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首页> 外文期刊>American Journal of Physiology >Luminal bacterial flora determines physiological expression of intestinal epithelial cytoprotective heat shock proteins 25 and 72.
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Luminal bacterial flora determines physiological expression of intestinal epithelial cytoprotective heat shock proteins 25 and 72.

机译:发光细菌菌群决定了肠上皮细胞保护性热休克蛋白25和72的生理表达。

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Heat shock proteins (HSP) 25 and 72 are expressed normally by surface colonocytes but not by small intestinal enterocytes. We hypothesized that luminal commensal microflora maintain the observed colonocyte HSP expression. The ability of the small intestine to respond to bacteria and their products and modulate HSPs has not been determined. The effects of luminal bacterial flora in surgically created midjejunal self-filling (SFL) vs. self-emptying (SEL) small-bowel blind loops on epithelial HSP expression were studied. HSP25 and HSP72 expression were assessed by immunoblot and immunohistochemistry. SFL were chronically colonized, whereas SEL contained levels of bacteria normal for the proximal small intestine. SFL creation significantly increased HSP25 and HSP72 expression relative to corresponding sections from SEL. Metronidazole treatment, which primarily affects anaerobic bacteria as well as a diet lacking fermentable fiber, significantly decreased SFL HSP expression. Small bowel incubation with butyrate ex vivo induced a sustained and significant upregulation of HSP25 and altered HSP72 expression, confirming the role of short-chain fatty acids. To determine whether HSPs induction altered responses to an injury, effects of the oxidant, monochloramine, on epithelial resistance and short-circuit current (I(sc)) responses to carbachol and glucose were compared. Increased SFL HSP expression was associated with protection against oxidant-induced decreases in transmural resistance and I(sc) responses to glucose, but not secretory responses to carbachol. In conclusion, luminal microflora and their metabolic byproducts direct expression of HSPs in gut epithelial cells, an effect that contributes to preservation of epithelial cell viability under conditions of stress.
机译:热休克蛋白(HSP)25和72通常由表面结肠细胞表达,而不由小肠肠上皮细胞表达。我们假设管腔共生菌群保持观察到的结肠细胞HSP表达。小肠对细菌及其产物的反应和调节HSP的能力尚未确定。研究了腔内细菌菌群在手术产生的空肠自充盈(SFL)与自空(SEL)小肠盲环对上皮HSP表达的影响。通过免疫印迹和免疫组织化学评估HSP25和HSP72的表达。 SFL长期定居,而SEL含有近端小肠正常细菌水平。相对于SEL的相应部分,SFL的产生显着增加了HSP25和HSP72的表达。甲硝唑治疗主要影响厌氧菌以及缺乏可发酵纤维的饮食,因此会显着降低SFL HSP表达。小肠与丁酸离体温育可诱导HSP25持续且显着上调并改变HSP72表达,从而证实了短链脂肪酸的作用。为了确定HSP的诱导是否改变了对损伤的反应,比较了氧化剂一氯胺对上皮电阻和对卡巴胆碱和葡萄糖的短路电流(I(sc))反应的影响。 SFL HSP表达的增加与抗氧化剂诱导的跨壁电阻降低和对葡萄糖的I(sc)反应(而不是对卡巴胆碱的分泌反应)的保护有关。总之,腔内菌群及其代谢副产物指导HSPs在肠道上皮细胞中的表达,这种作用有助于在压力条件下保持上皮细胞的活力。

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