How Might Bromodomain and Extra-Terminal (BET) Inhibitors Operate in Cardiovascular Disease?

C Mary Schooling1,2, Jie V Zhao3

  • 1CUNY Graduate School of Public Health and Health Policy (CUNY SPH), 55 West 125th St, New York, NY, 10027, USA. mary.schooling@sph.cuny.edu.

Insights

Bromodomain and extra-terminal (BET) inhibitors like RVX-208 show potential cardiovascular benefits, possibly by increasing HDL-C and reducing inflammation. Further trials are needed to confirm if these effects are real or mediated by other factors like androgen reduction.

Area of Science:

  • Cardiovascular Pharmacology
  • Epigenetics
  • Oncology

Background:

  • Bromodomain and extra-terminal (BET) inhibitors are novel epigenetic drugs explored for cancer and inflammatory conditions.
  • Some BET inhibitors, including RVX-208, increase high-density lipoprotein cholesterol (HDL-C) and apolipoprotein A-1.
  • Previous meta-analyses suggest RVX-208 may protect against major adverse cardiovascular events (MACE), but the mechanism remains unclear.

Purpose of the Study:

  • To investigate the potential cardiovascular protective effects of the BET inhibitor RVX-208.
  • To explore potential mechanisms underlying RVX-208's cardiovascular effects, including lipid modulation, anti-inflammatory actions, or androgen suppression.
  • To await results from the BETonMACE trial for further clarity on RVX-208's efficacy and mechanism in cardiovascular disease.

Main Methods:

  • Analysis of a meta-analysis of three small trials (n=798) evaluating RVX-208 for cardiovascular outcomes.
  • Consideration of evolutionary biology theories linking growth, reproduction, and longevity to cardiovascular disease.
  • Anticipation of results from the larger BETonMACE trial (n=2400) with a refined MACE definition.

Main Results:

  • A meta-analysis indicated RVX-208 protected against MACE, primarily driven by reduced revascularizations.
  • The observed cardiovascular benefits might be influenced by favorable effects on HDL-C and C-reactive protein, potentially affecting clinical decisions.
  • The study posits that RVX-208's cardiovascular effects could stem from androgen reduction, with elevated HDL-C and reduced inflammation serving as biomarkers.

Conclusions:

  • The precise mechanism by which RVX-208 impacts cardiovascular events requires further investigation.
  • The BETonMACE trial is expected to provide crucial insights into RVX-208's efficacy and mechanism of action.
  • Understanding RVX-208's role in cardiovascular disease may benefit from considering its potential anti-androgenic properties, similar to other cardiovascular treatments.

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