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The molecular basis of bone mechanotransduction

机译:骨骼机械转导的分子基础

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The skeleton has the ability to perfectly adapt to external forces of the operating environment, by altering its morphol- ogy and metabolism in order to meet different needs. This unique adaptive capacity of the skeleton creates an interesting range of biological questions concerning the perception of mechanical or other kinds of signals, the type of receptor, and the molecular pathways involved in this adaptation. Studies of the characteristics of the cellular engineering provide a host of new information that confers to osteocytes the role of the protagonist in the perception and regulation of mechanical effects on the skeleton. The identity of mechanoreceptors is manifold and concerns ion channels, integrins, cell membrane, the cytoskeleton, and other systems. A similar multiplicity characterizes the intracellular signaling. This review describes recent data concerning the outward force reception systems and intracellular transduction pathways of information trans- fer leading to the continuous adaptation of bone tissue. Increased appreciation of the importance of the mechanical envi- ronment in regulating and determining the effectiveness of structural adjustment of the skeleton defines new horizons for the discovery of novel therapeutic approaches to diseases associated with bone loss.
机译:通过改变其形态和新陈代谢以满足不同需求,骨骼具有完全适应操作环境外力的能力。骨骼的这种独特的适应能力产生了一系列有趣的生物学问题,涉及对机械或其他类型信号的感知,受体的类型以及参与这种适应的分子途径。对细胞工程特性的研究提供了许多新信息,这些信息赋予骨细胞以主角在感知和调节对骨骼的机械作用中的作用。机械感受器的身份是多方面的,涉及离子通道,整联蛋白,细胞膜,细胞骨架和其他系统。类似的多重性表征细胞内信号传导。这篇综述描述了有关外力接收系统和细胞内信息传递通路的最新数据,这些信息传递导致骨骼组织的持续适应。对机械环境在调节和确定骨骼结构调整的有效性方面的重要性的日益重视,为发现与骨丢失相关疾病的新颖治疗方法的新视野开辟了道路。

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