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Hypothesis: Coupling between Resorption and Formation in Cancellous bone Remodeling is a Mechanically Controlled Event

机译:假设:松质骨重塑中吸收与形成之间的耦合是机械控制的事件

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摘要

Coupling is the process that links bone resorption to formation in a temporally and spatially coordinated manner within the remodeling cycle. In order to maintain skeletal integrity, it is of crucial importance that the amount of bone resorbed matches the amount of newly formed bone in each remodeling site. Although a number of different explanatory models have been developed, the mechanisms that couple bone resorption and formation in bone remodeling are still a matter of controversy. Here, I propose a model in which coupling is achieved by biomechanical strain sensed by osteocytes within the newly built bone package. In this model, the resorption cavity created by osteoclasts results in mechanical weakening of the structural element, and, thus, in increased strain under constant loading conditions. Subsequent bone formation is initiated by strain-sensitive osteocytes in the underlying bone matrix. After osteoblastic bone formation has started, the newly built osteocyte–osteoblast network detects strain. Once the mechanical strain within the newly built bone structural unit falls below a certain threshold, bone formation stops. In this biomechanical strain-driven model, osteoblasts do not need to “know” how much bone was previously resorbed in a given site. In addition, this model does not require the transfer of any information from bone-resorbing osteoclasts to bone-forming osteoblasts, because biomechanical strain “guides” osteoblasts through their job of re-filling the resorption cavity.
机译:耦合是在重建周期内以时间和空间协调的方式将骨骼吸收与形成联系起来的过程。为了维持骨骼的完整性,至关重要的一点是,在每个重塑部位中吸收的骨量必须与新形成的骨量相匹配。尽管已经开发了许多不同的解释模型,但是在骨重塑中将骨吸收与骨形成耦合的机制仍然存在争议。在这里,我提出了一个模型,其中通过新建骨包装内的骨细胞检测到的生物力学应变来实现耦合。在此模型中,破骨细胞产生的吸收腔导致结构元件的机械弱化,并因此导致在恒定载荷条件下的应变增加。随后的骨形成是由下面的骨基质中的应变敏感骨细胞引发的。成骨细胞的骨形成开始后,新建的成骨细胞-成骨细胞网络会检测到应变。一旦新建的骨骼结构单元内的机械应变降到某个阈值以下,骨骼的形成就会停止。在这种生物力学应变驱动模型中,成骨细胞不需要“知道”先前在给定部位吸收了多少骨。另外,该模型不需要将任何信息从骨吸收破骨细胞转移到成骨成骨细胞,因为生物力学应变“引导”成骨细胞完成其重新填充吸收腔的工作。

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