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NHE8 在黏膜保护中具有不可争议的作用。

An indisputable role of NHE8 in mucosal protection.

机构信息

Steele Children's Research Center, University of Arizona, Tucson, Arizona.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2020 Oct 1;319(4):G421-G431. doi: 10.1152/ajpgi.00246.2020. Epub 2020 Aug 5.

Abstract

The loss of the intestinal Na/H exchanger isoform 8 (NHE8) results in an ulcerative colitis-like condition with reduction of mucin production and dysbiosis, indicating that NHE8 plays an important role in intestinal mucosal protection. The aim of this study was to investigate the potential rebalance of the altered microbiota community of NHE8-deficient mice via fecal microbiota transplantation (FMT) and feeding probiotic VSL#3. We also aimed to stimulate mucin production by sodium butyrate administration via enema. Data from 16S rRNA sequencing showed that loss of NHE8 contributes to colonic microbial dysbiosis with reduction of butyrate-producing bacteria. FMT increased bacterial adhesion in the colon in NHE8 knockout (NHE8KO) mice. Periodic-acid Schiff reagent (PAS) stain and quantitative PCR showed no changes in mucin production during FMT. In mice treated with the probiotic VSL#3, a reduction of and segmented filamentous bacteria (SFB) in NHE8KO mouse colon was detected and an increase in goblet cell theca was observed. In NHE8KO mice receiving sodium butyrate (NaB), 1 mM NaB stimulated Muc2 expression without changing goblet cell theca, but 10 mM NaB induced a significant reduction of goblet cell theca without altering Muc2 expression. Furthermore, 5 mM and 10 mM NaB-treated HT29-MTX cells displayed increased apoptosis, while 0.5 mM NaB stimulated Muc2 gene expression. These data showed that loss of NHE8 leads to dysbiosis with reduction of butyrate-producing bacteria and FMT and VSL#3 failed to rebalance the microbiota in NHE8KO mice. Therefore, FMT, VSL#3, and NaB are not able to restore mucin production in the absence of NHE8 in the intestine. Loss of Na/H exchanger isoform 8 (NHE8), a Slc9 family of exchanger that contributes to sodium uptake, cell volume regulation, and intracellular pH homeostasis, resulted in dysbiosis with reduction of butyrate-producing bacteria and decrease of Muc2 production in the intestine in mice. Introducing fecal microbiota transplantation (FMT) and VSL#3 in NHE8 knockout (NHE8KO) mice failed to rebalance the microbiota in these mice. Furthermore, administration of FMT, VSL#3, and sodium butyrate was unable to restore mucin production in the absence of NHE8 in the intestine.

摘要

NHE8 缺失导致类似溃疡性结肠炎的情况,粘液生成减少和菌群失调,表明 NHE8 在肠道黏膜保护中发挥重要作用。本研究旨在通过粪便微生物移植(FMT)和喂养益生菌 VSL#3 来研究 NHE8 缺陷小鼠改变的微生物群落的潜在再平衡。我们还旨在通过灌肠给予丁酸钠来刺激粘液生成。16S rRNA 测序数据显示,NHE8 的缺失导致结肠微生物失调,丁酸产生菌减少。FMT 增加了 NHE8 敲除(NHE8KO)小鼠结肠中的细菌黏附。过碘酸希夫试剂(PAS)染色和定量 PCR 显示 FMT 过程中粘液生成没有变化。在接受益生菌 VSL#3 治疗的小鼠中,NHE8KO 小鼠结肠中的梭状芽胞杆菌()和分段丝状菌(SFB)减少,杯状细胞被观察到增加。在接受丁酸钠(NaB)治疗的 NHE8KO 小鼠中,1mM NaB 刺激 Muc2 表达而不改变杯状细胞被膜,但 10mM NaB 诱导杯状细胞被膜显著减少而不改变 Muc2 表达。此外,5mM 和 10mM NaB 处理的 HT29-MTX 细胞显示出增加的细胞凋亡,而 0.5mM NaB 刺激 Muc2 基因表达。这些数据表明,NHE8 的缺失导致丁酸产生菌减少的菌群失调,FMT 和 VSL#3 未能使 NHE8KO 小鼠的微生物群再平衡。因此,在肠道中缺乏 NHE8 的情况下,FMT、VSL#3 和 NaB 均不能恢复粘液生成。Slc9 家族交换体的 Na/H 交换体同工型 8(NHE8)的缺失导致肠道中细菌失调,丁酸产生菌减少,Muc2 产生减少。在 NHE8 敲除(NHE8KO)小鼠中引入粪便微生物移植(FMT)和 VSL#3 未能使这些小鼠的微生物群再平衡。此外,FMT、VSL#3 和丁酸钠的给药均不能在肠道中缺乏 NHE8 的情况下恢复粘液生成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e98e/7654648/8dc8a45a8759/zh3009207833r001.jpg

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