LDL and apoB
Extended-release niacin/laropiprant abolishes the postprandial rise in CETP activity and boosts HDL's fecal cholesterol removal capacity (Arterioscler Thromb Vasc Biol 2015)
Original title: Extended-Release Niacin/Laropiprant Improves Overall Efficacy of Postprandial Reverse Cholesterol Transport
Ten statin-treated dyslipidemic patients with low HDL cholesterol received extended-release niacin/laropiprant (ERN/LRPT), escalating from 1g/20mg for 4 weeks to 2g/40mg for 8 more weeks, while researchers tracked postprandial reverse cholesterol transport (RCT) using macrophage cholesterol efflux, CETP-mediated cholesteryl ester transfer, hepatic HDL-cholesteryl ester uptake, and in vivo RCT to feces in an apoB/CETP double-transgenic mouse model. ERN/LRPT significantly reduced postprandial hypertriglyceridemia (incremental AUC-triglyceride -53%, P=0.02) and completely abolished the normal postprandial increase in endogenous plasma CETP activity. Despite a slight reduction in macrophage cholesterol efflux capacity, combined ex vivo and in vivo assessment showed postprandial HDL formed under ERN/LRPT had greater capacity to mediate cholesterol return to the liver and elimination into feces.
Original abstract
Objectives: Postprandial atherogenic lipoproteins, characterizing high-risk patients, correlate positively with cardiovascular events. Although the effect of niacin on fasting lipids is well established, its impact on atheroprotective reverse cholesterol transport (RCT) pathway and on functional features of circulating lipoproteins during the postprandial state remains indeterminate.
Approach And Results: We evaluated RCT pathway during postprandial phase in dyslipidemic patients displaying a low high-density lipoprotein (HDL) cholesterol phenotype. Ten subjects on stable statin therapy received 1 g/20 mg extended-release niacin/laropiprant (ERN/LRPT) for 4 weeks followed by 2 g/40 mg ERN/LRPT for additional 8 weeks. At each experimental period, postprandial hypertriglyceridemia and major steps of RCT, including cholesterol efflux from human macrophages, cholesteryl ester transfer protein-mediated cholesteryl ester transfer, and hepatic HDL-cholesteryl ester selective uptake were evaluated. Equally, the capacity of postprandial HDL particles isolated from patients before and after ERN/LRPT treatment to mediate RCT to feces was evaluated in vivo in human apolipoprotein B/cholesteryl ester transfer protein double transgenic mouse model. Compared with baseline, ERN/LRPT significantly reduced postprandial hypertriglyceridemia (incremental area under the curve-triglyceride: -53%; P=0.02). Postprandial increase in endogenous plasma cholesteryl ester transfer protein activity was completely abolished after ERN/LRPT treatment. Despite a slight reduction in plasma cholesterol efflux capacity from human THP-1 macrophages, evaluation of global RCT efficacy by combining both ex vivo and in vivo approaches indicate that postprandial HDL particles formed under ERN/LRPT therapy displayed a greater capacity for HDL-mediated RCT to feces.
Conclusions: ERN/LRPT treatment efficiently attenuates atherogenic postprandial lipemia and stimulates HDL-mediated cholesterol return to the liver and elimination into feces during postprandial phase, thus maintaining an efficient removal of cholesterol from the body.
HDL biologyLDL and apoBstatins
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.