The class
Review proposes CETP inhibition among potential HDL-directed treatments for sepsis (Int J Mol Sci 2022)
Original title: Impact of High-Density Lipoproteins on Sepsis
This review examines how high-density lipoproteins (HDL) affect sepsis, a life-threatening dysregulated response to infection, from biochemical, epidemiological, and interventional perspectives. HDL sequester and neutralise pathogen-associated lipids via the reverse lipopolysaccharide transport pathway, and Mendelian randomisation evidence is consistent with a causal relationship between higher HDL cholesterol and lower risk of infectious hospitalisation, with low HDL-C independently predicting worse sepsis outcomes. The review notes that HDL-associated enzymes, including phospholipid transfer protein and cholesteryl ester transfer protein (CETP), undergo profound changes during sepsis, and lists CETP inhibition, alongside apolipoprotein A-I-based therapies and recombinant phospholipid transfer protein, as a potential HDL-directed intervention worth exploring for sepsis treatment.
Original abstract
Sepsis is a life-threatening organ dysfunction caused by a dysregulated host response to infection. Here, we review the impact of high-density lipoproteins (HDL) on sepsis from the perspective of biochemistry and pathophysiology, epidemiological research, and intervention studies in animals. Pathogen lipid moieties are major ligands for innate immunity receptors, such as toll-like receptors. The binding of pathogen-associated lipids to lipoproteins leads to sequestration, neutralization, and inactivation of their pro-inflammatory effects. Lipoproteins constitute an arm of the innate immune system. Pathogen-associated lipids can be removed from the body via the reverse lipopolysaccharide transport pathway in which HDL play a key role. Independent of the capacity for sequestration, the direct anti-inflammatory effects of HDL may counteract the development of sepsis. Mendelian randomization research using genetic variants associated with HDL cholesterol as an instrumental variable was consistent with a probable causal relationship between increased HDL cholesterol levels and decreased risk of infectious hospitalizations. Low HDL cholesterol independently predicts an adverse prognosis in sepsis both in observational epidemiology and in Mendelian randomization studies. Several HDL-associated enzymes, including phospholipid transfer protein (PLTP) and cholesterol ester transfer protein (CETP), undergo profound changes during sepsis. Potential HDL-directed interventions for treatment of sepsis include apolipoprotein A-I-based therapies, recombinant PLTP, and CETP inhibition.
the classinfectioninflammation
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.