Mechanisms
Despite no direct LPS-binding activity, human CETP raises mortality in mouse models of endotoxemia and sepsis by impairing lipoprotein-mediated protection (J Lipid Res 2020)
Original title: Human cholesteryl ester transfer protein lacks lipopolysaccharide transfer activity, but worsens inflammation and sepsis outcomes in mice
Cholesteryl ester transfer protein (CETP) belongs to the lipid transfer/LPS-binding protein family, whose members bind bacterial lipopolysaccharide (LPS) and influence its pro-inflammatory or detoxifying fate. Fluorescent LPS transfer assays showed CETP has no ability to bind or transfer LPS in vitro. In transgenic mice expressing human CETP versus wild-type mice lacking CETP activity, CETP expression was associated with lower basal plasma lipid levels but higher mortality after intravenous LPS infusion and after polymicrobial sepsis induced by cecal ligation and puncture. CETP expression tended to reduce biliary LPS excretion in vivo, and CETP-transgenic plasma altered macrophage cytokine production in vitro. The authors conclude human CETP worsens sepsis outcomes in mice by impairing the protective effects of plasma lipoproteins against endotoxemia and infection, despite lacking direct LPS-binding activity.
Original abstract
Bacterial lipopolysaccharides (LPSs or endotoxins) can bind most proteins of the lipid transfer/LPS-binding protein (LT/LBP) family in host organisms. The LPS-bound LT/LBP proteins then trigger either an LPS-induced proinflammatory cascade or LPS binding to lipoproteins that are involved in endotoxin inactivation and detoxification. Cholesteryl ester transfer protein (CETP) is an LT/LBP member, but its impact on LPS metabolism and sepsis outcome is unclear. Here, we performed fluorescent LPS transfer assays to assess the ability of CETP to bind and transfer LPS. The effects of intravenous (iv) infusion of purified LPS or polymicrobial infection (cecal ligation and puncture [CLP]) were compared in transgenic mice expressing human CETP and wild-type mice naturally having no CETP activity. CETP displayed no LPS transfer activity in vitro, but it tended to reduce biliary excretion of LPS in vivo. The CETP expression in mice was associated with significantly lower basal plasma lipid levels and with higher mortality rates in both models of endotoxemia and sepsis. Furthermore, CETPTg plasma modified cytokine production of macrophages in vitro. In conclusion, despite having no direct LPS binding and transfer property, human CETP worsens sepsis outcomes in mice by altering the protective effects of plasma lipoproteins against endotoxemia, inflammation, and infection.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.