电刺激干预骨代谢相关信号通路研究进展

R681%R285.6; 骨质疏松症(osteoporosis,OP)作为一种患病率逐年递增的临床上常见的全身代谢性疾病,其发病机制与多种信号通路及分子相关.大量动物实验及分子研究分析发现,电刺激引起的电流变化能通过多种直接或间接途径激活成骨细胞(osteoblast,OB)、破骨细胞(osteoclasts,OC),从而促进骨细胞生长.因此合理介导电刺激激活或抑制相关信号通路及分子水平或许是未来深入、系统探究骨质疏松症发病机制及治疗的有效手段.本文旨在总结电刺激与OP发病相关信号通路及分子之间的影响并加以阐述、总结,为OP治疗提供一些新的思路....

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Published in中国骨质疏松杂志 Vol. 29; no. 2; pp. 242 - 247
Main Authors 黄委委, 李鼎鹏, 李宁, 韩宪富, 林德民, 李建国, 丁聚贤, 谢兴文
Format Journal Article
LanguageChinese
Published 甘肃中医药大学,甘肃兰州730000%甘肃省第二人民医院,甘肃兰州730000%甘肃中医药大学附属医院,甘肃兰州730000 2023
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Abstract R681%R285.6; 骨质疏松症(osteoporosis,OP)作为一种患病率逐年递增的临床上常见的全身代谢性疾病,其发病机制与多种信号通路及分子相关.大量动物实验及分子研究分析发现,电刺激引起的电流变化能通过多种直接或间接途径激活成骨细胞(osteoblast,OB)、破骨细胞(osteoclasts,OC),从而促进骨细胞生长.因此合理介导电刺激激活或抑制相关信号通路及分子水平或许是未来深入、系统探究骨质疏松症发病机制及治疗的有效手段.本文旨在总结电刺激与OP发病相关信号通路及分子之间的影响并加以阐述、总结,为OP治疗提供一些新的思路.
AbstractList R681%R285.6; 骨质疏松症(osteoporosis,OP)作为一种患病率逐年递增的临床上常见的全身代谢性疾病,其发病机制与多种信号通路及分子相关.大量动物实验及分子研究分析发现,电刺激引起的电流变化能通过多种直接或间接途径激活成骨细胞(osteoblast,OB)、破骨细胞(osteoclasts,OC),从而促进骨细胞生长.因此合理介导电刺激激活或抑制相关信号通路及分子水平或许是未来深入、系统探究骨质疏松症发病机制及治疗的有效手段.本文旨在总结电刺激与OP发病相关信号通路及分子之间的影响并加以阐述、总结,为OP治疗提供一些新的思路.
Author 林德民
李鼎鹏
黄委委
谢兴文
韩宪富
李建国
李宁
丁聚贤
AuthorAffiliation 甘肃中医药大学,甘肃兰州730000%甘肃省第二人民医院,甘肃兰州730000%甘肃中医药大学附属医院,甘肃兰州730000
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Author_FL HAN Xianfu
LI Ning
HUANG Weiwei
LIN Demin
LI Dingpeng
LI Jianguo
XIE Xingwen
DING Juxian
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电刺激
生长因子
骨质疏松症
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Title 电刺激干预骨代谢相关信号通路研究进展
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