Wnt信号通路
骨质疏松症
骨吸收
骨重建
合成代谢
骨密度保护剂
成骨细胞
骨形成
破骨细胞
合成代谢剂
骨重建期
化学
骨愈合
细胞生物学
医学
信号转导
骨矿物
内科学
生物
受体
解剖
生物化学
体外
作者
Shuang Tan,Bin-Bin Zhang,Xiaomei Zhu,Ping Ao,Huajie Guo,YI Wei-hong,Guangqian Zhou
摘要
Age-related bone loss and osteoporosis are associated with bone remodeling changes that are featured with decreased trabecular and periosteal bone formation relative to bone resorption. Current anticatabolic therapies focusing on the inhibition of bone resorption may not be sufficient in the prevention or reversal of age-related bone deterioration and there is a big need in promoting osteoblastogenesis and bone formation. Enhanced understanding of the network formed by key signaling pathways and molecules regulating bone forming cells in health and diseases has therefore become highly significant. The successful development of agonist/antagonist of the PTH and Wnt signaling pathways are profits of the understanding of these key pathways. As the core component of an approved antiosteoporosis agent, strontium takes its effect on osteoblasts at multilevel through multiple pathways, representing a good example in revealing and exploring anabolic mechanisms. The recognition of strontium effects on bone has led to its expected application in a variety of biomaterial scaffolds used in tissue engineering strategies aiming at bone repairing and regeneration. While summarizing the recent progress in these respects, this review also proposes the new approaches such as systems biology in order to reveal new insights in the pathology of osteoporosis as well as possible discovery of new therapies.
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