Search results for "Pltp"
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Inflammation et maladies métaboliques : analyse par imagerie du métabolisme des lipoprotéines et lipopolysaccharides au cours de l’inflammation
2021
LPS (lipopolysaccharides) are endotoxins originating from Gram-negative bacteria. They have been extensively described for their ability to interact with and disrupt the intestinal barrier. These toxins are able to cross the gut barrier and to pass into the blood (endotoxemia), leading tolow-grade metabolic inflammation or to a severe inflammatory syndrome (SIRS). Fortunately, some circulating proteins such as PLTP (Phospholipid Transfer Protein) are able to transfer LPS to plasma lipoproteins in order to inactivate and detoxify them.The main goals of this study were to investigate the metabolic fate of LPS from the gut and peritoneal cavity but also the influence of PLTP on these toxins in…
Increased Phospholipid Transfer Protein Activity Is Associated With Markers of Enhanced Lipopolysaccharide Clearance in Human During Cardiopulmonary …
2021
Introduction: Lipopolysaccharide (LPS) is a component of gram-negative bacteria, known for its ability to trigger inflammation. The main pathway of LPS clearance is the reverse lipopolysaccharide transport (RLT), with phospholipid transfer protein (PLTP) and lipoproteins playing central roles in this process in experimental animal models. To date, the relevance of this pathway has never been studied in humans. Cardiac surgery with cardiopulmonary bypass is known to favor LPS digestive translocation. Our objective was to determine whether pre-operative PLTP activity and triglyceride or cholesterol-rich lipoprotein concentrations were associated to LPS concentrations in patients undergoing ca…
Physico-chimie des lipopolysaccharides et réponse inflammatoire : rôle des lipoprotéines
2014
LPS is a potent bacterial pro-inflammatory agent, consisting of hydrophilic, polysaccharide part and of a lipid A which is considered like active moiety. Nevertheless, the O chain of LPS influences their aggregation in aqueous media. Therefore, our goal has been to determine the role of O chain on the LPS biological and physiopathological effects. Our work was organized according to three main axes, and led to the following findings :- development of a new LPS assay by LC-MS/MS. The combination of this new technique with LAL test allowed us to calculate an inactivation ratio which reflects the ability of host organism to inactivate LPS, especially through their transfer to HDL by PLTP. The …