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Mechanisms

Review highlights that CETP inhibitors lower blood glucose alongside raising HDL cholesterol (Front Pharmacol 2015)

Original title: HDL and glucose metabolism: current evidence and therapeutic potential

Front Pharmacol · · 4

Siebel AL, Heywood SE, Kingwell BA

This review examines evidence that HDL and its principal apolipoprotein A-I influence glucose metabolism, noting that both acute reconstituted HDL infusion and chronically raising HDL via a CETP inhibitor reduce blood glucose in people with type 2 diabetes. It discusses three proposed mechanisms by which HDL affects glucose regulation across the pancreas, skeletal muscle, heart, adipose tissue, liver and brain: stimulating insulin secretion from pancreatic beta cells, promoting insulin-independent glucose uptake, and improving insulin sensitivity. The authors argue these glucoregulatory effects have implications extending beyond diabetes management to anti-ischemic actions in conditions including angina, intermittent claudication, cerebral ischemia and some forms of dementia.

Read the paper (DOI)PubMed

Original abstract

High-density lipoprotein (HDL) and its principal apolipoprotein A-I (ApoA-I) have now been convincingly shown to influence glucose metabolism through multiple mechanisms. The key clinically relevant observations are that both acute HDL elevation via short-term reconstituted HDL (rHDL) infusion and chronically raising HDL via a cholesteryl ester transfer protein (CETP) inhibitor reduce blood glucose in individuals with type 2 diabetes mellitus (T2DM). HDL may mediate effects on glucose metabolism through actions in multiple organs (e.g., pancreas, skeletal muscle, heart, adipose, liver, brain) by three distinct mechanisms: (i) Insulin secretion from pancreatic beta cells, (ii) Insulin-independent glucose uptake, (iii) Insulin sensitivity. The molecular mechanisms appear to involve both direct HDL signaling actions as well as effects secondary to lipid removal from cells. The implications of glucoregulatory mechanisms linked to HDL extend from glycemic control to potential anti-ischemic actions via increased tissue glucose uptake and utilization. Such effects not only have implications for the prevention and management of diabetes, but also for ischemic vascular diseases including angina pectoris, intermittent claudication, cerebral ischemia and even some forms of dementia. This review will discuss the growing evidence for a role of HDL in glucose metabolism and outline related potential for HDL therapies.

diabetesmechanisms

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