Mechanisms
A CETP isoform, CETPI, is highlighted as a newly described contributor to LPS inactivation in the gut-liver axis of sepsis (Biomed Pharmacother 2021)
Original title: New insights into lipopolysaccharide inactivation mechanisms in sepsis
This review examines the gut-liver interaction in Gram-negative sepsis, the most common cause of the syndrome, where lipopolysaccharide (LPS) originating from dysbiotic gut microbiota drives an inflammatory state in intestinal epithelial cells. Intestinal damage is described as both a cause and a consequence of sepsis. Among the mechanisms of LPS inactivation surveyed, the authors highlight the recently described contribution of an isoform of cholesteryl ester transfer protein, CETPI, though the abstract gives no further detail on its specific action. The authors conclude that new findings on in vivo LPS inactivation may soon translate into clinical applications, while key questions in sepsis pathophysiology remain unresolved.
Original abstract
The complex pathophysiology of sepsis makes it a syndrome with limited therapeutic options and a high mortality rate. Gram-negative bacteria containing lipopolysaccharides (LPS) in their outer membrane correspond to the most common cause of sepsis. Since the gut is considered an important source of LPS, intestinal damage has been considered a cause and a consequence of sepsis. Although important in the maintenance of the intestinal epithelial cell homeostasis, the microbiota has been considered a source of LPS. Recent studies have started to shed light on how sepsis is triggered by dysbiosis, and an increased inflammatory state of the intestinal epithelial cells, expanding the understanding of the gut-liver axis in sepsis. Here, we review the gut-liver interaction in Gram-negative sepsis, exploring the mechanisms of LPS inactivation, including the recently described contribution of an isoform of the cholesteryl-ester transfer protein (CETPI). Although several key questions remain to be answered when the pathophysiology of sepsis is reviewed, new contributions coming to light exploring the way LPS might be inactivated in vivo, suggest that new applications might soon reach the clinical setting.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.