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椎间盘髓核置换和再生/修复技术:现状与展望。

Nucleus pulposus replacement and regeneration/repair technologies: present status and future prospects.

机构信息

Department of Mechanical Engineering, The University of Memphis, Memphis, Tennessee 38152, USA.

出版信息

J Biomed Mater Res B Appl Biomater. 2012 Aug;100(6):1702-20. doi: 10.1002/jbm.b.32712. Epub 2012 May 7.

Abstract

Degenerative disc disease is implicated in the pathogenesis of many painful conditions of the back, chief among which is low back pain. Acute and/or chronic low back pain (A/CLBP) afflicts a large number of people, thus making it a major healthcare issue with concomitant cost ramifications. When conservative treatments for A/CLBP, such as bed rest, anti-inflammatory medications, and physical therapy, prove to be ineffectual, surgical options are recommended. The most popular of these is discectomy followed by fusion. Although there are many reports of good to excellent outcomes with this method, there are concerns, such as long-term adverse biomechanical consequences to adjacent functional spinal unit(s). A surgical option that has been attracting much attention recently is replacement or regeneration/repair of the nucleus pulposus, an approach that holds the prospect of not compromising either mobility or function and causing no adjacent-level injury. There is a sizeable body of literature highlighting this option, comprising in vitro biomechanical studies, finite element analyses, animal-model studies, and limited clinical evaluations. This work is a review of this body of literature and is organized into four parts, with the focus being on replacement technologies, regeneration/repair technologies, and detailed expositions on 14 areas for future study. This review ends with a summary of the salient points made.

摘要

退行性椎间盘疾病与许多背部疼痛疾病的发病机制有关,其中主要的是腰痛。急性和/或慢性下腰痛(A/CLBP)折磨着大量的人,因此成为一个主要的医疗保健问题,同时也带来了相应的成本问题。当 A/CLBP 的保守治疗(如卧床休息、抗炎药物和物理治疗)证明无效时,建议采用手术治疗。其中最受欢迎的方法是椎间盘切除术,随后是融合术。尽管有许多报道称这种方法的效果良好甚至优异,但仍存在一些担忧,例如对相邻功能脊柱单元的长期不良生物力学后果。最近,一种备受关注的手术方法是对髓核进行置换或再生/修复,这种方法有望不影响活动度或功能,也不会导致相邻节段损伤。有相当数量的文献强调了这一选择,包括体外生物力学研究、有限元分析、动物模型研究和有限的临床评估。这篇综述是对这些文献的综述,分为四个部分,重点是置换技术、再生/修复技术以及对未来 14 个研究领域的详细阐述。最后,本文对重点内容进行了总结。

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