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增强人髓核细胞用于退行性椎间盘疾病的生物治疗方法:一项系统评价

Enhancing human nucleus pulposus cells for biological treatment approaches of degenerative intervertebral disc diseases: a systematic review.

作者信息

Mern Demissew Shenegelegn, Beierfuß Anja, Thomé Claudius, Hegewald Aldemar Andres

机构信息

Department of Neurosurgery, Innsbruck Medical University, Austria.

出版信息

J Tissue Eng Regen Med. 2014 Dec;8(12):925-36. doi: 10.1002/term.1583. Epub 2012 Aug 23.

Abstract

Intervertebral disc (IVD) degeneration has been described as an aberrant, cell-mediated, age- and genetics-dependent molecular degeneration process, which can be accelerated by nutritional, mechanical and toxic factors. Collective involvement of these factors can result in structural failures, which are often associated with pain. Current treatment approaches are restricted to symptomatic therapies, not addressing options of restoring structural or biological deterioration of the IVD as the underlying problem. Therapeutic potentials of IVD cell transplantation, biomaterials, inhibiting or activating bioactive factors, including gene-therapeutic approaches, have been shown in vitro or in small animal models. Since human degenerative IVD cells display distinctive features with regard to cell biology and regenerative potential, we attempted a systematic review, investigating the in vitro response of human nucleus pulposus cells to different stimuli. Therefore, we conducted an electronic database search on Medline through July 2011 to identify, compare and discuss publications concerning the effects of cell-cell stimulation, bioactive factors, biomaterials and combinations thereof in terms of cell isolation, proliferation, differentiation and matrix protein synthesis. This survey and discussion might serve as a source for designing future biological treatment strategies for the human IVD.

摘要

椎间盘(IVD)退变被描述为一种异常的、细胞介导的、年龄和基因依赖性的分子退变过程,营养、机械和毒性因素可加速这一过程。这些因素的共同作用可导致结构破坏,而结构破坏常与疼痛相关。目前的治疗方法仅限于对症治疗,并未针对恢复IVD结构或生物学退变这一根本问题提供解决方案。IVD细胞移植、生物材料、抑制或激活生物活性因子(包括基因治疗方法)的治疗潜力已在体外或小动物模型中得到证实。由于人类退变的IVD细胞在细胞生物学和再生潜力方面具有独特特征,我们尝试进行一项系统综述,研究人类髓核细胞对不同刺激的体外反应。因此,我们在2011年7月前对Medline进行了电子数据库检索,以识别、比较和讨论有关细胞-细胞刺激、生物活性因子、生物材料及其组合在细胞分离、增殖、分化和基质蛋白合成方面作用的出版物。本次综述和讨论可为设计未来人类IVD的生物治疗策略提供参考。

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