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结肠运动的计算见解:黏液在稳态和炎症中的机械作用。

Computational insights into colonic motility: Mechanical role of mucus in homeostasis and inflammation.

作者信息

Erbay I H, Alexiadis A, Rochev Y

机构信息

School of Physics, University of Galway, Galway, Ireland; CÚRAM, SFI Research Centre for Medical Devices, University of Galway, Galway, Ireland.

School of Chemical Engineering, University of Birmingham, Birmingham, United Kingdom.

出版信息

Comput Biol Med. 2024 Jun;176:108540. doi: 10.1016/j.compbiomed.2024.108540. Epub 2024 Apr 29.

Abstract

Colonic motility plays a vital role in maintaining proper digestive function. The rhythmic contractions and relaxations facilitate various types of motor functions that generate both propulsive and non-propulsive motility modes which in turn generate shear stresses on the epithelial surface. However, the interplay between colonic mucus, shear stress, and epithelium remains poorly characterized. Here, we present a colonic computational model that describes the potential roles of mucus and shear stress in both homeostasis and ulcerative colitis (UC). Our model integrates several key features, including the properties of the mucus bilayer and faeces, intraluminal pressure, and crypt characteristics to predict the time-space mosaic of shear stress. We show that the mucus thickness which could vary based on the severity of UC, may significantly reduce the amount of shear stress applied to the colonic crypts and effect faecal velocity. Our model also reveals an important spatial shear stress variance in homeostatic colonic crypts that suggests shear stress may have a modulatory role in epithelial cell migration, differentiation, apoptosis, and immune surveillance. Together, our study uncovers the rather neglected roles of mucus and shear stress in intestinal cellular processes during homeostasis and inflammation.

摘要

结肠蠕动在维持正常消化功能中起着至关重要的作用。有节奏的收缩和舒张促进了各种类型的运动功能,这些功能产生了推进性和非推进性的蠕动模式,进而在上皮表面产生剪切应力。然而,结肠黏液、剪切应力和上皮之间的相互作用仍未得到充分描述。在此,我们提出了一个结肠计算模型,该模型描述了黏液和剪切应力在稳态和溃疡性结肠炎(UC)中的潜在作用。我们的模型整合了几个关键特征,包括黏液双层和粪便的特性、腔内压力以及隐窝特征,以预测剪切应力的时空分布。我们发现,黏液厚度可能会根据UC的严重程度而变化,它可能会显著降低施加在结肠隐窝上的剪切应力,并影响粪便速度。我们的模型还揭示了稳态结肠隐窝中重要的空间剪切应力差异,这表明剪切应力可能在上皮细胞迁移、分化、凋亡和免疫监视中具有调节作用。总之,我们的研究揭示了黏液和剪切应力在稳态和炎症期间肠道细胞过程中被相当忽视的作用。

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