Anacetrapib
Anacetrapib reduces mortality from pneumococcal sepsis in mice by priming monocytes and speeding bacterial clearance (JCI Insight 2024)
Original title: CETP inhibition enhances monocyte activation and bacterial clearance and reduces streptococcus pneumonia-associated mortality in mice
Low HDL-C is linked to higher sepsis mortality, and CETP inhibition raising HDL-C had already been shown to reduce mortality from intra-abdominal polymicrobial sepsis in APOE3-Leiden.CETP mice. This study found the CETP inhibitor anacetrapib also reduced mortality from Streptococcus pneumoniae-induced sepsis in APOE3-Leiden.CETP and APOA1.CETP mice. CETP inhibition reduced the host pro-inflammatory response by attenuating pro-inflammatory cytokine transcription and release, an effect dependent on HDL being present, which limited immune-mediated organ damage. Separately, CETP inhibition activated monocytes in the blood before sepsis onset, accelerating macrophage recruitment to lung and liver. In vitro, CETP inhibition promoted pro-inflammatory signalling in immune cells even without HDL present, a mechanism the authors propose underlies improved bacterial clearance during sepsis. Mouse mechanistic evidence that CETP inhibition could reduce mortality from pneumonia-driven sepsis specifically, not yet tested in humans.
Original abstract
Sepsis is a leading cause of mortality worldwide, and pneumonia is the most common cause of sepsis in humans. Low levels of high-density lipoprotein cholesterol (HDL-C) levels are associated with an increased risk of death from sepsis, and increasing levels of HDL-C by inhibition of cholesteryl ester transfer protein (CETP) decreases mortality from intraabdominal polymicrobial sepsis in APOE*3-Leiden.CETP mice. Here, we show that treatment with the CETP inhibitor (CETPi) anacetrapib reduced mortality from Streptococcus pneumoniae-induced sepsis in APOE*3-Leiden.CETP and APOA1.CETP mice. Mechanistically, CETP inhibition reduced the host proinflammatory response via attenuation of proinflammatory cytokine transcription and release. This effect was dependent on the presence of HDL, leading to attenuation of immune-mediated organ damage. In addition, CETP inhibition promoted monocyte activation in the blood prior to the onset of sepsis, resulting in accelerated macrophage recruitment to the lung and liver. In vitro experiments demonstrated that CETP inhibition significantly promoted the activation of proinflammatory signaling in peripheral blood mononuclear cells and THP1 cells in the absence of HDL; this may represent a mechanism responsible for improved bacterial clearance during sepsis. These findings provide evidence that CETP inhibition represents a potential approach to reduce mortality from pneumosepsis.
anacetrapibinfectioninflammationmechanisms
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.