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Ability of prebiotic polysaccharides to activate a HIF1α-antimicrobial peptide axis determines liver injury risk in zebrafish.

Commun Biol. 2019-01; 
ZhangZhen,RanChao,DingQian-Wen,LiuHong-Liang,XieMing-Xu,YangYa-Lin,XieYa-Dong,GaoChen-Chen,ZhangHong-Ling,ZhouZhi-
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Molecular Biology Reagents LPS level was determined using the ToxinSensorTM Chromogenic LAL Endotoxin Assay Kit (GenScript, Jiangsu Province, China) according to the manufacturer’s instructions. Get A Quote

摘要

Natural polysaccharides have received much attention for their ability to ameliorate hepatic steatosis induced by high-fat diet. However, the potential risks of their use have been less investigated. Here, we show that the exopolysaccharides (EPS) from GG (LGG) and BL23 reduce hepatic steatosis in zebrafish fed a high-fat diet, while BL23 EPS, but not LGG EPS, induce liver inflammation and injury. This is due to the fact that BL23 EPS induces gut microbial dysbiosis, while LGG EPS promotes microbial homeostasis. We find that LGG EPS, but not BL23 EPS, can directly activate intestinal HIF1α, and increased HIF1α boosts local antimicrobial peptide expression to facilitate microbial homeostasi... More

关键词

Antimicrobials,Dysbiosis,Microbiota,Non-alcoholic fatty liver dis