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通过再现间质流构建多层小肠样组织。

Construction of multilayered small intestine-like tissue by reproducing interstitial flow.

机构信息

Center for iPS Cell Research and Application (CiRA), Kyoto University, Kyoto 606-8507, Japan.

Center for iPS Cell Research and Application (CiRA), Kyoto University, Kyoto 606-8507, Japan.

出版信息

Cell Stem Cell. 2024 Sep 5;31(9):1315-1326.e8. doi: 10.1016/j.stem.2024.06.012. Epub 2024 Jul 11.

Abstract

Recent advances have made modeling human small intestines in vitro possible, but it remains a challenge to recapitulate fully their structural and functional characteristics. We suspected interstitial flow within the intestine, powered by circulating blood plasma during embryonic organogenesis, to be a vital factor. We aimed to construct an in vivo-like multilayered small intestinal tissue by incorporating interstitial flow into the system and, in turn, developed the micro-small intestine system by differentiating definitive endoderm and mesoderm cells from human pluripotent stem cells simultaneously on a microfluidic device capable of replicating interstitial flow. This approach enhanced cell maturation and led to the development of a three-dimensional small intestine-like tissue with villi-like epithelium and an aligned mesenchymal layer. Our micro-small intestine system not only overcomes the limitations of conventional intestine models but also offers a unique opportunity to gain insights into the detailed mechanisms underlying intestinal tissue development.

摘要

最近的进展使得在体外模拟人类小肠成为可能,但要完全再现其结构和功能特征仍然是一个挑战。我们怀疑在胚胎器官发生过程中,由循环血浆驱动的肠道间质流是一个重要因素。我们旨在通过将间质流纳入系统来构建类似于体内的多层小肠组织,并通过在能够复制间质流的微流控设备上同时从人类多能干细胞分化确定内胚层和中胚层细胞,从而开发出微小肠系统。这种方法促进了细胞成熟,并导致具有绒毛状上皮和排列整齐的间充质层的三维类似小肠组织的发育。我们的微小肠系统不仅克服了传统肠道模型的局限性,还为深入了解肠道组织发育的详细机制提供了独特的机会。

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