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椎间盘退变与新兴的生物学治疗方法。

Intervertebral disk degeneration and emerging biologic treatments.

机构信息

Department of Orthopedic Surgery, Thomas Jefferson University Hospital, Philadelphia, PA, USA.

出版信息

J Am Acad Orthop Surg. 2011 Sep;19(9):543-53. doi: 10.5435/00124635-201109000-00005.

Abstract

Although understanding of the biologic basis of intervertebral disk (IVD) degeneration is rapidly advancing, the unique IVD environment presents challenges to the development and delivery of biologic treatments. Acceleration of cellular senescence and apoptosis in degenerative IVDs and the depletion of matrix proteins have prompted the development of treatments based on replacing IVD cells using various cell sources. However, this strategy has not been tested in animal models. IVD degeneration and associated pain have led to interest in pathologic innervation of the IVD and ultimately to the development of percutaneous devices to ablate afferent nerve endings in the posterior annulus. Degeneration leads to changes in the expression of matrix protein, cytokines, and proteinases. Injection of growth factors and mitogens may help overcome these degenerative changes in IVD phenotype, and these potential treatments are being explored in animal studies. Gene therapy is an elegant method to address changes in protein expression, but efforts to apply this technology to IVD degeneration are still at early stages.

摘要

尽管人们对椎间盘(IVD)退变的生物学基础的理解正在迅速深入,但独特的 IVD 环境给生物治疗的开发和应用带来了挑战。退变的 IVD 中细胞衰老和凋亡的加速以及基质蛋白的耗竭促使人们开发了使用各种细胞来源替代 IVD 细胞的治疗方法。然而,这种策略尚未在动物模型中得到测试。IVD 退变及相关疼痛引起了对 IVD 病理性神经支配的关注,并最终开发了经皮设备来消融后环的传入神经末梢。退变导致基质蛋白、细胞因子和蛋白酶表达的改变。生长因子和有丝分裂原的注射可能有助于克服 IVD 表型的这些退行性变化,这些潜在的治疗方法正在动物研究中探索。基因治疗是一种解决蛋白质表达变化的优雅方法,但将这项技术应用于 IVD 退变的努力仍处于早期阶段。

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