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Clinician update reviews how CETP inhibition raises HDL by 50 to 100 percent in humans but flags mixed results across metabolic contexts (Circulation 2005)

Original title: Increasing high-density lipoprotein cholesterol in dyslipidemia by cholesteryl ester transfer protein inhibition: an update for clinicians

Circulation · · 5

Forrester JS, Makkar R, Shah PK

This clinician-focused update on CETP inhibition notes that in the hypercholesterolemic rabbit, HDL can be raised more than 50% by inhibiting CETP, an effect that is antiatherosclerotic in moderately severe hyperlipidemia but appears ineffective in severe hypertriglyceridemia. In humans, CETP-inhibiting mutations have been linked to both reduced and increased atherosclerosis risk, which the authors attribute to the antiatherosclerotic effect of CETP inhibition varying with metabolic context or degree of inhibition. New pharmacological CETP inhibitors were, at the time, capable of raising human HDL by 50 to 100%, a magnitude comparable to statins' effect on LDL, and the review calls for forthcoming clinical trials to identify which patient subsets benefit most from CETP inhibition.

Read the paper (DOI)PubMed

Original abstract

Reduced HDL cholesterol may be a risk factor comparable in importance to increased LDL cholesterol. Interventions that raise HDL are antiatherosclerotic, presumably through acceleration of reverse cholesterol transport and by antioxidant and antiinflammatory effects. In the hypercholesterolemic rabbit, HDL levels can be increased by >50% by inhibition of cholesteryl ester transfer protein (CETP), a molecule that plays a central role in HDL metabolism. This HDL-raising effect is antiatherosclerotic in moderately severe hyperlipidemia but appears to be ineffective in the presence of severe hypertriglyceridemia. In humans, mutations resulting in CETP inhibition have been associated with both reduced and increased risk of atherosclerosis. Proposed explanations for these apparently disparate observations are that the antiatherosclerotic effect of CETP inhibition varies with either the metabolic milieu or the degree of CETP inhibition. We now have pharmacological inhibitors of CETP that are capable of increasing HDL by as much as 50% to 100% in humans. The importance of this development is that reduced HDL is a risk factor independent of LDL and that these new agents alter HDL by a magnitude comparable to that of statins on LDL. Clinical trials, now beginning, will need to identify the patient subsets in which CETP inhibition may be more or less effective.

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Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.