降钙素基因相关肽
医学
降钙素
血管生成
奶油
背根神经节
股骨骨折
刺激
细胞生物学
内科学
骨愈合
背
生物医学工程
解剖
化学
神经肽
外科
受体
生物
基因
股骨
生物化学
转录因子
作者
Jie Mi,Jian Xu,Zhi Yao,Hao Yao,Ye Li,Xuan He,Bingyang Dai,Li Zou,Wenxue Tong,Xiao‐Tian Zhang,Peijie Hu,Ye Chun Ruan,Ning Tang,Xia Guo,Jie Zhao,Jufang He,Ling Qin
标识
DOI:10.1002/advs.202103005
摘要
The neuronal engagement of the peripheral nerve system plays a crucial role in regulating fracture healing, but how to modulate the neuronal activity to enhance fracture healing remains unexploited. Here it is shown that electrical stimulation (ES) directly promotes the biosynthesis and release of calcitonin gene-related peptide (CGRP) by activating Ca2+ /CaMKII/CREB signaling pathway and action potential, respectively. To accelerate rat femoral osteoporotic fracture healing which presents with decline of CGRP, soft electrodes are engineered and they are implanted at L3 and L4 dorsal root ganglions (DRGs). ES delivered at DRGs for the first two weeks after fracture increases CGRP expression in both DRGs and fracture callus. It is also identified that CGRP is indispensable for type-H vessel formation, a biological event coupling angiogenesis and osteogenesis, contributing to ES-enhanced osteoporotic fracture healing. This proof-of-concept study shows for the first time that ES at lumbar DRGs can effectively promote femoral fracture healing, offering an innovative strategy using bioelectronic device to enhance bone regeneration.
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