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Cationic Polystyrene Resolves Nonalcoholic Steatohepatitis Obesity and Metabolic Disorders by Promoting Eubiosis of Gut Microbiota and Decreasing Endotoxemia

机译:阳离子聚苯乙烯通过促进肠道菌群的遍在性和减少内毒素血症来解决非酒精性脂肪性肝炎肥胖症和代谢性疾病

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摘要

A pandemic of metabolic diseases, consisting of type 2 diabetes, nonalcoholic fatty liver disease, and obesity, has imposed critical challenges for societies worldwide, prompting investigation of underlying mechanisms and exploration of low-cost and effective treatment. In this report, we demonstrate that metabolic disorders in mice generated by feeding with a high-fat diet without dietary vitamin D can be prevented by oral administration of polycationic amine resin. Oral administration of cholestyramine, but not the control uncharged polystyrene, was able to sequester negatively charged bacterial endotoxin in the gut, leading to 1) reduced plasma endotoxin levels, 2) resolved systemic inflammation and hepatic steatohepatitis, and 3) improved insulin sensitivity. Gut dysbiosis, characterized as an increase of the phylum Firmicutes and a decrease of Bacteroidetes and Akkermansia muciniphila, was fully corrected by cholestyramine, indicating that the negatively charged components in the gut are critical for the dysbiosis. Furthermore, fecal bacteria transplant, derived from cholestyramine-treated animals, was sufficient to antagonize the metabolic disorders of the recipient mice. These results indicate that the negatively charged components produced by dysbiosis are critical for biogenesis of metabolic disorders and also show a potential application of cationic polystyrene to treat metabolic disorders through promoting gut eubiosis.
机译:包括2型糖尿病,非酒精性脂肪肝疾病和肥胖症在内的新陈代谢疾病大流行,对全世界的社会构成了严峻挑战,促使人们研究了潜在的机制并探索了低成本有效的治疗方法。在本报告中,我们证明了通过口服聚阳离子胺树脂可以预防高脂饮食喂养而产生的小鼠代谢紊乱。口服胆甾醇胺,而不是对照的不带电荷的聚苯乙烯,能够隔离肠道中带负电荷的细菌内毒素,从而导致1)血浆内毒素水平降低,2)解决的全身性炎症和肝脂肪性肝炎,以及3)胰岛素敏感性提高。胆甾醇胺完全纠正了肠铁质营养不良,其特征是菌毛门的增加和拟杆菌和粘蛋白阿克曼氏菌的减少,这表明肠中带负电荷的成分对营养不良至关重要。此外,源自胆甾醇胺处理的动物的粪便细菌移植足以拮抗受体小鼠的代谢异常。这些结果表明,由营养不良所产生的带负电的成分对于代谢紊乱的生物发生至关重要,并且还显示出阳离子聚苯乙烯通过促进肠道普遍存在来治疗代谢紊乱的潜在应用。

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