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Molecular Mechanisms of Intervertebral Disc Degeneration

机译:椎间盘退变的分子机制

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摘要

Intervertebral disc degeneration is a well-known cause of disability, the result of which includes neck and back pain with associated mobility limitations. The purpose of this article is to provide an overview of the known molecular mechanisms through which intervertebral disc degeneration occurs as a result of complex interactions of exogenous and endogenous stressors. This review will focus on some of the identified molecular changes leading to the deterioration of the extracellular matrix of both the annulus fibrosus and nucleus pulposus. In addition, we will provide a summation of our current knowledge supporting the role of associated DNA and intracellular damage, cellular senescence's catabolic effects, oxidative stress, and the cell's inappropriate response to damage in contributing to intervertebral disc degeneration. Our current understanding of the molecular mechanisms through which intervertebral disc degeneration occurs provides us with abundant insight into how physical and chemical changes exacerbate the degenerative process of the entire spine. Furthermore, we will describe some of the related molecular targets and therapies that may contribute to intervertebral repair and regeneration.
机译:椎间盘退变是导致残疾的众所周知的原因,其结果包括颈部和背部疼痛以及相关的活动受限。本文的目的是概述外源性和内源性应激源复杂相互作用导致椎间盘退变的已知分子机理。这篇综述将集中在一些已鉴定的分子变化上,这些变化导致纤维环和髓核的细胞外基质变质。此外,我们将总结我们目前的知识,以支持相关的DNA和细胞内损伤,细胞衰老的分解代谢作用,氧化应激以及细胞对损伤的不适当反应,从而导致椎间盘退变。我们目前对椎间盘退变发生的分子机制的了解为我们提供了关于物理和化学变化如何加剧整个脊柱退变过程的丰富见解。此外,我们将描述一些可能有助于椎间修复和再生的相关分子靶标和疗法。

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