Tang Simon Y, Alliston Tamara
Department of Orthopaedic Surgery, School of Medicine, Washington University in St Louis , St Louis, MO, USA.
Department of Orthopaedic Surgery, School of Medicine, University of California, San Francisco , San Francisco, CA, USA.
Bonekey Rep. 2013 Jan 9;2:255. doi: 10.1038/bonekey.2012.255.
Perhaps more so than any other tissue, bone has pivotal mechanical and biological functions. Underlying the ability of bone to execute these functions, whether providing structural support or preserving mineral homeostasis, is the dynamic remodeling of bone matrix. Cells within bone integrate multiple stimuli to balance the deposition and resorption of bone matrix. Transforming growth factor-β (TGFβ) uniquely coordinates bone cell activity to maintain bone homeostasis. TGFβ regulates the differentiation and function of both osteoblasts and osteoclasts, from lineage recruitment to terminal differentiation, to balance bone formation and resorption. TGFβ calibrates the synthesis and material quality of bone matrix and bone's responsiveness to applied mechanical loads. Therefore, by coupling the activity of bone forming and resorbing cells, and by sensing, responding to and defining physical cues, TGFβ integrates physical and biochemical stimuli to maintain bone homeostasis. Disruption of TGFβ signaling has significant consequences on bone mass and quality. Alternatively, TGFβ is a powerful lever that has the potential to yield therapeutic benefit in cases where bone homeostasis needs to be recalibrated.
或许与其他任何组织相比,骨骼都具有关键的机械和生物学功能。骨骼能够执行这些功能,无论是提供结构支撑还是维持矿物质稳态,其基础都是骨基质的动态重塑。骨内的细胞整合多种刺激因素,以平衡骨基质的沉积和吸收。转化生长因子-β(TGFβ)独特地协调骨细胞活性以维持骨稳态。TGFβ调节成骨细胞和破骨细胞从谱系募集到终末分化的分化和功能,以平衡骨形成和吸收。TGFβ校准骨基质的合成和材料质量以及骨对施加的机械负荷的反应性。因此,通过耦合骨形成和吸收细胞的活性,并通过感知、响应和定义物理线索,TGFβ整合物理和生化刺激以维持骨稳态。TGFβ信号通路的破坏对骨量和质量有重大影响。另外,TGFβ是一个强大的杠杆,在需要重新校准骨稳态的情况下有可能产生治疗益处。