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CETP inhibition in rabbits blocks one HDL cholesteryl ester removal pathway but does not compromise overall clearance from plasma (Arterioscler Thromb Vasc Biol 2005)
Original title: Effect of inhibiting cholesteryl ester transfer protein on the kinetics of high-density lipoprotein cholesteryl ester transport in plasma: in vivo studies in rabbits
Addressing the theoretical concern that CETP inhibitors could be pro-atherogenic by blocking a route for removing HDL cholesteryl ester from plasma, researchers gave rabbits a CETP inhibitor that reduced CETP activity by 80 to 90% and doubled HDL cholesteryl ester concentration. Using tracer-labeled HDL and multi-compartmental kinetic analysis, they found that control rabbits removed HDL cholesteryl ester via both a direct pathway and an indirect pathway involving transfer to VLDL and LDL, whereas CETP-inhibited rabbits showed an almost complete block of the indirect pathway. Despite this, overall removal of HDL cholesteryl ester from plasma did not differ between CETP-inhibited and control animals, indicating that inhibiting CETP in rabbits does not compromise HDL cholesteryl ester clearance.
Original abstract
Objective: Inhibitors of cholesteryl ester transfer protein (CETP) have been developed as potential anti-atherogenic agents. Theoretically, however, they may be pro-atherogenic by blocking one of the pathways for removing high-density lipoprotein (HDL) cholesteryl esters (CE) from plasma in the final step of reverse cholesterol transport. Here we describe how CETP inhibition in rabbits impacts on the kinetics of HDL CE transport in plasma.
Methods And Results: Administration of a CETP inhibitor reduced CETP activity by 80% to 90% and doubled the HDL cholesteryl ester concentration. Multi-compartmental analysis was used to determine HDL CE kinetics in CETP-inhibited and control rabbits after injection of tracer amounts of both native and reconstituted HDL labeled with 3H in the CE moiety. In control rabbits, HDL CE was removed from plasma by both a direct pathway and an indirect pathway after transfer of HDL CE to the very-low-density lipoprotein/low-density lipoprotein fraction. In CETP-inhibited rabbits there was an almost complete block in removal via the indirect pathway. This did not compromise the overall removal of HDL CE from plasma, which was not different in control and inhibited animals.
Conclusions: Inhibiting CETP in rabbits does not compromise the removal of HDL CE from plasma.
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Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.