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Pharmacology: Drugs for Heart Failure, Animation

5:21EnglishTranscribed Jul 23, 2026
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Heart failure is when the heart is unable to  pump effectively, called systolic heart failure;  

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or unable to fill properly, called diastolic heart  failure. In both cases, blood output is reduced.  

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Ejection fraction is reduced  in systolic heart failure,  

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but typically preserved in  diastolic heart failure. 

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The pathophysiology of heart failure involves a  vicious cycle in which reduced cardiac output,  

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as a compensatory response, activates the  renin-angiotensin-aldosterone system (RAAS) and  

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sympathetic system. However, these systems cause  vasoconstriction, increase heart rate and blood  

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pressure, making it even harder for the heart to  pump. Increased aldosterone level also promotes  

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ventricular remodeling, myocardial scarring,  and vascular injury, worsening the disease. 

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On the other hand, the natriuretic peptide system  is also activated. This system is protective to  

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the heart. It promotes vasodilation, sodium and  water excretion, and inhibits cardiac remodeling. 

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Most drugs used in heart failure therapy aim  to inhibit RAAS and sympathetic activities,  

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and/or promote the natriuretic system. Other drugs  increase ventricular contractility or reduce water  

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retention – a major heart failure symptom. First-line therapy for patients with reduced  

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ejection fraction typically includes  an angiotensin-converting enzyme  

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(ACE) inhibitor, and a beta-blocker. - ACE inhibitors block the conversion  

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of angiotensin-I to angiotensin-II in  RAAS, thereby inhibiting RAAS activity.  

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Common side effects include dry cough, headache,  and hypotension. Rarely, ACE inhibitors may  

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cause a swelling reaction known as angioedema. - Angiotensin receptor blockers (ARBs) inhibit  

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the effects of angiotensin-II. Their mechanism  of action is similar to that of ACE inhibitors,  

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but they do not usually cause a cough. However,  they are less effective and are typically used  

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in patients who cannot tolerate ACE inhibitors. - Beta-blockers decrease heart rate by binding to  

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β1-adrenergic receptor in the heart and blocking  the sympathetic influences that act through these  

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receptors. Common side effects are those of  hypotension. Rarer but more severe adverse  

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events include bradycardia and AV blocks. - Vasodilators reduce blood pressure and are  

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usually used for patients who cannot tolerate ACE  inhibitors or ARBs. Side effects include nausea,  

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palpitations, joint pain, and rash. - Diuretics are often prescribed to  

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relieve fluid retention. Loop diuretics are most  powerful and typically used for most patients.  

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Thiazides are less effective, but they also have  a vasodilation effect, and are thus preferred for  

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patients with hypertension but only mild fluid  retention. Major side effects include electrolyte  

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imbalances, metabolic alkalosis, and hypovolemia. - Aldosterone receptor antagonists block the  

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action of aldosterone. Because aldosterone’s  primary function is to promote sodium and water  

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retention, and potassium excretion; aldosterone  antagonists act as potassium-sparing diuretics.  

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However, their effect in heart failure treatment  is also attributed to the inhibition of  

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aldosterone’s damaging impact on the heart and  blood vessels. Major adverse effects include  

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hyperkalemia and impaired kidney function. - Digoxin increases cardiac contractility  

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by inhibiting the sodium-potassium pump,  causing intracellular sodium concentration  

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to rise. This then leads to higher levels  of intracellular calcium via the action of  

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sodium-calcium exchanger. Higher calcium  results in increased muscle contraction.  

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Digoxin also decreases sympathetic  activities, slowing down heart rate. However,  

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due to its many adverse effects, it is  normally used only for patients who do  

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not improve with other medications. - Ivabradine slows the heart rate by  

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inhibiting the “funny” channel responsible  for spontaneous firing of the SA node.  

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Adverse effects include bradycardia,  atrial fibrillation, and vision problems.  

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Ivabradine should be avoided in patients  with a low resting heart rate, low blood  

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pressure, and certain heart conditions. - ARNIs are a new class of medications.  

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ARNI therapy consists of a neprilysin inhibitor  and an ARB. Neprilysin is an enzyme that breaks  

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down a number of peptides, among which are  natriuretic peptides. Inhibition of neprilysin  

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promotes the natriuretic system. However,  neprilysin also cleaves angiotensin II,  

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so inhibition of neprilysin would activate RAAS.  Thus, an ARB is added to prevent RAAS activation.  

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Major reactions include hypotension,  hyperkalemia, and renal failure.  

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ARNIs are used in patients who do not  respond to ACE inhibitors and beta-blockers.

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