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骨骼在长度和宽度上的生长:骨骼稳定性的阴阳之道。

Bone growth in length and width: the Yin and Yang of bone stability.

作者信息

Rauch F

机构信息

Genetics Unit, Shriners Hospital for Children, Montreal, Canada.

出版信息

J Musculoskelet Neuronal Interact. 2005 Jul-Sep;5(3):194-201.

Abstract

Bone growth in length is primarily achieved through the action of chondrocytes in the proliferative and hypertrophic zones of the growth plate. Longitudinal growth is controlled by systemic, local paracrine and local mechanical factors. With regard to the latter, a feedback mechanism must exist which ensures that bone growth proceeds in the direction of the predominant mechanical forces. How this works is unknown at present. Bone growth in length is detrimental to bone stability, but this effect is counteracted by concomitant bone growth in width. This occurs through periosteal apposition, which is the responsibility of periosteal osteoblasts. The action of these cells is mainly controlled by local factors, with modulation by systemic agents. According to the mechanostat theory, periosteal apposition is regulated by mechanical requirements. An alternative model, called sizostat hypothesis, maintains that a master gene or set of genes regulate bone growth in width to reach a pre-programmed size, independent of mechanical requirements. The virtues of these two hypotheses have been the subject of much discussion, but experimental data are scarce. Future research will have to address the question how periosteal bone cells manage to integrate mechanical, hormonal and other input to shape bones that are as strong as they need to be.

摘要

骨的长度生长主要通过生长板增殖区和肥大区软骨细胞的作用来实现。纵向生长受全身、局部旁分泌和局部机械因素控制。关于后者,必然存在一种反馈机制,以确保骨生长朝着主要机械力的方向进行。目前尚不清楚其具体运作方式。骨的长度生长对骨稳定性不利,但这种影响会被同时发生的骨宽度生长所抵消。这通过骨膜附着来实现,这是骨膜成骨细胞的职责。这些细胞的作用主要受局部因素控制,并受全身因子调节。根据机械稳态理论,骨膜附着受机械需求调节。另一种模型,称为大小稳态假说,认为一个主基因或一组基因调节骨的宽度生长,以达到预先设定的大小,而与机械需求无关。这两种假说的优点一直是许多讨论的主题,但实验数据很少。未来的研究将不得不解决骨膜骨细胞如何设法整合机械、激素和其他输入,以塑造出所需强度的骨骼这一问题。

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