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Dietary psyllium fiber increases intestinal heat shock protein 25 expression in mice

机译:膳食腹纤维纤维增加肠道热休克蛋白25小鼠的表达

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Heat shock proteins (HSPs) protect intestinal epithelial cell function, integrity and viability against many forms of stress. We hypothesized that dietary fibers (DFs) in the diet may increase HSP expression, since DFs are known to exhibit beneficial effects on intestinal health. The present study investigated the regulation of intestinal HSP expression by DFs, particularly psyllium fiber. Feeding psyllium fiber for 5 d increased HSP25 expression, but not HSP32 and HSP70 expression in the jejunum, ileum, and colon of mice at both the protein and mRNA levels. The increases in HSP25 expression did not correlate with cecal organic acid production by microbial fermentation. The water-insoluble fraction of psyllium fiber largely contributed to the induction of HSP25 expression, but feeding with other water-insoluble DFs from beet, wheat, and oats failed to induce intestinal HSP25 expression. Although the water-holding capacity of psyllium fiber was much higher than those of the other water-insoluble DFs examined, the increase in HSP25 expression induced by feeding polycarbophil, which possesses a high water-holding capacity similar to that of psyllium fiber, was much lower than that induced by psyllium fiber. Finally, induction of malondialdehyde production by hydrogen peroxide, an oxidant, in the colon of mice fed psyllium fiber was lower than that in mice fed with the control diets. Taken together, feeding psyllium fiber, especially the water-insoluble fraction, increases intestinal HSP25 expression and suppresses oxidant-induced malondialdehyde production. (C) 2017 Elsevier Inc. All rights reserved.
机译:热休克蛋白(HSP)保护肠上皮细胞功能,完整性和可行性,以多种形式的压力。我们假设饮食中的膳食纤维(DFS)可能会增加HSP表达,因为已知DFS对肠道健康表现出有益效果。本研究研究了DFS,特别是母料纤维的肠道HSP表达的调节。在蛋白质和mRNA水平的Jejunum,Hileum和小鼠的结肠中,饲喂母料纤维增多5 d增加的Hsp25表达,但不是Hsp32和Hsp70表达。 HSP25表达的增加与通过微生物发酵产生的盲肠有机酸产生不相关。百碱纤维的水不溶性级分在很大程度上导致HSP25表达的诱导,但与来自甜菜,小麦和燕麦的其他水不溶性DF喂养未能诱导肠道HSP25表达。虽然母碱纤维的水持能力远高于所检查的其他水不溶性DFS的容量,但是通过饲喂多碳灰粒粒度诱导的HSP25表达的增加,这具有与母料纤维相似的高水控能力低于母料纤维诱导的。最后,通过过氧化氢的小鼠结肠氧化剂诱导丙二醛产生的丙二醛生产低于对照饮食的小鼠中的小鼠。连合在一起,喂养母料纤维,尤其是水不溶性级分,增加肠道HSP25表达并抑制氧化剂诱导的丙二醛生产。 (c)2017年Elsevier Inc.保留所有权利。

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