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Review highlights a paradox, CETP protects against bacterial infection but promotes atherosclerosis (Atherosclerosis 2009)

Original title: Lipid transfer proteins: past, present and perspectives

Atherosclerosis · · 5

Quintão EC, Cazita PM

This review of PLTP and CETP highlights an apparent contradiction between their roles in atherosclerosis and in acute inflammation. Human population data favor low CETP as atheroprotective, consistent with animal models in which human CETP overexpression is atherogenic via increased apoB-lipoprotein cholesterol, supporting CETP inhibition as an antiatherogenic strategy. Yet in bacterial infection, the picture reverses: experimental human CETP expression protects mice from the harmful effects of a bacterial polysaccharide infusion, and mortality in severely ill patients correlates with reduction of plasma CETP concentration. The authors conclude that the biological roles of PLTP and CETP in atherosclerosis versus acute inflammation must be carefully monitored when developing drugs that inhibit their activity.

Read the paper (DOI)PubMed

Original abstract

Lipid transfer proteins (PLTP and CETP) play roles in atherogenesis by modifying the arterial intima cholesterol content via altering the concentration and function of plasma lipoproteins and influencing inflammation. In this regard, endotoxins impair the reverse cholesterol transport (RCT) system in an endotoxemic rodent model, supporting a pro-inflammatory role of HDL reported in chronic diseases where atherosclerosis is premature. High PLTP activity related to atherosclerosis in some clinical studies, but the mechanisms involved could not be ascertained. In experimental animals the relation of elevated plasma PLTP concentration with atherosclerosis was confounded by HDL-C lowering and by unfavorable effects on several inflammatory markers. Coincidently, PLTP also increases in human experimental endotoxemia and in clinical sepsis. Human population investigations seem to favor low CETP as atheroprotective; this is supported by animal models where overexpression of huCETP is atherogenic, most likely due to increased concentration of apoB-lipoprotein-cholesterol. Thus, in spite of CETP facilitating the HDL-C-mediated RCT, the reduction of apoB-LP-cholesterol concentration is the probable antiatherogenic mechanism of CETP inhibition. On the other hand, experimental huCETP expression protects mice from the harmful effects of a bacterial polysaccharide infusion and the mortality rate of severely ill patients correlates with reduction of the plasma CETP concentration. Thus, the roles played by PLTP and CETP on atherosclerosis and acute inflammation seem contradictory. Therefore, the biological roles of PLTP and CETP must be carefully monitored when investigating drugs that inhibit their activity in the prevention of atherosclerosis.

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