Park Seonghyeon, Kwon Ohman, Lee Hana, Cho Younghak, Yeun Jemin, Yoon Sung Hyun, Sun Sang Yu, Huh Yubin, Yu Won Dong, Park Sohee, Son Naeun, Jeon Sojeong, Lee Sugi, Kim Dae-Soo, Lee Sun Young, Son Jin Gyeong, Lee Kyung Jin, Kim Yong Il, Lim Jin Hong, Yoo Jongman, Lee Tae Geol, Son Mi-Young, Im Sung Gap
Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon, Republic of Korea.
Stem Cell Convergence Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahak-ro, Yuseong-gu, Daejeon, Republic of Korea.
Nat Commun. 2024 Dec 2;15(1):10492. doi: 10.1038/s41467-024-54653-9.
The need for basement membrane extract (BME) with undefined constituents, such as Matrigel, for intestinal stem cell (ISC) culture in traditional systems poses a significant barrier that must be overcome for the development of clinical-grade, scalable, ready-to-use ISCs. Here, we propose a functional polymer-based xenogeneic-free dish for the culture of intestinal stem cells (XF-DISC), ensuring substantially prolonged maintenance of ISCs derived from 3-dimensional human intestinal organoids (ISCs). XF-DISC enables remarkable expandability, exhibiting a 24-fold increase in cell numbers within 30 days, with long-term maintenance of ISCs for more than 30 consecutive passages (>210 days). In addition, XF-DISC is fully compatible with a cell banking system. Notably, human pluripotent stem cell-derived ISCs cultured on XF-DISC are successfully transplanted into intestinal injury and inflammation mouse models, leading to engraftment and regeneration of damaged mouse intestinal epithelium. As a reliable and scalable xenogeneic-free ISC culture method, XF-DISC is highly promising for the development of regenerative ISC therapy for human intestinal diseases.
在传统体系中培养肠道干细胞(ISC)时,需要使用成分不明的基底膜提取物(BME),如基质胶,这构成了一个重大障碍,对于临床级、可扩展、即用型ISC的开发而言必须加以克服。在此,我们提出一种基于功能性聚合物的无外源物培养皿用于肠道干细胞培养(XF - DISC),可确保从三维人类肠道类器官衍生的ISC(肠道干细胞)得到显著延长的维持。XF - DISC具有显著的可扩展性,在30天内细胞数量增加24倍,并且ISC能连续传代超过30次(>210天)长期维持。此外,XF - DISC与细胞库系统完全兼容。值得注意的是,在XF - DISC上培养的人多能干细胞衍生的ISC成功移植到肠道损伤和炎症小鼠模型中,导致受损小鼠肠道上皮的植入和再生。作为一种可靠且可扩展的无外源物ISC培养方法,XF - DISC在开发用于人类肠道疾病的再生ISC疗法方面极具前景。