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首页> 外文期刊>American Journal of Physiology >Biomechanical properties and mechanobiology of the articular chondrocyte
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Biomechanical properties and mechanobiology of the articular chondrocyte

机译:关节软骨细胞的生物力学特性和力学生物学

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摘要

To withstand physiological loading over a lifetime, human synovial joints are covered and protected by articular cartilage, a layer of low-friction, load-bearing tissue. The unique mechanical function of articular cartilage largely depends on the composition and structural integrity of the cartilage matrix. The matrix is produced by highly specialized resident cells called chondrocytes. Under physiological loading, chondrocytes maintain the balance between degradation and synthesis of matrix macromolecules. Under excessive loading or injury, however, degradation exceeds synthesis, causing joint degeneration and, eventually, osteoarthritis (OA). Hence, the mechanoresponses of chondrocytes play an important role in the development of OA. Despite its clear importance, the mechanobiology of articular chondrocytes is not well understood. To summarize our current understanding, here we review studies of the effect of mechanical forces on mechanical and biological properties of articular chondrocytes. First, we present the viscoelastic properties of the cell nucleus, chondrocyte, pericellular matrix, and chondron. Then we discuss how these properties change in OA. Finally, we discuss the responses of normal and osteoarthritic chondrocytes to a variety of mechanical stimuli. Studies reviewed here may provide novel insights into the pathogenesis of OA and may help in development of effective biophysical treatment.
机译:为了承受一生的生理负荷,人体滑膜关节被一层低摩擦,承重的组织软骨覆盖和保护。关节软骨的独特机械功能在很大程度上取决于软骨基质的组成和结构完整性。基质是由高度专业化的常驻细胞(称为软骨细胞)产生的。在生理负荷下,软骨细胞维持基质大分子降解与合成之间的平衡。然而,在过多的负荷或伤害下,降解超过合成,导致关节变性,并最终导致骨关节炎(OA)。因此,软骨细胞的机械反应在OA的发展中起重要作用。尽管它的重要性很明确,但对关节软骨细胞的力学生物学却还知之甚少。为了总结我们目前的理解,这里我们回顾一下机械力对关节软骨细胞的机械和生物学特性的影响的研究。首先,我们介绍了细胞核,软骨细胞,细胞周围基质和软骨的粘弹性。然后,我们讨论这些属性如何在OA中发生变化。最后,我们讨论了正常和骨关节炎软骨细胞对各种机械刺激的反应。本文回顾的研究可能提供有关OA发病机理的新颖见解,并可能有助于开发有效的生物物理治疗方法。

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