenaline Why di  pevalyl.. To enhace its absorption into the eyes

32:30

Anyway we have more specialized drugs treating  glaucoma nowdays It could be used... It is

32:36

not wrong However when we discuss glaucoma we will mention more recent and more effective

32:42

drugs Better than this one But anyway adrenaline  still have a benefit when it comes to red eyes

32:48

If someone complains of constantly red  eye and he doesn't like its appearance

32:53

because it is always congested Then we can give him adrenaline for a

32:58

better look as it causes vasoconstriction  in these vessels Sclera becomes clear..

33:02

. so among the advantages of adrenaline is  its use in the red eye.. So gluacoma and

33:08

red eye as it decrease ocular tension  and makes the sclera more whitish

33:13

this is about its effects on the eye …  and you can always predict what happens

33:18

in the other systems without much effort for example if I ask about the uterus …you`d

33:23

tell me if the woman is pregnant then her uterus  have mainly beta two which causes relaxation

33:28

what about the hand ? you`d tell me that  my skeletal muscles present in my hand

33:32

contain beta two which is responsible for  tremors so it can cause some tremors …

33:36

.. however all of these effects are somewhat  temporary as I told you it is broken down

33:41

within minutes by MAO and COMT how does it affect blood sugar ?

33:46

blood sugar means we are talking about the liver  ….the liver has something called glycogen

33:52

and here is beta two which is  responsible for liquefying this

33:56

glycogen so it increases blood sugar what about blood potassium ? it

34:01

activates beta two and beta two moves  potassium from blood into tissue

34:05

causing hypokalemia ….but again all of these  effects are temporary ….they won`t last long

34:11

enough to harm he patient because injection effects

34:15

don’t last for minutes as I told you now we have discussed it effects …all the major

34:20

effects that happens when we use epinephrine after this illustration can you tell me in what

34:26

situations do we need this epinephrine ? we always begin with pharmacological effects

34:31

in order to prepare your mind for  the following concept which is uses

34:36

now I`ve prepared your mind for some  of its uses ..based on its effects on

34:41

the body and how it can be administered number one … let me ask you first ..before

34:46

we dwell into details ….how long does this  bolus last ? it is broken down after minutes

34:52

then could we use it for treating chronic  diseases ? long lasting disease ? or

34:57

can we use it only I emergency ? since it is broken down within minutes

35:02

then it is reasonable to use it in emergencies among the emergencies which we need adrenaline

35:07

for … something called acute anaphylactic shock what does anaphylactic shock mean ?

35:13

you will hear about it very often in pathology  and in micro biology and many others

35:18

this is a type of hypersensitivity  called immediate hyper sensitivity

35:22

very dangerous type of hypersensitivity  called immediate type

35:25

for example some people have penicillin allergy ..  or bee bite allergy … and many other allergies

35:32

this circle is something called mast cell …  mast cells in your body are storing such a

35:39

cursed compound called histamine in some allergic patients ..when

35:43

they receive a penicillin injection …  penciling go an pop this mast cell

35:48

through a certain mechanism that  you will study later in detail

35:51

it is not our rule now to discuss the  mechanism of anaphylactic shock …I

35:56

only need you to know that penicillin pops  this mast cell if you are allergic to it

36:02

so histamine is released …this cursed histamine  kills you …because it cases severe brocho

36:13

constriction and sever vasodilatation that is why allergic patients receiving

36:20

a penicillin injection …their  faces immediately change

36:23

before you finish your injection ..during the  injection .. that`s if he is allergic to it

36:29

and by the way this allergy is not very  common it is only three per ten thousand

36:34

which means among each ten thousand humans there  are only three who have penicillin allergy

36:39

so it is not very common as you may think if this patient is allergic his face starts

36:43

to turn red ..his voice change ..and  if you continue he would collapse

36:47

he would have a syncope from the sever  vaso dilatation caused by histamine

36:52

in this situation …the only one quick and  emergent savior is an epinephrine injection

36:57

why do we use epinephrine in this situation ? because it performs two effects that oppose the

37:02

effects caused by histamine first of all its effect is very

37:06

rapid .. it immediately saves the patient  from this immediate hypersensitivity

37:12

epinephrine causes bronchodilatation and  vasoconstriction in most of the blood vessels

37:17

it reverses the two effects cause  by histamine that is why it is

37:21

called physiological antagonist antagonist means the opposite … the

37:26

physiological opposite of histamine this situation may have only one treatment

37:32

which is a bolus of epinephrine in this situation you are in rush

37:35

…so can you give it intravenous ? No I`m still insisting on how dangerous it

37:41

is to give epinephrine through the IV route So should we give it subcutaneously ? this

37:46

is possible however subcutaneous injection  might be a bit slow while you are in rush

37:51

That is why the best route for  epinephrine administration in this

37:54

situation is the intramuscular route Intramuscular in the muscles ? where exactly ? in

37:58

the lateral thigh muscle Thus we meet halfway

38:01

You didn`t give epinephrine through  IV route exposing the patient to

38:06

the danger of ventricular fibrillation Nor you gave it subcutaneously which is slow

38:12

So you chose a midway route … so we meet halfway You may then have an MCQ stating the best route

38:20

of administration of adrenaline  in cases of anaphylactic shock

38:24

immediately Pick the Intramuscular  route in the lateral thigh muscle

38:27

okay ? so that some companies are now producing

38:31

adrenaline in the form of auto injectors auto injector means it is already loaded

38:36

in a covered sterile syringe so it can be  readily available in schools or other places

38:42

at which people may experience this form of  allergy due to some food or bites or whatever

38:46

we don`t have time to call an ambulance  which may come after three hours

38:50

another ten hours to deliver  the boy to a hospital who may

38:54

not survive for another quarter or half an hour so they are now producing preloaded epinephrine

39:00

thus it can be readily availabe for use if a problem occurs you can use this epinephrine

39:06

immediately in the lateral thigh muscle saving the life of the patient as

39:11

if something never happened okay … this is its first use

39:16

the second use of epinephrine …people howe  experience something called acute bronchospasm

39:24

from it name you can predict its nature  … a young child with a common cold

39:29

if this is the larynx.. like this ….our  larynx has a relatively wide lumen

39:39

so when you cough a lot …even if some inflammation  and edema occurs and the wall becomes swollen

39:45

the airways is still sufficient ..  it is not dangerously narrowed

39:49

however in children the larynx or the airways is  naturally narrow …so when the child have a common

39:57

cold and remain coughing for the whole night this continuous cough could lead to inflammation

40:03

in the wall of the broncho pulmonary  tree ..specially in the larynx

40:07

which is already narrow … its  lumen is already very narrow

40:12

once edema occurs … do you know  what does edema mean ? It means

40:17

vasodilatation as a result of this inflammation and this vasodilatation starts to leak water …this

40:24

widened blood vessels start to leak water this water causes edema so the airway swells

40:31

and this swelling results in even narrower  airways the child can no longer breath

40:38

so he is brought to your clinic with a bluish face  from a respiratory distress that can kill him

40:44

this is emergency … the immediate  management is to give an adrenaline

40:48

bolus subcutaneous or intra muscular sometimes it is given by inhalation

40:53

in this situation we sometimes empty the  bolus on half cup of water in the device

40:59

I told you about called nebulizer and through a mask the child inhales

41:03

the vapor containing epinephrine and what does the epinephrine do ?

41:07

the epinephrine immediately dilates his bronchi  .. not only this but it also suffocates these

41:14

blood vessels responsible for the edema when they are suffocated edema is decreased

41:18

and when edema is decreased  the wall returns to normal

41:21

the air pass effortlessly …  and the episode goes away

41:24

of course we won`t allow this boy to  leave like this instead we prescribe

41:28

him some regular medications to prevent  this episode from occurring again

41:31

and instruct the mother on the  management of this episode

41:34

we tell her about more specialized  medications ..like those

41:38

specifically acting on beta two an inhaler for example … this

41:42

inhaler acts on beta two it is not reasonable to let

41:46

her come from time to time the hospital  for saving her child by adrenaline

41:49

so we tell her this inhaler is a  beta two agonist or stimulant

41:53

if this episode occurs once again you  can use this beta two inhaler hoping for

41:58

some bronchodilation improving the condition however the epinephrine is still more efficient

42:04

… don`t forget epinephrine doesn’t  only cause bronchodilatation

42:07

it also causes vasoconstriction in the blood  vessels responsible for edema and swollen

42:12

walls which is the origin of the problem this is the second case … the third case

42:17

third case is the cardiac arrest  …cardiac arrest comes in various types

42:23

a fresh medical student thinks of cardiac  arrest as a general word …. But in reality

42:29

cardiac arrest has so many types at least you know that cardiac

42:33

arrest means ineffective pulsation if you try to feel the pulse you don`t feel it

42:38

either the heart stops completely … flat line  like this nothing too see … just a flat line

42:44

or this cardiac arrest can be  ventricular fibrillation … zigzag

42:48

lines like this on the cardiograph sometimes you might see actual cardiograph

42:53

like this .. it means there is electricity electricity is present but no pulsation an so on

42:58

so for now cardiac arrest means  ineffective pulsations for many

43:03

reasons but they are not our concern generally when the heart had a problem

43:07

and we couldn’t feel the pulse we used to  give the adrenaline injection intracardiac

43:12

we used to load one two or  three boluses of epinephrine

43:18

then we replace this needle with a  longer one like that of a cannula

43:23

or cannula trocar and we give it intra  cardiac hoping for stimulating the heart

43:29

as you already know the heart has beta  one so you can wake the heart up

43:34

this is called resuscitation  …waking up … waking the heart up

43:41

but then they said this is not right … this  process is not correct … the process of injecting

43:47

adrenaline intra cardiac in cardiac arrest cases hoping for waking the heart up … is not right

43:52

why not right ? they said cardiac arrest  cases when the heart stop beating and

43:57

the circulation becomes stagnant there is an immediate release of

44:02

vasodilator mediators …thus you can find  out that the circulation of the collapsed

44:07

patient with a stopped heart is dilated … that`s why if this person dies … the forensic

44:14

pathologist writes down a well known  phrase you all know from the news

44:19

… when they say that the cause of the death  is extreme drop in the blood circulation

44:24

and a sudden stop of the heart muscle sudden stop of heart .. ok the heart stopped

44:29

and blood circulation means there was a vaso  dilatation leading to circulatory failure

44:34

because there was a release of vaso  dilators metabolites which caused a

44:37

state of generalized vaso dilatation that`s why they see no benefit of

44:41

waking the heart up by adrenaline .. giving  adrenaline injection to wake the heart up

44:45

but then when the heart  wakes up and start bumping

44:48

if there is a generalized vasodilatation  then all of this process is useless

44:52

or as they say … you went  on a wild goose chase

44:55

because the heart start pumping and very  weekly while the circulation is still dilated

45:00

so the purpose is not to give adrenaline  intracardiac we don`t aim to wake up the

45:06

heart instead we have a higher purpose more important one .. which is to cause

45:11

vasoconstriction firstly in  this collapsed circulation

45:18

give a drug causing vasoconstriction in this  collapsed circulation … fix it first …. Then

45:20

you can later perform something called CPR cardio pulmonary resuscitation … compressing the

45:26

chest wall in a regular pattern and so on when you do this compression with your

45:31

hands … this this compression  that you do with your hands

45:34

if there is vasoconstriction in the circulation  … if you gave a drug causing vasoconstriction

45:39

in the circulation then by this hand compression the ventricle

45:44

bumps a little amount of blood to the brain  because you closed the prephral circulation

45:50

however if the circulation is patent  under effect of vasodilatation … then

45:54

as long as you perform a CPR all the blood that`s being bumped

45:58

will be swallowed by this patent circulation this is why new recommendations says that if

46:04

you want to use epinephrine … no problem  .. but give it by IV not intracardiac

46:09

why ? because IV means it runs in the  circulation causing vasoconstriction

46:15

this is what I aim for … and naturally it  will reach the heart ultimately stimulating

46:19

beta one however this is not the purpose the first aim is this vasoconstriction this

46:24

is why some people say since our purpose  is to perform vasoconstriction and CPR

46:28

then can we replace this epinephrine with  another vasoconstrictor drug …indeed we can

46:33

yes you can give another vasoconstrictor  drug while you perform CPR manually and

46:39

don`t be afraid it will work so the purpose in this situation

46:42

is not only to stimulate beta one .. no the purpose is to cause vasoconstriction

46:47

we sometimes ask students during oral  exams … why are we using adrenaline or

46:52

epinephrine in cases of cardiac arrest they immediately answer it is to stimulate

46:56

beta one .. this is not wrong to stimulate  beta one however this is not the purpose

47:00

our purpose is to cause vasoconstriction in this  collapsed circulation so when we perform CPR the

47:06

heart doesn`t confront all of the circulation thus these little contractions can deliver the

47:11

blood directly to the brain without  being lost in the circulation

47:15

I hope I made this clear for you The forth use of adrenaline ..do you

47:20

notice that these are all emergencies ? Do you notice that all of its uses are

47:24

for emergencies ? all of these are emergent  situations when we need to at very rapidly

47:28

However This fourth use is not an emergency Our colleague dentists know very well that dental

47:34

anesthesia contain vasoconstrictor compounds But why ? sometimes they add epinephrine to

47:42

dental anesthesia ..dental anesthesia requires  a from of anesthesia called local Anastasia

47:52

If local anesthetic is used alone ….

47:56

Let`s assume this is a tissue Local anesthesia duration is short

48:00

…it doesn`t last long in the tissue because  it is washed by the local blood vessels

48:06

When you inject this local anesthesia  alone it is washed by the blood vessels

48:11

For example how can your dentist perform a  lengthy procedure say for one hour while the local

48:17

anesthesia lasts only about fifteen minutes ? That`s why companies are now adding adrenaline

48:23

to the local anesthetic so it produces  vasoconstriction in the blood vessels

48:28

And when these vessels become  suffocated we acquire two merits

48:32

the first one is decresed bleeding So the dentist can have a better working

48:37

field while he is extracting a tooth  or whatever the bleeding is decresed

48:41

Number two local anesthetic can act now for longer  duration instead of lasting for fifteen minutes it

48:49

could now last for half or two hours accoding to the used concentration

48:53

So that some people thought about replacing this  epinephrine with another vasoconstrictor drugs

48:59

And that is okay as long as  it produces vasoconstriction

49:02

For example here we have an anesthetic cartridge

49:06

..this is the anesthesia you receive  when you are at the dentist

49:10

He put this one in the  injector and gives it to you

49:14

This cartridge comes in two types … one with red  writings over it like this one if you can see it

49:21

This red means this is anesthia  witout a vasoconstrictor

49:25

It doesn`t contain adrenaline …if you use this  one it can last for maximum of thrity minutes

49:30

However there is another one that looks exactly  the same I don`t have it now .. it Is the same

49:36

as this one except for green writing over it So the green cartridge contains adrenaline to

49:41

produce vasoconstriction or  something like adrenaline

49:44

So if you want to get a local anesthetic  from the pharmacy .. he would ask you

49:48

wether you want it red or green Red one means it doesn`t contain

49:51

adrenaline nor any vasoconstrictor The green one contains a vasoconstrictor

49:55

Now you know the difference between both samples  incase you see them during the clinical exam

50:00

Now if someone asks you why do we add  epinephrine to local anesthesia tell

50:05

him we do this for two reasons The first one is to decrease the

50:10

bleeding the second reason is to prolong  the duration of the local anesthetic

50:17

Sometimes … patients go to the dentists ..an  elder man about sixty or sixty five went

50:27

to his dentist for some procedure So The dentist gave him the local anesthesia

50:32

containing adrenaline , he was expecting  this anesthetic to last for an hour or two

50:40

Instead he was supersized when the patient told  him he feels immense pain after only fifteen

50:46

minutes and he asks for another anesthesia …the dentist gave him another one but it

50:51

didn`t help … this anesthesia only  lasts for ten or fifteen minutes

50:55

Of course you are now supersized  exactly like the dentist … why

50:59

didn`t the anesthesia last for long .. Why didn`t adrenaline produce vasoconstriction

51:04

lengthening the duration of this anesthesia ? You would keep wondering about this asking

51:09

the patient for his medical history and  you may then find out this patient has

51:15

enlarged prostate .. for example This will be explained soon

51:19

And this prostate now called benign  prostatic hyperplasia .. a common

51:27

disorder among older men about  fifty or fifty five years old

51:30

And its treatment is alpha blocker … in  order to avoid urine retention we treat

51:36

this condition with alpha blocker … .I gave you an idea about this

51:39

concept during the introduction Now look what happened … this patient

51:43

is a male aged fifty five years old and  it happens that he has benign prostatic

51:49

hyperplasia and receiving alpha blocker The urologist gave him alpha blocker in

51:55

order to avoid urine retention When he went to the dentist and

51:59

received the anesthetic containing adrenaline Now adrenaline can`t produce vasoconstriction

52:04

because this alpha receptor is  already blocked by the alpha blocker

52:09

And this Is the reason why the  anesthesia didn`t last for long

52:13

Thus if you have a smart clever dentist , he  will always be prepared for this scenario

52:19

Elder men above the age of fifty or fifty  five years before they make any procedures

52:24

They are asked by their dentists weather  they have any prostatic problem and

52:29

taking any drugs for the prostate If he confess to have an enlarged

52:33

prostate and receiving pills for this condition The phrase receiving pills for thi8s condition

52:38

means they are most probably alpha blockers accordingly the dentist should be pepared for

52:44

this situation and he may then ask him to  skip these tablets on the days he is coming

52:50

to the clinic and so on I`ve illustrated the uses

52:53

of epinephrine for you … … … … So now lets revise a little … how do you

52:58

administer adrenaline … don`t ever say oral .. it comes in boluses these boluses are given either

53:04

by subcutaneous or intramuscular injection … and by intravenous only in one

53:10

situation … do you remember it ? The only situation you are allowed

53:13

to give IV adrenaline is the cardiac arrest  except for this one we are afraid that it

53:19

causes ventricular fibrillation and kills the patient itself

53:22

Now can you expect the problems  caused by this adrenaline ?

53:26

The problems we expect which is known as adverse  effects … adverse effects are the side effects

53:34

Number one … when a patient  receive subcutaneous epinephrine

53:38

his blood pressure may be markedly increased This may be unexpected and it may turns into

53:44

cerebral hemorrhage … bleeding in the brain Number two … adrenaline can cause some

53:49

tremors … but this is not a significant effect  …after all these tremors subsides soon

53:54

Number three … adrenaline could sometimes  stimulate the heart excessively through its

54:00

beta effect causing tachycardia which may turns  into arrhythmia or even ventricular fibrillation

54:07

Cardiograph would be messed up like this … good  bye , he was kind …. May he rest in peace

54:15

Number four epinephrine could stimulate the  heart excessively while the heart is already

54:21

weakened by a cardiovascular disease like heart failure or whatever which

54:26

leads to acute heart failure acute drop  in heart functions the patient collapses

54:34

can no longer breathe and ends in the ICU five Epinephrine can lead to a condition known

54:42

as acute pulmonary edema .. pulmonary  edema means water within the lungs

54:48

Form where does this water come ? x2 You know this is the heart and this is

54:57

the lung and you know the lung receives the  pulmonary artery from the right ventricle

55:03

Then the lung sends the blood to the left  atrium then the left ventricle and then it

55:08

goes to the aorta That`s okay

55:10

Now when a patients receives adrenaline it  increases heart`s contractility so blood

55:16

is flowing in a high pressure  though the pulmonary artery

55:19

it arrives to the lung in high  pressure … thus the intra pulmonary

55:23

hydrostatic pressure is increased Then the lung tires to get rid of

55:27

this blood from the other side but it  meets a systemic vasoconstriction

55:31

as it causes vasoconstriction in the systemic  circulation which means that it increases the

55:36

contractility while it blocks the way Who is the one trapped in the middle ? it

55:40

is the lung It receives high

55:41

pressure flow and can`t get rid of it due to  vasoconstriction that`s why it leaks water

55:47

The capillaries in alveoli don`t stand this  elevated pressure and starts to ooze a fluid

55:53

The alveoli are filled with fluid and the  patient suffers now from acute pulmonary

55:58

edema or water in the lung What do you think is the

56:03

most dangerous among these ? Not only these there is still one more

56:07

You can give too much adrenaline .. for  example a plastic surgeon working on the little

56:12

finger … when he chose the type of anesthesia .. he picked a local anesthetic with epinephrine

56:18

which causes vasoconstriction  .. but he gave too much

56:21

And he repeated the injections … injection after

56:23

injection the procedure is taking  time and he is still giving these

56:27

injections containing a vasoconstrictor … this vasoconstrictors could suffocate the

56:32

blood vessels especially those on the tip Because they are very sensitive so that

56:37

this suffocation could kill the tissue  causing something known as gangrene

56:41

Gangrene of fingers … the fingers would turn very  cold their color is changed the next day they lose

56:47

its sense and now they must be amputated … they are not viable

56:51

What do you think is most dangerous  among these? They are all dangerous

56:56

As epinephrine is life saving  drug during emergencies and it

57:00

does save lives of many patients however This drug can cause major

57:04

problems itself …. And I think that the most  dangerous one among all of these effects

57:09

Is this one .. ventricular fibrillation …  because this is a dead patient ..fibrillation

57:15

means unless there is an emergent  ICU admission the patient dies

57:19

On the other hand .. cerebral  hemorrhage is indeed very dangerous

57:24

.none can deny brain bleeding is dangerous However cerebral hemorrhage could be localized

57:29

and the patient could still live He may live with a deformity

57:32

but at least he lives The others are very debatable

57:36

For example tremors .. it is nothing …  acute heart failure , he woul still live

57:41

Some water in the lungs ..  he would also still live

57:44

Fingers gangrene .. they would be amputated ,  of course it is disaster but he still lives

57:50

On the contrary this one with  ventricular fibrillation he dies

57:54

So when you have an MCQ stating  : the most dangerous side effect

57:58

of epinephrine injection is Pick this one arrhythmia and

58:02

ventricular fibrillation … arrhythmia  alone is not sufficient

58:05

Now lets shift to the next headline  ….. …. …. Which is contra indications

58:10

Contraindications means when not to use Of course you are smart enough to know

58:16

that the term contraindications  contra means the opposite of

58:19

and indications means when to use so  contra indications is when not to use

58:26

You know that adrenaline causes all of the  previous misfortunes .. so it is reasonable

58:32

not to use it in cases of hypertension Don`t give someone with high blood pressure

58:36

adrenaline because it causes hypertension itself Don`t ever give adrenaline to someone complaining

58:41

of cardiovascular problem someone with  angina … ischemic heart disease or so on

58:47

as it increases the cardiac work  which increases the anginal pain

58:51

His chest could become painful and he may  encounter an acute attack .. so don`t

58:56

Number three don`t give adrenaline in  large dose with local anesthetics

59:00

I always tell my dentist to be careful with  the amount of local anesthesia …because I

59:05

may need another during the procedure  so he woldn`t give me five cartridges

59:09

one after the other and they contain epinephrine Because this prolonged vasoconstriction

59:15

could lead to tissue necrosis So it is contraindicated to give an over dose

59:21

of the local anesthetic containing epinephrine Among the most important cases is a group of

59:30

cases called cardiac outflow obstruction What is the cardiac outflow obstruction ? they

59:36

are a group of cases which are collectively  known as cardiac out flow obstruction

59:44

Look here … this is the heart .. … …. And  this is the pulmonary artery going to the lung

59:52

..and this is the aorta for systemic circulation Any disease that hinders the flow of blood in the

1:00:00

pulmonary artery or the flow in the aorta Is called cardiac outflow obstruction …

1:00:06

this case is considered one of this large topic For example .. but let`s firstly draw the aorta

1:00:15

This is the aorta going out of  the left ventricle … here it

1:00:20

is .. let`s even draw him with a red pen This s the aorta and this is the arch … here

1:00:29

is the aortic valve if there was an aortic  stenosis the aortic valve was narrowed

1:00:35

This would be classified as cardiac  outflow obstruction ….or imagine if

1:00:39

this was the pulmonary artery going to the lung  and here was an embolus in the pulmonary artery

1:00:45

..something obstructing the flow … it is also  classified as cardiac outflow obstruction

1:00:50

There is a very well known cases , you  will hear about it very often during this

1:00:55

curriculum …. three or four times A case known as hypertrophic

1:01:00

obstructive cardiomyopathy hypertrophic obstructive

1:01:05

cardiomyopathy .. it was previously called  idiopathic hypertrophic subaortic stenosis

1:01:13

it is the same condition …  what is this condition ?

1:01:16

you already know the thickness of  the ventricular septum in normal

1:01:20

individuals doesn`t cross twelve millimeter or one point two centimeter this is the ordinary …

1:01:29

when you perform a cardiac echo  .. ultrasonic waves on the heart

1:01:33

the septum thickness shouldn`t cross this limit there are one per one thousand … one from each

1:01:40

one thousand individuals is  born with a genetic problem

1:01:44

thickness of this septum is increasing with  time and even cross one point seven centimeter

1:01:51

or seventeen millies it could cross these numbers

1:01:55

now when the septum hypertrophies like this  and its thickness is increased … note that

1:02:01

the heart hypertrophies more on the left side or the left ventricle ….while the aorta opens

1:02:08

in the left ventricle like this thus the thicker the septum is the

1:02:13

narrower this opening becomes … and blood  can`t flow smoothly from the aorta

1:02:18

that is why it is called hypertrophic  which means enlargement … obstructive

1:02:24

which means hindering the flow … cardiomyopathy refers to the

1:02:28

enlargement .. that`s correct ? okay now as this child keeps growing

1:02:32

up his problem also keeps increasing allow me to draw your attention to this

1:02:38

part … I like to give this case all the possible  attention because you will see it very often

1:02:43

so I don`t want to repeat it again this child during his childhood when he

1:02:48

was nine or ten …… when he runs or plays  football he doesn`t stand the running

1:02:52

as soon as he runs a little he feels  sweaty and slumps or collapse

1:02:56

that`s why his friends take advantage of him and  place him as a goalkeeper because he can`t run

1:03:01

he later goes to his mom and cries complaining  of not being able to match his friends

1:03:07

later when his mom takes him to the doctor  complaining her child can`t exert normal

1:03:11

efforts and becomes bluish as he tries the cardiologists asks her to perform a sonic

1:03:17

waves on the heart or what is known as echo when the cardiologist receives the report of

1:03:22

cardiac echography he observes the child  has a thickened intraventricular septum

1:03:27

more than one point five centimeter or  fifteen millies ..this causes narrowing

1:03:33

in the outlet of blood flow …thus when  this child runs or plays football

1:03:37

and experiences tachycardia .. blood can`t get  out because the flow is hindered by this septum

1:03:43

and this is the reason why  this child feels drowsy

1:03:47

this enlargement is increased with age … as long  as he grows up … until he his eighteen or twenty

1:03:53

when it reaches its maximum value that`s why .. you`ll very

1:03:57

often hear about some people , youth aged twenty or twenty two dying

1:04:00

while they are playing football despite  of having a good general health

1:04:03

you would even be astonished how could such  a healthy guy dies while playing football

1:04:08

indeed … do you know what is the  most common cause of sudden death in

1:04:11

young athletes healthy young athletes ? it is this condition called hypertrophic

1:04:15

obstructive cardiomyopathy he had this condition and it

1:04:19

was not diagnosed before …. The septum kept  increasing untill it reached a critical level

1:04:23

that blood could no longer flow to the aorta and this condition becomes prominent when he

1:04:30

plays football or exercises because the  heart is not able to bump all the blood out

1:04:36

after I`ve explained this condition for  you … do you know why I told you all of

1:04:41

this large intro ? so you know why this

1:04:44

one should never receives adrenaline why is that ? what would adrenaline do ?

1:04:49

it causes tachycardia .. correct ? and  increases the force of contraction

1:04:54

and since the septum is thickened suffocating  the aorta then how can the blood get out

1:05:00

especially with this tachycardia then blood can`t get out that`s why

1:05:04

adrenaline injection could kill this boy with  hypertrophic obstructive cardio myopathy

1:05:09

last one of the contra indications is thyroid  patients .. patients with hyperthyroidism

1:05:16

I`ll be brief while explaining this  one because it makes much sense

1:05:20

Thyroid patients who have hyperthyroidism they have lots of t4 and lots of t 3

1:05:26

When thyroxin is increased it  makes some changes to your body

1:05:30

Number one .. thyroxin increases  the number of beta receptors

1:05:34

The number of beta receptors in your body and  also their sensitivity are increased by thyroxin

1:05:40

Thyroxin is considered as adrenaline cousin The have the same origin in chemistry

1:05:45

They both originates from single  amino acid called tyrosine

1:05:48

Thyroxin goes to your beta receptors in  your body strengthening them increasing

1:05:54

both their numbers and sensitivity That`s why hyperthyroidism patients

1:05:59

always complains of symptoms  related to the beta receptors

1:06:02

They come to you complaining of shaky hands  ? why is it shaky ? due to tremors ? why

1:06:08

tremors ? because beta two They may complain of irregular

1:06:11

heart beats insomnia dizziness  irregular plus and tachycardia

1:06:16

Why ? because beta one in the heart  are confused by this thyroxin which

1:06:21

increases their number and sensitivity This is what we call sympathetic over activity

1:06:27

So patients with hyper thyrodism  have sympathetic over activity

1:06:32

due to upregulation caused by thyroxin Upregulation means it increases both the number

1:06:38

and the sensitivity of beta receptors Thus it is very reasonable not to

1:06:42

give him adrenaline … his beta  receptors are already on fire

1:06:45

Thyroxin is already whipping them So when you give him adrenaline you are

1:06:50

aggravating all of his symptoms Add to this the second reason

1:06:55

You already know about an enzyme  called COMT I told you once about it

1:06:59

Patients with hyperthyroidism have  low levels of COMT … by nature

1:07:03

Their COMT is inhibited …so when you use this  adrenaline bolus it won`t be easily metabolized

1:07:09

That`s why his level is  increased causing problems

1:07:12

now the five contraindications of epinephrine …  I told you about the five contra indications

1:07:17

not for cardiac patients not for hypertensive patients

1:07:21

please don`t use epinephrine in high  concentration during anesthesia so you

1:07:25

don`t cause tissue necrosis or fingers gangrene please don`t give adrenaline to this child who has

1:07:30

idiopathic hypertrophic subaortic stenosis  as he has cardiac out flow obstruction

1:07:35

and please please don`t give adrenaline  to patients with hyperthyroidism

1:07:39

for your information those five patients I  mentioned during explaining the contraindication

1:07:43

can you imagine how are we going to treat them ? their treatment is to block these receptors not

1:07:48

to stimulate them with epinephrine most of these patients I mentioned are

1:07:52

treated with something called beta blocker you will see that beta blocker are used for

1:07:57

hypertension , used for many  types of heart diseases

1:07:59

and used for this child .. this child with  hypertrophic obstructive cardiomyopathy

1:08:03

cardiologists give him beta blocker  so he wouldn’t develop tachycardia

1:08:07

and you will see that beta blockers are also  used as a treatment for hyperthyroidism

1:08:11

disease in which adrenaline  is contraindicated are always

1:08:15

treated with a blocker not an agonist I hope to see you in the next video

1:08:20

After we explained adrenaline in  detail we are going to discuss rest

1:08:25

of the drugs but not in detail like this  one

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