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应变诱导流体流动作为骨多单位激活耦合和骨单位排列调节器的实例

A case for strain-induced fluid flow as a regulator of BMU-coupling and osteonal alignment.

作者信息

Smit Theo H, Burger Elisabeth H, Huyghe Jacques M

机构信息

Department of Clinical Physics and Informatics, Vrije Universiteit Medical Center, Amsterdam, The Netherlands.

出版信息

J Bone Miner Res. 2002 Nov;17(11):2021-9. doi: 10.1359/jbmr.2002.17.11.2021.

Abstract

Throughout life, human bone is renewed continuously in a tightly controlled sequence of resorption and formation. This process of bone remodeling is remarkable because it involves cells from different lineages, collaborating in so-called basic multicellular units (BMUs) within small spatial and temporal boundaries. Moreover, the newly formed (secondary) osteons are aligned to the dominant load direction and have a density related to its magnitude, thus creating a globally optimized mechanical structure. Although the existence of BMUs is amply described, the cellular mechanisms driving bone remodeling-particularly the alignment process-are poorly understood. In this study we present a theory that explains bone remodelling as a self-organizing process of mechanical adaptation. Osteocytes thereby act as sensors of strain-induced fluid flow. Physiological loading produces stasis of extracellular fluid in front of the cutting cone of a tunneling osteon, which will lead to osteocytic disuse and (continued) attraction of osteoclasts. However, around the resting zone and the closing cone, enhanced extracellular fluid flow occurs, which will activate osteocytes to recruit osteoblasts. Thus, cellular activity at a bone remodeling site is well related to local fluid flow patterns, which may explain the coordinated progression of a BMU.

摘要

在人的一生中,人体骨骼以严格控制的吸收和形成顺序不断更新。这种骨重塑过程非常显著,因为它涉及来自不同谱系的细胞,在所谓的基本多细胞单位(BMU)中在小的空间和时间范围内协同作用。此外,新形成的(次级)骨单位与主要载荷方向对齐,并且其密度与其大小相关,从而形成全局优化的机械结构。尽管BMU的存在已有充分描述,但驱动骨重塑的细胞机制,尤其是对齐过程,却知之甚少。在本研究中,我们提出了一种理论,将骨重塑解释为一种机械适应的自组织过程。骨细胞因此充当应变诱导的流体流动的传感器。生理负荷会在隧道式骨单位的切割锥前方产生细胞外液停滞,这将导致骨细胞废用,并(持续)吸引破骨细胞。然而,在静止区和封闭锥周围,细胞外液流动增强,这将激活骨细胞以募集成骨细胞。因此,骨重塑部位的细胞活动与局部流体流动模式密切相关,这可能解释了BMU的协调进展。

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