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椎间盘退变的力学与生物学:恶性循环。

Mechanics and biology in intervertebral disc degeneration: a vicious circle.

机构信息

Department of Orthopedic Surgery, VU University Medical Center, Amsterdam, The Netherlands; MOVE Research Institute Amsterdam, Amsterdam, The Netherlands.

MOVE Research Institute Amsterdam, Amsterdam, The Netherlands; Department of Human Movement Sciences, VU University, Amsterdam, The Netherlands.

出版信息

Osteoarthritis Cartilage. 2015 Jul;23(7):1057-70. doi: 10.1016/j.joca.2015.03.028. Epub 2015 Mar 27.

Abstract

Intervertebral disc degeneration is a major cause of low back pain. Despite its long history and large socio-economical impact in western societies, the initiation and progress of disc degeneration is not well understood and a generic disease model is lacking. In literature, mechanics and biology have both been implicated as the predominant inductive cause; here we argue that they are interconnected and amplify each other. This view is supported by the growing awareness that cellular physiology is strongly affected by mechanical loading. We propose a vicious circle of mechanical overloading, catabolic cell response, and degeneration of the water-binding extracellular matrix. Rather than simplifying the disease, the model illustrates the complexity of disc degeneration, because all factors are interrelated. It may however solve some of the controversy in the field, because the vicious circle can be entered at any point, eventually leading to the same pathology. The proposed disease model explains the comparable efficacy of very different animal models of disc degeneration, but also helps to consider the consequences of therapeutic interventions, either at the cellular, material or mechanical level.

摘要

椎间盘退变是导致下腰痛的主要原因。尽管在西方社会中,椎间盘退变具有悠久的历史和巨大的社会经济影响,但人们对其发病机制和进展仍知之甚少,也缺乏一种通用的疾病模型。文献中,力学和生物学均被认为是主要的诱导因素;在这里,我们认为它们是相互关联且相互增强的。越来越多的人认识到细胞生理学受到机械负荷的强烈影响,这一观点为上述假说提供了支持。我们提出了一个机械过载、分解代谢细胞反应和水结合细胞外基质退变的恶性循环。该模型并没有简化疾病,反而说明了椎间盘退变的复杂性,因为所有因素都是相互关联的。但是,该模型可能解决了该领域的一些争议,因为恶性循环可以在任何时候发生,最终导致相同的病理。所提出的疾病模型解释了非常不同的椎间盘退变动物模型具有可比的疗效,但也有助于考虑细胞、材料或机械水平治疗干预的后果。

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