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Drug Therapy for Hypertrophic Cardiomypathy: Physiology and Practice
1New York University Langone Medical Center, 530 First Avenue, NYC, NY 10016, USA. mark.sherrid@nyumc.org.
Insights
Hypertrophic cardiomyopathy (HCM) treatment focuses on managing left ventricular outflow obstruction. Disopyramide, often combined with pyridostigmine, effectively reduces gradients and symptoms when beta-blockade is insufficient.
Area of Science:
- Cardiology
- Pharmacology
- Genetics
Background:
- Hypertrophic cardiomyopathy (HCM) is a common inherited heart condition affecting 1:500 individuals.
- Left ventricular outflow tract obstruction (LVOTO) occurs in two-thirds of HCM patients, causing significant symptoms.
- Pharmacologic therapy is the primary treatment for obstruction before considering invasive procedures.
Purpose of the Study:
- To review current pharmacologic strategies for managing obstructive HCM.
- To compare the efficacy of different drug classes in reducing LVOTO and improving symptoms.
- To discuss the role of disopyramide and potential management of its side effects.
Main Methods:
- Review of existing literature on pharmacologic treatments for HCM.
- Analysis of drug efficacy based on clinical studies and comparisons.
- Discussion of treatment algorithms and patient selection for specific therapies.
Main Results:
- Beta-blockade is the initial treatment, aiming to reduce heart rate and exercise-induced gradient increases.
- Disopyramide, particularly with pyridostigmine, effectively reduces resting gradients and alleviates symptoms in non-responders to beta-blockade.
- Verapamil's use is limited in obstructive HCM due to potential worsening of gradients and symptoms secondary to vasodilation.
Conclusions:
- Pharmacologic management is crucial for obstructive HCM, with a stepwise approach.
- Disopyramide offers a valuable therapeutic option for managing significant outflow obstruction.
- Further research into novel pharmacotherapeutic agents for HCM is ongoing.
Abstract:
HCM is the most common inherited heart condition occurring in 1:500 individuals in the general population. Left ventricular outflow obstruction at rest or after provocation occurs in 2/3 of HCM patients and is a frequent cause of limiting symptoms. Pharmacologic therapy is the first-line treatment for obstruction, and should be aggressively pursued before application of invasive therapy. Beta-blockade is given first, and up-titrated to decrease resting heart rate to between 50 and 60 beats per minute. However, beta-blockade is not expected to decrease resting gradients; its effect rests on decreasing the rise in gradient that accompanies exercise. For patients who fail beta-blockade the addition of oral disopyramide in adequate dose often will decrease resting gradients and offer meaningful relief of symptoms. Disopyramide vagolytic side effects, if they occur, can be greatly mitigated by simultaneous administration of oral pyridostigmine. This combination allows adequate dosing of disopyramide to achieve therapeutic goals. Verapamil utility in obstructive HCM with high resting gradients is limited by its vasodilating effects that can, infrequently, worsen gradient and symptoms. As such, we tend to avoid it in patients with high gradients and limiting heart failure symptoms. In a head-to-head comparison of intravenous drug administration in individual obstructive HCM patients the relative efficacy for lowering gradient was disopyramide > beta-blockade > verapamil. Severe symptoms in non-obstructive HCM are caused by fibrosis or severe myocyte disarray, and often by very small LV chamber size. Severe symptoms caused by these anatomic and histologic abnormalities, in the absence of obstruction, are less amenable to current pharmacotherapy. New pharmacotherapeutic approaches to HCM are on the horizon, that are to be evaluated in formal therapeutic trials.
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