HDL biology
Review notes that impaired apoC1 inhibition of CETP in diabetes may explain elevated CETP activity in diabetic patients (Cardiovasc Diabetol 2022)
Original title: Role of apolipoprotein C1 in lipoprotein metabolism, atherosclerosis and diabetes: a systematic review
This systematic review examines apolipoprotein C1 (apoC1), a small, highly exchangeable apolipoprotein whose effects on lipoprotein metabolism include inhibiting VLDL binding to its receptors, reducing lipoprotein lipase activity, and stimulating VLDL production, all raising plasma triglycerides. The review also describes apoC1's role in HDL metabolism, where it inhibits CETP, and notes that this apoC1-mediated inhibition of CETP is impaired in diabetes, which may partly explain the increased plasma CETP activity observed in diabetic patients. Given apoC1's context-dependent pro- or anti-atherogenic effects and its high exchangeability between VLDL and HDL, the review argues its precise role in cardiometabolic disease and possible pleiotropic effects on inflammation and vascular biology require further study.
Original abstract
Apolipoprotein C1 (apoC1) is a small size apolipoprotein whose exact role is not totally clarified but which seems to modulate significantly the metabolism of lipoproteins. ApoC1 is involved in the metabolism of triglyceride-rich lipoproteins by inhibiting the binding of very low density lipoproteins (VLDL) to VLDL-receptor (VLDL-R), to low density lipoprotein receptor (LDL-R) and to LDL receptor related protein (LRP), by reducing the activity of lipoprotein lipase (LPL) and by stimulating VLDL production, all these effects leading to increase plasma triglycerides. ApoC1 takes also part in the metabolism of high density lipoproteins (HDL) by inhibiting Cholesterol Ester Transfer Protein (CETP). The functionality of apoC1 on CETP activity is impaired in diabetes that might account, at least in part, for the increased plasma CETP activity observed in patients with diabetes. Its different effects on lipoprotein metabolism with a possible role in the modulation of inflammation makes the net impact of apoC1 on cardiometabolic risk difficult to figure out and apoC1 might be considered as pro-atherogenic or anti-atherogenic depending on the overall metabolic context. Making the link between total plasma apoC1 levels and the risk of cardio-metabolic diseases is difficult due to the high exchangeability of this small protein whose biological effects might depend essentially on its association with VLDL or HDL. The role of apoC1 in humans is not entirely elucidated and further studies are needed to determine its precise role in lipid metabolism and its possible pleiotropic effects on inflammation and vascular wall biology. In this review, we will present data on apoC1 structure and distribution among lipoproteins, on the effects of apoC1 on VLDL metabolism and HDL metabolism and we will discuss the possible links between apoC1, atherosclerosis and diabetes.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.