干细胞
类有机物
细胞生物学
地穴
簇
祖细胞
电池类型
细胞
Wnt信号通路
生物
遗传学
信号转导
内分泌学
复合材料
材料科学
作者
Lulu Huang,Jochem H. Bernink,Amir Giladi,Daniel Krueger,Gijs J. F. van Son,Maarten H. Geurts,Georg Busslinger,Lin Lin,Maurice M.J.M. Zandvliet,Peter J. Peters,Carmen López‐Iglesias,Christianne J. Buskens,Willem A. Bemelman,Harry Begthel,Hans Clevers
标识
DOI:10.1101/2024.03.17.585165
摘要
ABSTRACT In mice, intestinal tuft cells have been described as a long-lived, post-mitotic cell type of which two distinct subsets have been identified, named tuft-1 and tuft-2 1 . By combining analysis of primary human intestinal resection material and intestinal organoids, we identify four distinct human tuft cell states, two of which overlap with their murine counterparts. We show that tuft cell development depends on the presence of Wnt ligands, and that tuft cell numbers rapidly increase upon interleukin (IL)-4 and IL-13 exposure, as reported previously in mouse 2–4 . This occurs through proliferation of pre-existing tuft cells, rather than through increased de novo generation from stem cells. Indeed, proliferative tuft cells occur in vivo both in fetal and in adult human intestine. Single mature proliferating tuft cells can form organoids that contain all intestinal epithelial cell types. Unlike stem- and progenitor cells, human tuft cells survive irradiation damage and retain the ability to generate all other epithelial cell types. Accordingly, organoids engineered to lack tuft cells fail to recover from radiation-induced damage. Thus, tuft cells represent a damage-induced reserve intestinal stem cell pool in humans.
科研通智能强力驱动
Strongly Powered by AbleSci AI