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Mast cells regulate homeostatic intestinal epithelial migration and barrier function by a chymase/Mcpt4-dependent mechanism

机译:肥大细胞通过糜蛋白酶/ Mcpt4依赖性机制调节稳态肠上皮迁移和屏障功能

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摘要

Altered intestinal barrier function is postulated to be a central predisposing factor to intestinal diseases, including inflammatory bowel diseases and food allergies. However, the mechanisms involved in maintaining homeostatic intestinal barrier integrity remain undefined. In this study, we demonstrate that mice deficient in mast cells (KitW-sh/W-sh [Wsh]) or mast cell chymase (Mcpt4−/−) have significantly decreased basal small intestinal permeability compared with wild-type (WT) mice. Altered intestinal barrier function was linked to decreased intestinal epithelial cell migration along the villus/crypt axis, altered intestinal morphology, and dysregulated claudin-3 crypt expression. Remarkably, engraftment of Wsh mice with WT but not Mcpt4−/− mast cells restored intestinal epithelial cell migration, morphology, and intestinal epithelial barrier function. Collectively, these findings identify a mechanism by which mast cells regulate homeostatic intestinal epithelial migration and barrier function.
机译:肠道屏障功能的改变被认为是肠道疾病(包括炎症性肠病和食物过敏)的主要诱因。然而,维持稳态肠屏障完整性所涉及的机制仍然不确定。在这项研究中,我们证明缺乏肥大细胞(Kit W-sh / W-sh [Wsh])或肥大细胞糜酶(Mcpt4 -/-)的小鼠具有与野生型(WT)小鼠相比,基底小肠的通透性显着降低。肠道屏障功能的改变与沿绒毛/隐窝轴的肠道上皮细胞迁移减少,肠道形态改变和claudin-3隐窝表达失调有关。值得注意的是,Wsh小鼠植入了WT,但没有植入Mcpt4 -/-肥大细胞,从而恢复了肠上皮细胞的迁移,形态和肠上皮屏障功能。总的来说,这些发现确定了肥大细胞调节稳态肠道上皮迁移和屏障功能的机制。

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