Related Experiment Video
Updated: Jan 30, 2026

An Operant Intra-/Extra-dimensional Set-shift Task for Mice
Published on: January 22, 2016
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.
Abstract:
Bromodomain and extra-terminal (BET) inhibitors, acting via epigenetic mechanisms, have been developed recently as potential new treatments for cancer, including prostate cancer, and inflammatory conditions. Some BET inhibitors, such as RVX-208, also raise high-density lipoprotein cholesterol (HDL-C) and apolipoprotein A-1 levels. A recent meta-analysis of three small trials (n = 798) found that RVX-208 protected against major adverse cardiovascular events (MACE), raising the question as to whether this protective effect was an artefact, a chance finding, or mediated by HDL-C, anti-inflammatory pathways, or other factors. Notably, the effect of RVX-208 on MACE was largely driven by revascularizations, but fewer interventions in the treatment arm could have arisen accidently from favorable effects of RVX-208 on HDL-C and C-reactive protein influencing decisions about patient care. A larger (n = 2400) trial of RVX-208, BETonMACE (NCT02586155), with a more restricted definition of MACE, excluding hospitalizations, will shortly provide clarity. A successful BETonMACE trial would raise the question as to whether RVX-208 operates via lipids, inflammation, or other means, because several previous HDL-C modulators and anti-inflammatories have not provided effective means of treating cardiovascular disease and reducing overall mortality. Re-conceptualizing cardiovascular disease within the well-established evolutionary biology theory that growth and specifically reproduction trade-off against longevity might provide a more comprehensive explanation. Drivers of the gonadotropic axis, particularly androgens, suppress both HDL-C and the immune system while promoting ischemic heart disease and stroke. As such, any effects of RVX-208 on cardiovascular disease might be the result of reducing androgens, of which higher HDL-C and reduced inflammation are biomarkers. Notably, several other effective treatments for cardiovascular disease, such as statins and spironolactone, are known anti-androgens. Results of the BETonMACE trial, and corresponding insight about the mechanism of BET inhibitors in cardiovascular disease, are eagerly awaited.
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.
Related Concept Videos
Psychoneuroimmunology: Cardiovascular Disease
A key area of focus in PNI is the relationship between stress and coronary...
Termination of Translation
Termination of Translation
Eukaryotic Transcription Inhibitors
Eukaryotic transcription inhibitors usually contain two distinct domains, a...
Acid Suppressive Drugs for Peptic Ulcer Disease: Proton Pump Inhibitors
Gastric acid, a potent cocktail of hydrogen and chloride ions, is produced in specialized parietal cells within the...
Overview of the Cardiovascular System
Heart
The heart is the central pump of the cardiovascular system that circulates blood throughout the body. It comprises two atria receiving the blood and two ventricles pumping blood out of the heart. Their rhythmic contractions, called heartbeats, ensure that blood flow remains continuous.
Blood Vessels
Blood...

