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Stem Cells Tissue Engineering Development and Cancer: Mature enteroendocrine cells contribute to basal and pathological stem cell dynamics in the small intestine

机译:干细胞组织工程发育和癌症:成熟的肠内分泌细胞有助于小肠的基础和病理干细胞动力学

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摘要

Lgr5-expressing intestinal stem cells (ISCs) maintain continuous and rapid generation of the intestinal epithelium. Here, we present evidence that dedifferentiation of committed enteroendocrine cells (EECs) contributes to maintenance of the epithelium under both basal conditions and in response to injury. Lineage-tracing studies identified a subset of EECs that reside at +4 position for more than 2 wk, most of which were BrdU-label-retaining cells. Under basal conditions, cells derived from these EECs grow from the bottom of the crypt to generate intestinal epithelium according to neutral drift kinetics that is consistent with dedifferentiation of mature EECs to ISCs. The lineage tracing of EECs demonstrated reserve stem cell properties in response to radiation-induced injury with the generation of reparative EEC-derived epithelial patches. Finally, the enterochromaffin (EC) cell was the predominant EEC type participating in these stem cell dynamics. These results provide novel insights into the +4 reserve ISC hypothesis, stem cell dynamics of the intestinal epithelium, and in the development of EC-derived small intestinal tumors.>NEW & NOTEWORTHY The current manuscript demonstrating that a subset of mature enteroendocrine cells (EECs), predominantly enterochromaffin cells, dedifferentiates to fully functional intestinal stem cells (ISCs) is novel, timely, and important. These cells dedifferentiate to ISCs not only in response to injury but also under basal homeostatic conditions. These novel findings provide a mechanism in which a specified cell can dedifferentiate and contribute to normal tissue plasticity as well as the development of EEC-derived intestinal tumors under pathologic conditions.
机译:表达Lgr5的肠干细胞(ISC)保持肠上皮的连续和快速生成。在这里,我们提供证据表明,定型肠内分泌细胞(EECs)的去分化有助于在基础条件下和对损伤的反应中维持上皮细胞。沿袭追踪研究发现,EEC的一个子集位于+4位置超过2 wk,其中大多数是BrdU标签保留细胞。在基础条件下,源自这些EEC的细胞会根据中性漂移动力学从隐窝的底部生长,从而产生肠道上皮,这与成熟EEC向ISC的去分化一致。 EECs的谱系追踪表明,随着修复性EEC衍生的上皮斑块的产生,辐射干细胞的特性可以响应辐射诱发的损伤。最后,肠嗜铬细胞(EC)是参与这些干细胞动力学的主要EEC类型。这些结果为+4储备ISC假说,肠上皮干细胞动力学以及EC衍生的小肠肿瘤的发展提供了新颖的见解。> NEW&NOTEWORTHY 当前的手稿证明了其中的一个子集以肠嗜铬细胞为主的成熟肠内分泌细胞(EEC)分化为功能齐全的肠干细胞(ISC)的过程是新颖,及时且重要的。这些细胞不仅对损伤有反应,而且在基础稳态下也能向ISCs分化。这些新颖的发现提供了一种机制,其中特定的细胞可以在病理条件下脱分化并有助于正常组织的可塑性以及EEC衍生的肠肿瘤的发展。

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