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Torcetrapib

A review of four lipid transfer proteins highlights the early human results of torcetrapib as opening a new era in coronary heart disease prevention (Atherosclerosis 2005)

Original title: Lipid transfer proteins (LTP) and atherosclerosis

Atherosclerosis · · 4

Stein O, Stein Y

This review examines four lipid transfer proteins involved in cholesteryl ester synthesis or transport (ACAT1, ACAT2, CETP) or plasma phospholipid transfer (PLTP), and their relationship to atherosclerosis based on experimental, clinical, and epidemiological studies. Among the proteins discussed, low CETP activity is linked to high HDL cholesterol, and while several CETP inhibitors tried in rabbits gave variable results, the new CETP inhibitor torcetrapib was tested in humans and produced a 50% to 100% increase in HDL cholesterol. The review also covers ACAT inhibition (including the discovery that tamoxifen is a potent ACAT inhibitor), the role of LCAT in oxidative stress, and the effects of PLTP deficiency on apoB production and oxidative stress in mouse atherosclerosis models, concluding that the marked HDL-C increase achievable with CETP inhibitors introduces a new era for coronary heart disease prevention and treatment.

Read the paper (DOI)PubMed

Original abstract

This review deals with four lipid transfer proteins (LTP): three are involved in cholesteryl ester (CE) synthesis or transport, the fourth deals with plasma phospholipid (PL) transfer. Experimental models of atherosclerosis, clinical and epidemiological studies provided information as to the relationship of these LTP(s) to atherosclerosis, which is the main focus of this review. Thus, inhibition of acyl-CoA:cholesterol acyltransferase (ACAT) 1 and 2 decreases cholesterol absorption, plasma cholesterol and aortic cholesterol esterification in the aorta. The discovery that tamoxifen is a potent ACAT inhibitor explained the plasma cholesterol lowering of the drug. The use of ACAT inhibition in humans is under current investigation. As low cholesteryl ester transfer protein (CETP) activity is connected with high HDL-C, several CETP inhibitors were tried in rabbits, with variable results. A new CETP inhibitor, Torcetrapib, was tested in humans and there was a 50-100% increase in HDL-C. Lecithin cholesterol acyl-transferase (LCAT) influences oxidative stress, which can be lowered by transient LCAT gene transfer in LCAT-/- mice. Phospholipid transfer protein (PLTP) deficiency reduced apo B production in apo E-/- mice, as well as oxidative stress in four models of mouse atherosclerosis. In conclusion, the ability to increase HDL-C so markedly by inhibitors of CETP introduces us into a new era in prevention and treatment of coronary heart disease (CHD).

HDL biologytorcetrapib

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