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体内肠道干细胞隔室中的梯度及其在模拟平台中的体外再现。

Gradients in the in vivo intestinal stem cell compartment and their in vitro recapitulation in mimetic platforms.

机构信息

Dept. of Chemical Sciences, University of Limerick, Limerick, Ireland; Bernal Institute, University of Limerick, Limerick, Ireland.

Bernal Institute, University of Limerick, Limerick, Ireland; School of Engineering, University of Limerick, Limerick, Ireland.

出版信息

Cytokine Growth Factor Rev. 2021 Aug;60:76-88. doi: 10.1016/j.cytogfr.2021.03.002. Epub 2021 Mar 23.

Abstract

Intestinal tissue, and specifically its mucosal layer, is a complex and gradient-rich environment. Gradients of soluble factor (BMP, Noggin, Notch, Hedgehog, and Wnt), insoluble extracellular matrix proteins (laminins, collagens, fibronectin, and their cognate receptors), stromal stiffness, oxygenation, and sheer stress induced by luminal fluid flow at the crypt-villus axis controls and supports healthy intestinal tissue homeostasis. However, due to current technological challenges, very few of these features have so far been included in in vitro intestinal tissue mimetic platforms. In this review, the tightly defined and dynamic microenvironment of the intestinal tissue is presented in detail. Additionally, the authors introduce the current state-of-the-art intestinal tissue mimetic platforms, as well as the design drawbacks and challenges they face while attempting to capture the complexity of the intestinal tissue's physiology. Finally, the compositions of an "idealized" mimetic system is presented to guide future developmental efforts.

摘要

肠组织,特别是其黏膜层,是一个复杂且富含梯度的环境。可溶性因子(BMP、Noggin、Notch、Hedgehog 和 Wnt)、不可溶性细胞外基质蛋白(层粘连蛋白、胶原、纤维连接蛋白及其同源受体)、基质硬度、氧合作用以及隐窝-绒毛轴上的腔液流动引起的切变应力梯度控制和支持健康的肠组织稳态。然而,由于目前的技术挑战,到目前为止,这些特征中很少有被纳入体外肠组织模拟平台。在这篇综述中,详细介绍了肠组织的严格定义和动态微环境。此外,作者还介绍了目前最先进的肠组织模拟平台,以及它们在试图捕捉肠组织生理学的复杂性时所面临的设计缺陷和挑战。最后,提出了“理想”模拟系统的组成,以指导未来的发展工作。

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