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Regulation of biomechanical signals by NF-kappaB transcription factors in chondrocytes

机译:细胞内κB转录因子对生物力学信号的调节

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Purpose of review. Physical therapies and exercise are beneficial not only for physiological recovery in inflamed or injured joints, but also for promoting a homeostatic equilibrium in healthy joints. Human joints provide the pivot points and physiological hinges essential for ambulation and movement to the body, and it is this mobility that in return promotes the health of the joints. But how mobilization regulates the joint microenvironment at the molecular level has remained enigmatic for many years. Recent advances in joint biomechanics and molecular approaches have facilitated an enriched understanding of how joints operate. Consequently, the mechanisms active during joint inflammation that lead to arthritic conditions, both in vivo in animal models, and in vitro at cell and tissue levels, have become increasingly detailed and defined. These efforts have produced mounting evidences supporting the premise that biomechanical signals play a fundamental role in both the etiopathogenesis of arthritic diseases and in the physiological restoration of joints. This report aims to summarize current peer-reviewed literature and available experimental data to explain how the signals generated by mechanical forces/joint mobilization generate beneficial effects on inflamed articular cartilage, and to propose the basis for using appropriate physical therapies for the optimal benefit to the patient suffering from joint associated injuries.
机译:审查的目的。物理疗法和锻炼不仅有利于发炎或受伤关节的生理恢复,而且还用于促进健康关节的稳态平衡。人类关节提供了枢轴点和生理铰链,使牵引和移动到身体,这是这种流动,以换取促进关节的健康。但是动员如何调节分子水平的关节微环境多年来一直存在神秘。最近的联合生物力学和分子方法的进步促进了对关节如何运作的丰富了解。因此,在动物模型中导致关节炎条件和细胞和组织水平体内的关节炎条件,在细胞和组织水平体内导致关节炎的接合炎症的机制已经变得越来越详细和定义。这些努力生产了支撑的前提下,生物力学信号在关节炎疾病的病因发生和关节的生理恢复中起着基本作用。本报告旨在总结当前的同行评审文献和可用的实验数据,以解释机械力/联合动员产生的信号如何对发炎的关节软骨产生有益效果,并提出使用适当的物理疗法的基础,以便使用适当的物理疗法对最佳效益患有关节相关伤害的患者。

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