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椎间盘退变的生物化学及基因治疗应用潜力

Biochemistry of intervertebral disc degeneration and the potential for gene therapy applications.

作者信息

Cassinelli E H, Hall R A, Kang J D

机构信息

Department of Orthopaedic Surgery, University of Pittsburgh Medical Center, 1010 Kaufmann Building, 3471 Fifth Avenue, Pittsburgh, PA 15213-3221, USA.

出版信息

Spine J. 2001 May-Jun;1(3):205-14. doi: 10.1016/s1529-9430(01)00021-3.

Abstract

BACKGROUND CONTEXT

Low back pain continues to be a major cause of morbidity in the United States and the world. Although the exact cause has yet to be defined, the intervertebral disk and its age-related changes have been most frequently implicated.

PURPOSE

This article represents a brief summary of intervertebral disk structure and function, both in the "normal" and degenerative states.

STUDY DESIGN/SETTING: Review article. A Medline search from 1966 to present was performed to identify pertinent articles related to the topic of the intervertebral disc and degeneration.

METHODS

This review article describes the pertinent anatomy, as well as the biochemical and biomechanical changes that occur in the intervertebral disc over time. It presents many of the current theories implicated as causing these changes.

RESULTS

Recent studies have shown that gene therapy (the transfer of therapeutic gene[s] into a cell), may have promise as a method of slowing down, or preventing some of the changes seen in the intervertebral disc.

CONCLUSION

Intervertebral disc degeneration is a complex phenomenon, likely the result of a combination of biochemical and biomechanical factors that are known to occur in the disk. Ongoing research efforts in the area of gene therapy show promise as a way to prevent, or even reverse, some of these changes.

摘要

背景

在美国乃至全球,下腰痛仍是导致发病的主要原因。尽管确切病因尚未明确,但椎间盘及其与年龄相关的变化被认为是最常见的病因。

目的

本文简要总结了椎间盘在“正常”和退变状态下的结构与功能。

研究设计/背景:综述文章。对1966年至今的医学文献进行检索,以确定与椎间盘及退变相关的相关文章。

方法

这篇综述文章描述了相关解剖结构,以及随着时间推移椎间盘发生的生化和生物力学变化。它介绍了目前许多被认为导致这些变化的理论。

结果

最近的研究表明,基因治疗(将治疗性基因导入细胞)作为一种减缓或预防椎间盘中出现的某些变化的方法可能具有前景。

结论

椎间盘退变是一种复杂的现象,可能是椎间盘内已知的生化和生物力学因素共同作用的结果。基因治疗领域正在进行的研究有望预防甚至逆转其中一些变化。

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