细胞生物学
WNT3A型
干细胞
骨愈合
Wnt信号通路
细胞分裂
组织工程
体内
化学
材料科学
生物医学工程
细胞
生物
解剖
医学
生物化学
信号转导
生物技术
作者
Yoshihisa Okuchi,Joshua Reeves,Soon Seng Ng,Daniel Doro,Sergi Junyent,Karen Liu,Alicia J. El Haj,Shukry J. Habib
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2020-09-21
卷期号:20 (1): 108-118
被引量:81
标识
DOI:10.1038/s41563-020-0786-5
摘要
The maintenance of human skeletal stem cells (hSSCs) and their progeny in bone defects is a major challenge. Here, we report on a transplantable bandage containing a three-dimensional Wnt-induced osteogenic tissue model (WIOTM). This bandage facilitates the long-term viability of hSSCs (8 weeks) and their progeny, and enables bone repair in an in vivo mouse model of critical-sized calvarial defects. The newly forming bone is structurally comparable to mature cortical bone and consists of human and murine cells. Furthermore, we show that the mechanism of WIOTM formation is governed by Wnt-mediated asymmetric cell division of hSSCs. Covalently immobilizing Wnts onto synthetic materials can polarize single dividing hSSCs, orient the spindle and simultaneously generate a Wnt-proximal hSSC and a differentiation-prone Wnt-distal cell. Our results provide insight into the regulation of human osteogenesis and represent a promising approach to deliver human osteogenic constructs that can survive in vivo and contribute to bone repair. Wnt3a protein has been immobilized on a biocompatible bandage and is now shown to induce oriented asymmetric cell division of human skeletal stem cells and can also promote bone tissue repair in vivo.
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