分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Generation of neural organoids for spinal-cord regeneration via the direct reprogramming of human astrocytes

Xu Jinhong, Fang Shi, Deng Suixin, Li Huijuan, Lin Xiaoning, Huang Yongheng, Chung Sangmi, Shu Yousheng, Shao Zhicheng

Journal:Nature Biomedical Engineering

IF:29.23

DOI:10.1038/s41551-022-00963-6

PMID:

Published:2022-11-24

research field:神经科学分子生物学细胞生物学干细胞生物学消化生物学再生医学肾脏病学发育生物学

Abstract

Organoids with region-specific architecture could facilitate the repair of injuries of the central nervous system. Here we show that human astrocytes can be directly reprogrammed into early neuroectodermal cells via the overexpression of OCT4 , the suppression of p53 and the provision of the small molecules CHIR99021, SB431542, RepSox and Y27632. We also report that the activation of signalling mediated by fibroblast growth factor, sonic hedgehog and bone morphogenetic protein 4 in the reprogrammed cells induces them to form spinal-cord organoids with functional neurons specific to the dorsal and ventral domains. In mice with complete spinal-cord injury, organoids transplanted into the lesion differentiated into spinal-cord neurons, which migrated and formed synapses with host neurons. The direct reprogramming of human astrocytes into neurons may pave the way for in vivo neural organogenesis from endogenous astrocytes for the repair of injuries to the central nervous system. Neuroectodermal cells produced via the direct reprogramming of human astrocytes can be induced to form spinal-cord organoids with functional neurons specific to the dorsal and ventral domains.

本文使用的Yeasen产品

购物车
客服
转染试用