HDL biology
ApoC1's natural inhibition of plasma CETP is blunted in dyslipidaemic coronary artery disease patients (J Lipid Res 2012)
Original title: Constitutive inhibition of plasma CETP by apolipoprotein C1 is blunted in dyslipidemic patients with coronary artery disease
Apolipoprotein C1 (apoC1) is a potent natural inhibitor of CETP in healthy, normolipidaemic plasma. Researchers tested whether dyslipidaemia alters this relationship in 240 patients with documented coronary artery disease. Across the full cohort, apoC1 levels correlated negatively with CETP activity, independent of apoE, CETP-Taq1B, and apoC1-Hpa1 genotypes, but in multivariate analysis this negative relationship held only in normolipidaemic patients, not in those with hypercholesterolaemia, hypertriglyceridaemia, or combined hyperlipidaemia. In normolipidaemic subjects, higher apoC1 was associated with a higher HDL-to-LDL-cholesterol ratio (r = 0.359, P less than 0.001). The authors conclude apoC1's endogenous CETP-inhibitory action is lost in dyslipidaemic high-risk patients, likely because more apoC1 becomes VLDL-bound and inactive, suggesting these patients could particularly benefit from pharmacological CETP inhibitors.
Original abstract
Plasma cholesteryl ester transfer protein (CETP) promotes the cholesterol enrichment of apoB-containing lipoproteins (VLDL and LDL) at the expense of HDL. Recent studies demonstrated that apoC1 is a potent CETP inhibitor in plasma of healthy, normolipidemic subjects. Our goal was to establish whether the modulation of CETP activity by apoC1 is influenced by dyslipidemia in patients with documented coronary artery disease (CAD). In the total CAD population studied (n = 240), apoC1 levels correlated negatively with CETP activity, independently of apoE-epsilon, CETP-Taq1B, and apoC1-Hpa1 genotypes. In multivariate analysis, the negative relationship was observed only in normolipidemic patients, not in those with hypercholesterolemia, hypertriglyceridemia, or combined hyperlipidemia. In the normolipidemic subjects, apoC1 levels were positively associated with higher HDL- to LDL-cholesterol ratio (r = 0.359, P < 0.001). It is concluded that apoC1 as a CETP inhibitor no longer operates on cholesterol redistribution in high-risk patients with dyslipidemia, probably due to increasing amounts of VLDL-bound apoC1, which is inactive as a CETP inhibitor. Patients with dyslipidemia could experience major benefits from treatment with pharmacological CETP inhibitors, which might compensate for blunted endogenous inhibition.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.