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肠上皮细胞创伤愈合分析在一个上皮-间充质共培养系统中。

Intestinal epithelial wound healing assay in an epithelial-mesenchymal co-culture system.

机构信息

CIHR Team on the Digestive Epithelium, Département d'anatomie et de biologie cellulaire, Faculté de médecine et des sciences de la santé, Université de Sherbrooke, Sherbrooke, QC, Canada.

出版信息

Wound Repair Regen. 2010 Jan-Feb;18(1):114-22. doi: 10.1111/j.1524-475X.2009.00554.x.

Abstract

Rapid and efficient healing of epithelial damage is critical to the functional integrity of the small intestine. Epithelial repair is a complex process that has largely been studied in cultured epithelium but to a much lesser extent in mucosa. We describe a novel method for the study of wound healing using a co-culture system that combined an intestinal epithelial Caco-2/15 cell monolayer cultured on top of human intestinal myofibroblasts, which together formed a basement membrane-like structure that contained many of the major components found at the epithelial-mesenchymal interface in the human intestine. To investigate the mechanism of restitution, small lesions were generated in epithelial cell monolayers on plastic or in co-cultures without disturbing the underlying mesenchymal layer. Monitoring of wound healing showed that repair was more efficient in Caco-2/15-myofibroblast co-cultures than in Caco-2/15 monolayers and involved the deposition of basement membrane components. Functional experiments showed that the addition of type I collagen or human fibronectin to the culture medium significantly accelerated wound closure on epithelial cell co-cultures. This system may provide a new tool to investigate the mechanisms that regulate wound healing in the intestinal epithelium.

摘要

快速有效地修复上皮损伤对于小肠的功能完整性至关重要。上皮修复是一个复杂的过程,已在培养的上皮细胞中进行了广泛研究,但在黏膜中研究得较少。我们描述了一种使用共培养系统研究伤口愈合的新方法,该系统将培养在人肠成纤维细胞上的肠上皮 Caco-2/15 细胞单层结合在一起,形成基底膜样结构,其中包含许多在人肠上皮-间充质界面发现的主要成分。为了研究修复的机制,在塑料或共培养物中的上皮细胞单层上产生小的损伤,而不会干扰下面的间充质层。对伤口愈合的监测表明,Caco-2/15-成纤维细胞共培养物中的修复比 Caco-2/15 单层中的修复更有效,并且涉及基底膜成分的沉积。功能实验表明,在培养物中添加 I 型胶原蛋白或人纤维连接蛋白可显著加速上皮细胞共培养物的伤口闭合。该系统可能为研究调节肠道上皮伤口愈合的机制提供新的工具。

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