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Developments in intervertebral disc disease research: pathophysiology mechanobiology and therapeutics

机译:椎间盘疾病研究的发展:病理生理学力学生物学和治疗学

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摘要

Low back pain is a leading cause of disability worldwide and the second most common cause of physician visits. There are many causes of back pain, and among them, disc herniation and intervertebral disc degeneration are the most common diagnoses and targets for intervention. Currently, clinical treatment outcomes are not strongly correlated with diagnoses, emphasizing the importance for characterizing more completely the mechanisms of degeneration and their relationships with symptoms. This review covers recent studies elucidating cellular and molecular changes associated with disc mechanobiology, as it relates to degeneration and regeneration. Specifically, we review findings on the biochemical changes in disc diseases, including cytokines, chemokines, and proteases; advancements in disc disease diagnostics using imaging modalities; updates on studies examining the response of the intervertebral disc to injury; and recent developments in repair strategies, including cell-based repair, biomaterials, and tissue engineering. Findings on the effects of the omega-6 fatty acid, linoleic acid, on nucleus pulposus tissue engineering are presented. Studies described in this review provide greater insights into the pathogenesis of disc degeneration and may define new paradigms for early or differential diagnostics of degeneration using new techniques such as systemic biomarkers. In addition, research on the mechanobiology of disease enriches the development of therapeutics for disc repair, with potential to diminish pain and disability associated with disc degeneration.
机译:腰痛是导致世界范围内残疾的主要原因,也是第二次最常见的就诊原因。背痛的原因很多,其中,椎间盘突出症和椎间盘退变是最常见的诊断和干预目标。目前,临床治疗结果与诊断没有密切相关,强调了更完整地表征变性机制及其与症状之间关系的重要性。这篇综述涵盖了最近的研究,阐明了与椎间盘机械生物学相关的细胞和分子变化,因为它涉及变性和再生。具体来说,我们回顾了关于椎间盘疾病的生化变化的发现,包括细胞因子,趋化因子和蛋白酶。使用成像方式在椎间盘疾病诊断方面的进展;有关检查椎间盘对损伤的反应的研究的最新动态;以及修复策略的最新发展,包括基于细胞的修复,生物材料和组织工程。提出了关于ω-6脂肪酸亚油酸对髓核组织工程的影响的发现。这篇综述中描述的研究为椎间盘退变的发病机理提供了更深刻的见解,并可能使用系统生物标记物等新技术为退变的早期或鉴别诊断定义新的范例。另外,对疾病的力学生物学的研究丰富了用于椎间盘修复的疗法的发展,具有减轻与椎间盘退变相关的疼痛和残疾的潜力。

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