Laboratory for Organ Regeneration, RIKEN Center for Biosystems Dynamics Research, Kobe, Japan.
Organ Technologies Inc., Tokyo, Japan.
Nat Protoc. 2019 May;14(5):1323-1338. doi: 10.1038/s41596-019-0124-z. Epub 2019 Apr 8.
Organ systems play essential roles in the physiological functions required for homeostasis. A 3D integumentary organ system (3D-IOS) comprises the skin and skin appendages such as hair follicles and sebaceous glands. This protocol describes how to induce the differentiation of murine induced pluripotent stem (iPS) cells into a 3D-IOS. First, iPS cells are grown for 7 d under conditions that encourage the formation of embryoid bodies (EBs). The iPS cell-derived EBs are stimulated by Wnt10b one day before transplantation of multiple EBs in vivo (a method we describe as the clustering-dependent embryoid body (CDB) transplantation method). After a further 30 d, the transplanted EBs will have differentiated into a 3D-IOS containing mature hair follicles and sebaceous glands. These can be removed and transplanted into wounds in the skin of other mice. After transplantation of a 3D-IOS, the organ system shows full physiological function in vivo starting 14 d following transplant. Thus, this protocol enables a whole functional organ system to be generated from pluripotent stem cells.
器官系统在维持体内平衡所需的生理功能中发挥着重要作用。一个三维的皮肤器官系统(3D-IOS)包括皮肤和皮肤附属物,如毛囊和皮脂腺。本方案描述了如何诱导鼠诱导多能干细胞(iPS)分化为 3D-IOS。首先,iPS 细胞在有利于形成胚状体(EBs)的条件下培养 7 天。在体内移植多个 EBs 前一天,用 Wnt10b 刺激 iPS 细胞衍生的 EBs(我们称之为聚类依赖胚状体(CDB)移植方法)。再过 30 天,移植的 EBs 将分化为含有成熟毛囊和皮脂腺的 3D-IOS。这些可以被取出并移植到其他小鼠皮肤的伤口中。移植 3D-IOS 后,器官系统在移植后 14 天开始在体内显示出完整的生理功能。因此,该方案能够从多能干细胞中产生完整的功能性器官系统。