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新生儿微生物群定殖驱动断奶前结肠中由初级和次级杯状细胞介导的保护作用的成熟。

Neonatal microbiota colonization drives maturation of primary and secondary goblet cell mediated protection in the pre-weaning colon.

作者信息

Johansson Åsa, Subramani Mahadevan Venkita, Yilmaz Bahtiyar, Nyström Elisabeth, Layunta Elena, Arike Liisa, Sommer Felix, Rosenstiel Philip, Vereecke Lars, Holm Louise Mannerås, Wullaert Andy, Pelaseyed Thaher, Johansson Malin E V, Birchenough George M H

出版信息

bioRxiv. 2024 Jul 5:2024.07.03.601781. doi: 10.1101/2024.07.03.601781.

Abstract

In the distal colon, mucus secreting goblet cells primarily confer protection from luminal microorganisms via generation of a sterile inner mucus layer barrier structure. Bacteria-sensing sentinel goblet cells provide a secondary defensive mechanism that orchestrates mucus secretion in response to microbes that breach the mucus barrier. Previous reports have identified mucus barrier deficiencies in adult germ-free mice, thus implicating a fundamental role for the microbiota in programming mucus barrier generation. In this study, we have investigated the natural neonatal development of the mucus barrier and sentinel goblet cell-dependent secretory responses upon postnatal colonization. Combined and analyses of pre- and post-weaning colonic mucus barrier and sentinel goblet cell maturation demonstrated a sequential microbiota-dependent development of these primary and secondary goblet cell-intrinsic protective functions, with dynamic changes in mucus processing dependent on innate immune signalling MyD88, and development of functional sentinel goblet cells dependent on the NADPH/Dual oxidase family member Duox2. Our findings therefore identify new mechanisms of microbiota-goblet cell regulatory interaction and highlight the critical importance of the pre-weaning period for the normal development of colonic barrier function.

摘要

在远端结肠中,分泌黏液的杯状细胞主要通过形成无菌的内部黏液层屏障结构来保护机体免受管腔微生物的侵害。感知细菌的前哨杯状细胞提供了一种二级防御机制,可根据突破黏液屏障的微生物来协调黏液分泌。先前的报告已确定成年无菌小鼠存在黏液屏障缺陷,这表明微生物群在黏液屏障形成的编程中具有重要作用。在本研究中,我们调查了出生后定殖时黏液屏障的自然新生儿发育以及前哨杯状细胞依赖的分泌反应。对断奶前后结肠黏液屏障和前哨杯状细胞成熟的联合分析表明,这些主要和次要杯状细胞内在保护功能在微生物群依赖下依次发育,黏液加工的动态变化依赖于先天免疫信号传导MyD88,功能性前哨杯状细胞的发育依赖于NADPH/双氧化酶家族成员Duox2。因此,我们的研究结果确定了微生物群与杯状细胞调节相互作用的新机制,并强调了断奶前期对结肠屏障功能正常发育的至关重要性。

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