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LDL and apoB

Kinetic tracer studies reveal CETP inhibition raises apoA-I and lowers apoB by shifting catabolism rates of HDL and LDL in opposite directions (Curr Opin Lipidol 2016)

Original title: Recent explanatory trials of the mode of action of drug therapies on lipoprotein metabolism

Curr Opin Lipidol · · 5

Chan DC, Barrett PH, Watts GF

Reviewing recent studies that use endogenous stable-isotope labeling to trace apolipoprotein kinetics, this article highlights how lipid-regulating drugs alter lipoprotein metabolism in humans. Fish oil and niacin both lower triglycerides by reducing hepatic secretion of VLDL-apoB and chylomicron apoB-48, with niacin additionally lowering LDL-apoB and Lp(a) by increasing LDL-apoB catabolism and decreasing Lp(a) secretion. In hypercholesterolaemic subjects, CETP inhibition raised apoA-I and lowered apoB specifically by decreasing catabolism of HDL-apoA-I and increasing catabolism of LDL-apoB, a distinct kinetic mechanism from the other therapies reviewed. Antisense oligonucleotides against apoB mRNA lowered LDL-cholesterol and apoB mainly by increasing LDL-apoB catabolism, unexpectedly without reducing hepatic secretion.

Read the paper (DOI)PubMed

Original abstract

Purpose Of Review: Dysregulated lipoprotein metabolism leads to increased plasma concentrations of atherogenic lipoproteins. We highlight the findings from recent studies of the effect of lipid-regulating therapies on apolipoprotein metabolism in humans employing endogenous labelling with stable isotopically labelled isotopomers.

Recent Findings: Fish oil supplementation and niacin treatment both reduce fasting and postprandial triglyceride levels by decreasing the hepatic secretion of VLDL-apoB-100 (apoB) and apoB-48-containing chylomicron particles in obese and/or type 2 diabetes. Niacin also lowers plasma LDL-apoB and Lp(a) levels by increasing catabolism of LDL-apoB and decreasing secretion of Lp(a), respectively. In subjects with hypercholesterolaemia, inhibition of cholesteryl ester transfer protein raises apoA-I and lowers apoB by decreasing and increasing the catabolism of HDL-apoA-I and LDL-apoB, respectively. Antisense oligonucleotides directed at apoB mRNA lowers plasma LDL-cholesterol and apoB chiefly by increasing the catabolism and decreasing the secretion of LDL-apoB in healthy subjects. That apoB ASO treatment does not lower hepatic secretion in humans is unexpected and merits further investigation.

Summary: Kinetic studies provide mechanistic insight into the mode of action of lipid lowering therapies and lipoprotein disorders. Understanding the mode of action of new drugs in vivo is important to establish their effective use in clinical practice.

HDL biologyLDL and apoBmechanisms

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