Related Experiment Video
Updated: Jan 12, 2026

Cholesterol Efflux Assay
Published on: March 6, 2012
The two faces of cholesteryl ester transfer protein inhibitors
Angela Pirillo1, Alberico L Catapano2,3
1Center for the Study of Atherosclerosis, E. Bassini Hospital, Cinisello Balsamo.
Insights
Cholesteryl ester transfer protein (CETP) inhibitors like obicetrapib show promise for atherosclerotic cardiovascular disease (ASCVD) by lowering LDL-C and apoB, not just raising HDL-C.
Area of Science:
- Cardiovascular Medicine
- Lipid Metabolism
- Pharmacology
Background:
- The role of LDL in ASCVD is clear, but HDL's contribution is complex.
- Previous CETP inhibitors failed to demonstrate cardiovascular benefit, altering views on CETP biology.
- Renewed interest in CETP inhibition stems from the development of obicetrapib.
Purpose of the Study:
- To review the latest findings on CETP inhibition.
- To highlight evolving perspectives on CETP inhibitors from lipid modulation to broader clinical applications.
- To assess the therapeutic potential of obicetrapib.
Main Methods:
- Review of clinical trials and genetic evidence.
- Analysis of obicetrapib's efficacy, safety, and off-target effects.
- Examination of preliminary data on CETP inhibition's impact beyond ASCVD.
Main Results:
- Increasing HDL-C alone does not reduce cardiovascular risk; lowering apoB is beneficial.
- Obicetrapib demonstrates significant LDL-C and apoB reduction, marked HDL-C increase, and favorable safety.
- Preliminary data suggest CETP inhibition may impact diabetes risk and cognitive function.
Conclusions:
- The therapeutic focus for cardiovascular benefit has shifted from HDL-C elevation to apoB lowering.
- Obicetrapib shows therapeutic promise for ASCVD management.
- Ongoing trials will define obicetrapib's definitive role in ASCVD treatment.
Purpose Of Review:
The causal role of LDL in atherosclerotic cardiovascular disease (ASCVD) is well established, but the contribution of HDL has proven more complex. CETP inhibitors were originally developed to increase HDL-cholesterol (HDL-C), but the failure of clinical trials and genetic evidence have changed our understanding of CETP biology. With the development of obicetrapib, a next-generation CETP inhibitor, there has been renewed interest in its therapeutic potential. This review summarizes the latest findings on CETP inhibition and highlights the evolving perspectives from lipid modulation to broader clinical applications.
Recent Findings:
Clinical trials and Mendelian randomisation consistently show that increasing HDL-C alone does not reduce cardiovascular risk, while lowering apoB-containing lipoproteins is associated with benefit. Off-target effects, modest efficacy or insufficient follow-up limited previous CETP inhibitors. Obicetrapib, in contrast, achieves a significant LDL-C and apoB reduction, a marked HDL-C increase and favourable safety. Beyond ASCVD, CETP inhibition may also have an impact on diabetes risk, cognitive function and possibly other conditions, although data are still preliminary.
Summary:
The therapeutic focus has shifted from HDL-C elevation to apoB lowering as the determinant of cardiovascular benefit. Obicetrapib shows promise, with ongoing trials designed to define its role in ASCVD management.
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