椎间盘退变中基质金属蛋白酶作用的研究进展

被引:19
作者
流小舟
徐海栋
周光新
赵建宁
机构
[1] 南方医科大学金陵医院(南京军区南京总医院)骨科
关键词
椎间盘退行性变; 基质金属蛋白酶; 表达及调节;
D O I
暂无
中图分类号
R681.53 [];
学科分类号
摘要
椎间盘退行性变是骨科常见的疾病之一,其复杂生理病理改变受到多种因素调控。其中基质金属蛋白酶(matrix metallo proteinases,MMPs)及其调节因子起到极为重要的作用,并且MMPs影响椎间盘退变的因素之间又相互联系、相互作用。因此近年来针对MMPs的研究已逐渐成为明确椎间盘退变诱因的热点之一。文中分析了导致椎间盘发生退变的因素,并根据MMPs各家族成员的不同功能,分别归纳了不同种类MMPs的表达与椎间盘退变的关系,阐述了MMP可通过基因多态性及相关因子的调节,对椎间盘退变的产生影响。
引用
收藏
页码:1213 / 1217
页数:5
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[1]
臭氧联合胶原酶治疗国人腰椎间盘突出症有效性与安全性的Meta分析 [J].
魏小琴 ;
李亦梅 .
医学研究生学报, 2014, 27 (03) :275-281
[2]
基质金属蛋白酶9/组织金属蛋白酶抑制剂1在鼻致敏豚鼠模型鼻黏膜重塑中的作用 [J].
江满杰 ;
张勇 ;
吴晋蓉 ;
王志颐 ;
王天友 ;
周玫 ;
王秋萍 .
医学研究生学报, 2014, 27 (01) :23-26
[3]
Genetics of the Degenerated Intervertebral Disc[J] Samuel Kalb;Nikolay L. Martirosyan;M. Yashar S. Kalani;Guy G. Broc;Nicholas Theodore World Neurosurgery 2012,
[4]
Cell viability in intervertebral disc under various nutritional and dynamic loading conditions: 3d Finite element analysis[J] Qiaoqiao Zhu;Alicia R. Jackson;Wei Yong Gu Journal of Biomechanics 2012,
[5]
Human Nucleus Pulposus Cells React to IL-6: Independent Actions and Amplification of Response to IL-1 and TNF-α[J] Rebecca K. Studer;Nam Vo;Gwendolyn Sowa;Courtney Ondeck;James Kang Spine 2011,
[6]
The Reactions of Glial Cells and Endoneurial Macrophages in the Dorsal Root Ganglion and Their Contribution to Pain-Related Behavior After Application of Nucleus Pulposus Onto the Nerve Root in Rats[J] Ken-ichi Otoshi;Shin-ichi Kikuchi;Shin-ichi Konno;Miho Sekiguchi Spine 2010,
[7]
Lumbar Disk Degeneration Disease and Aggrecan Gene Polymorphism in Northern Iran[J] Farhad Mashayekhi;Gholamreza Shafiee;Masood Kazemi;Parviz Dolati Biochemical Genetics 2010,
[8]
Sensitivity of notochordal disc cells to mechanical loading: an experimental animal study[J] Thorsten Guehring;Andreas Nerlich;Markus Kroeber;Wiltrud Richter;Georg W. Omlor European Spine Journal 2010,
[9]
Genetic Factors Are Associated With Modic Changes in Endplates of Lumbar Vertebral Bodies[J] Spine 2008,
[10]
Plasmin-Matrix Metalloproteinase Cascades in Spinal Response to an Experimental Disc Lesion in Pig[J] Spine 2008,