骨细胞
破骨细胞
成骨细胞
细胞生物学
化学
骨吸收
机械转化
平衡
Wnt信号通路
吸收
骨重建
信号转导
生物
内分泌学
生物化学
体外
作者
Liyuan Zheng,Di‐Sheng Zhou,Fei‐er Ju,Haibo Liu,Chenzhi Yan,Zhaoxia Dong,Shuna Chen,Lizhi Deng,Szehoi Chan,Junjie Deng,Xing‐Ding Zhang
标识
DOI:10.1002/advs.202204592
摘要
Abstract As major regulators on bone formation/resorption in response to mechanical stimuli, osteocytes have shown great promise for restoring bone injury. However, due to the unmanageable and unabiding cell functions in unloading or diseased environments, the efficacy of osteogenic induction by osteocytes has been enormously limited. Herein, a facile method of oscillating fluid flow (OFF) loading for cell culture is reported, which enables osteocytes to initiate only osteogenesis and not the osteolysis process. After OFF loading, multiple and sufficient soluble mediators are produced in osteocytes, and the collected osteocyte lysates invariably induce robust osteoblastic differentiation and proliferation while restraining osteoclast generation and activity under unloading or pathological conditions. Mechanistic studies confirm that elevated glycolysis and activation of the ERK1/2 and Wnt/ β ‐catenin pathways are the major contributors to the initiation of osteoinduction functions induced by osteocytes. Moreover, an osteocyte lysate‐based hydrogel is designed to establish a stockpile of “active osteocytes” to sustainably deliver bioactive proteins, resulting in accelerated healing through regulation of endogenous osteoblast/osteoclast homeostasis.
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