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Osteoarthritis year in review 2015: mechanics

机译:骨关节炎年度回顾:2015年

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Motivated by the conceptual framework of multi-scale biomechanics, this narrative review highlights recent major advances with a focus on gait and joint kinematics, then tissue-level mechanics, cell mechanics and mechanotransduction, matrix mechanics, and finally the nanoscale mechanics of matrix macromolecules. A literature review was conducted from January 2014 to April 2015 using PubMed to identify major developments in mechanics related to osteoarthritis (OA). Studies of knee adduction, flexion, rotation, and contact mechanics have extended our understanding of medial compartment loading. In turn, advances in measurement methodologies have shown how injuries to both the meniscus and ligaments, together, can alter joint kinematics. At the tissue scale, novel findings have emerged regarding the mechanics of the meniscus as well as cartilage superficial zone. Moving to the cell level, poroelastic and poro-viscoelastic mechanisms underlying chondrocyte deformation have been reported, along with the response to osmotic stress. Further developments have emerged on the role of calcium signaling in chondrocyte mechanobiology, including exciting findings on the function of mechanically activated cation channels newly found to be expressed in chondrocytes. Finally, AFM-based nano-rheology systems have enabled studies of thin murine tissues and brush layers of matrix molecules over a wide range of loading rates including high rates corresponding to impact injury. With OA acknowledged to be a disease of the joint as an organ, understanding mechanical behavior at each length scale helps to elucidate the connections between cell biology, matrix biochemistry and tissue structure/ function that may play a role in the pathomechanics of OA. (C) 2015 Osteoarthritis Research Society International. Published by Elsevier Ltd. All rights reserved.
机译:受多尺度生物力学概念框架的推动,本篇叙事综述着重介绍了近期的主要进展,重点是步态和关节运动学,然后是组织级力学,细胞力学和机械转导,基质力学,最后是基质大分子的纳米级力学。 2014年1月至2015年4月使用PubMed进行了文献综述,以鉴定与骨关节炎(OA)相关的力学的主要发展。对膝盖内收,弯曲,旋转和接触力学的研究扩展了我们对内侧隔室负荷的理解。反过来,测量方法的进步表明,半月板和韧带的损伤如何共同改变关节运动学。在组织规模上,关于半月板以及软骨浅表区域的力学机制出现了新发现。在细胞水平上,已经报道了软骨细胞变形背后的多孔弹性和多孔粘弹性机制,以及对渗透压的反应。钙信号传导在软骨细胞力学生物学中的作用已经出现了进一步的发展,包括对新发现在软骨细胞中表达的机械活化阳离子通道功能的令人兴奋的发现。最后,基于原子力显微镜的纳米流变学系统能够在较宽的负载率范围内(包括与撞击伤害相对应的高速率)研究薄的小鼠组织和基质分子的刷层。 OA被公认为是关节器官疾病,因此了解每种长度尺度的机械行为有助于阐明可能在OA发病机理中起作用的细胞生物学,基质生物化学与组织结构/功能之间的联系。 (C)2015年国际骨关节炎研究学会。由Elsevier Ltd.出版。保留所有权利。

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