生物
器官发生
内胚层
间充质干细胞
胚胎干细胞
小肠
细胞生物学
诱导多能干细胞
中胚层
解剖
生物化学
内分泌学
基因
作者
Sayaka Deguchi,Kaori Kosugi,Naoki Takeishi,Yukio Watanabe,Shiho Morimoto,Ryosuke Negoro,Fumika Yokoi,Hiroki Futatsusako,May Nakajima‐Koyama,Mio Iwasaki,Takuya Yamamoto,Yoshiya Kawaguchi,Yu-suke Torisawa,Kazuo Takayama
标识
DOI:10.1016/j.stem.2024.06.012
摘要
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.
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