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Published on: January 18, 2019
A novel approach to improve cardiac performance: cardiac myosin activators
1University of California, San Francisco, USA. john.teerlink@ucsf.edu
Insights
Cardiac myosin activators represent a new class of heart failure treatments. These agents improve cardiac function safely by directly targeting myosin, offering a promising therapeutic approach.
Area of Science:
- Cardiology
- Pharmacology
- Biochemistry
Background:
- Heart failure is often characterized by decreased systolic function.
- Current inotropic therapies carry risks due to increased intracellular calcium and cAMP.
- There is a need for safe and effective treatments to improve cardiac contractility.
Purpose of the Study:
- To evaluate a novel class of drugs, cardiac myosin activators, for heart failure treatment.
- To assess the safety and efficacy of the cardiac myosin activator CK-1827452.
- To determine if cardiac myosin activators can improve cardiac function without adverse effects.
Main Methods:
- In vitro studies on myocyte contraction and ATP utilization.
- Animal models to assess hemodynamic effects and cardiac efficiency.
- First-in-human studies in healthy volunteers and patients with chronic heart failure.
Main Results:
- Cardiac myosin activators increase effective myosin cross-bridge formation and myocyte contraction duration.
- These agents improve cardiac efficiency and hemodynamics without increasing myocardial oxygen demand.
- Human studies showed increased systolic ejection time, stroke volume, and cardiac output with CK-1827452.
Conclusions:
- Cardiac myosin activators represent a novel mechanism for improving cardiac function.
- CK-1827452 demonstrated safety and efficacy in preliminary human studies.
- Further clinical trials are warranted to confirm the therapeutic potential of cardiac myosin activators in heart failure.
Abstract:
Decreased systolic function is a central factor in the pathogenesis of heart failure, yet there are no safe medical therapies to improve cardiac function in patients. Currently available inotropes, such as dobutamine and milrinone, increase cardiac contractility at the expense of increased intracellular concentrations of calcium and cAMP, contributing to increased heart rate, hypotension, arrhythmias, and mortality. These adverse effects are inextricably linked to their inotropic mechanism of action. A new class of pharmacologic agents, cardiac myosin activators, directly targets the kinetics of the myosin head. In vitro studies have demonstrated that these agents increase the rate of effective myosin cross-bridge formation, increasing the duration and amount of myocyte contraction, and inhibit non-productive consumption of ATP, potentially improving myocyte energy utilization, with no effect on intracellular calcium or cAMP. Animal models have shown that this novel mechanism increases the systolic ejection time, resulting in improved stroke volume, fractional shortening, and hemodynamics with no effect on myocardial oxygen demand, culminating in significant increases in cardiac efficiency. A first-in-human study in healthy volunteers with the lead cardiac myosin activator, CK-1827452, as well as preliminary results from a study in patients with stable chronic heart failure, have extended these findings to humans, demonstrating significant increases in systolic ejection time, fractional shortening, stroke volume, and cardiac output. These studies suggest that cardiac myosin activators offer the promise of a safe and effective treatment for heart failure. A program of clinical studies are being planned to test whether CK-1827452 will fulfill that promise.
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