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Review contrasts disappointing CETP antagonists with the anti-inflammatory promise of the CETP agonist probucol (Atherosclerosis 2018)

Original title: Cholesteryl ester transfer protein: An enigmatic pharmacology - Antagonists and agonists

Atherosclerosis · · 6

Yamashita S, Ruscica M, Macchi C, Corsini A, Matsuzawa Y, Sirtori CR

CETP shuttles cholesteryl esters from HDL to VLDL and LDL in exchange for triglycerides, a system present in higher animal species but absent in lower species, which instead carry enlarged, apoE-enriched HDL suited to tissue receptor uptake. Small-molecule CETP antagonists, torcetrapib, anacetrapib, evacetrapib, and dalcetrapib, reliably raised HDL-C but produced disappointing results in cardiovascular prevention trials. In contrast, the CETP agonist probucol lowers HDL-C while enhancing tissue cholesterol removal, reducing xanthomas and xanthelasmas, showing positive findings in secondary prevention trials, and displaying a marked anti-inflammatory profile through reduced interleukin-1beta expression. The review concludes that despite the failure of CETP antagonists to dampen enthusiasm, the CETP system remains a crucial crossroad for cholesterol metabolism research, with newer natural-origin agents offering additional pharmacodynamic properties worth investigating.

Read the paper (DOI)PubMed

Original abstract

The cholesteryl ester transfer protein (CETP) system moves cholesteryl esters (CE) from high density lipoproteins (HDL) to lower density lipoproteins, i.e. very low-density lipoprotein (VLDL) and low-density lipoprotein (LDL) in exchange for triglycerides (TGs). This shuttle process will ultimately form complexes facilitating a bidirectional exchange of CE and TGs, the end process being CE delivery to catabolic sites. The CETP system is generally characteristic of higher animal species; lower species, not provided with this system, have higher and enlarged HDL enriched with apo E, suitable for tissue receptor interaction. Discovery of the CETP system has led to the development of agents interfering with CETP, thus elevating HDL-C and potentially preventing cardiovascular (CV) disease. Activation of CETP leads instead to reduced HDL-C levels, but also to an enhanced removal of CE from tissues. CETP antagonists are mainly small molecules (torcetrapib, anacetrapib, evacetrapib, dalcetrapib) and have provided convincing evidence of a HDL-C raising activity, but disappointing results in trials of CV prevention. In contrast, the CETP agonist probucol leads to HDL-C lowering followed by an increment of tissue cholesterol removal (reduction of xanthomas, xanthelasmas) and positive findings in secondary prevention trials. The drug has an impressive anti-inflammatory profile (markedly reduced interleukin-1β expression). Newer agents, some of natural origin, have additional valuable pharmacodynamic properties. The pharmacological approach to the CETP system remains enigmatic, although the failure of CETP antagonists has dampened enthusiasm. Studies on the system, a crossroad for any investigation on cholesterol metabolism, have however provided crucial contributions and will still be confronting any scientist working on CV prevention.

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Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.