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建立具有屏障功能的分层上皮伤口愈合的新型体外模型。

Establishment of a novel in vitro model of stratified epithelial wound healing with barrier function.

作者信息

Gonzalez-Andrades Miguel, Alonso-Pastor Luis, Mauris Jérôme, Cruzat Andrea, Dohlman Claes H, Argüeso Pablo

机构信息

Schepens Eye Research Institute and Massachusetts Eye and Ear, Department of Ophthalmology, Harvard Medical School, Boston, Massachusetts, USA.

Changing Places Research Group, Media Lab, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

出版信息

Sci Rep. 2016 Jan 13;6:19395. doi: 10.1038/srep19395.

Abstract

The repair of wounds through collective movement of epithelial cells is a fundamental process in multicellular organisms. In stratified epithelia such as the cornea and skin, healing occurs in three steps that include a latent, migratory, and reconstruction phases. Several simple and inexpensive assays have been developed to study the biology of cell migration in vitro. However, these assays are mostly based on monolayer systems that fail to reproduce the differentiation processes associated to multilayered systems. Here, we describe a straightforward in vitro wound assay to evaluate the healing and restoration of barrier function in stratified human corneal epithelial cells. In this assay, circular punch injuries lead to the collective migration of the epithelium as coherent sheets. The closure of the wound was associated with the restoration of the transcellular barrier and the re-establishment of apical intercellular junctions. Altogether, this new model of wound healing provides an important research tool to study the mechanisms leading to barrier function in stratified epithelia and may facilitate the development of future therapeutic applications.

摘要

通过上皮细胞的集体运动修复伤口是多细胞生物中的一个基本过程。在诸如角膜和皮肤的复层上皮中,愈合过程分三步进行,包括潜伏期、迁移期和重建期。已经开发了几种简单且廉价的试验来研究体外细胞迁移的生物学特性。然而,这些试验大多基于单层系统,无法重现与多层系统相关的分化过程。在这里,我们描述了一种直接的体外伤口试验,以评估分层的人角膜上皮细胞中屏障功能的愈合和恢复情况。在该试验中,圆形穿孔损伤导致上皮细胞作为连贯的薄片进行集体迁移。伤口的闭合与跨细胞屏障的恢复以及顶端细胞间连接的重新建立有关。总之,这种新的伤口愈合模型为研究导致复层上皮屏障功能的机制提供了一个重要的研究工具,并可能促进未来治疗应用的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8cd/4725353/f19adab76d16/srep19395-f1.jpg

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