期刊文献+

针刺损伤兔椎间盘退变模型组织病理变化及软骨样细胞的迁移规律 被引量:2

Histopathological changes and rule of migration associated with chondrocytes in acupuncture-induced intervertebral disc degeneration model in rabbits
暂未订购
导出
摘要 背景:兔椎间盘退变模型间盘退变表现为随时间进展脊索细胞将被软骨样细胞逐渐替代,但兔针刺纤维环间盘退变模型中软骨样细胞的来源和移行规律尚不明确。目的:观察针刺兔纤维环间盘退变模型椎间盘病理变化过程,并初步探讨软骨样细胞来源及移行规律。方法:将24只新西兰大白兔随机分为手术组与假手术组。手术组使用16G穿刺针针刺L2/L3、L3/L4、L4/L5及L5/L6椎间盘纤维环,假手术组暴露至相同椎间盘前方后冲洗闭合伤口。结果与结论:针刺损伤椎间盘退变过程中的软骨样细胞来源于终板。在髓核与上下终板交界处,软骨细胞脱离终板成串向髓核中心迁移;在髓核与内层纤维环交界处,软骨细胞沿纤维走行迁移并随之向皱缩的髓核边缘迁移。椎间盘退变过程中非钙化层逐渐变薄,非钙化层/钙化层比值逐渐降低。 BACKGROUND:The notochordal cells will be replaced by chondrocytes along with the aggravation of degenerative intervertebral disc,but the origin and migration rule of the chondrocytes of the model established by puncturing the annulus fibrosus are still unclear.OBJECTIVE:To observe the histopathological process of degenerative intervertebral disc model established by puncturing the annulus fibrosus,and to explore the origin and migration rule of the chondrocytes.METHODS:Twenty-four New Zealand white rabbits were divided into operation group and sham operation group.In the operation group,lumbar discs of L2-3,L3-4,L4-5 and L5-6 of each rabbit were punctured by 16 gauge needle.In the sham operation group,the anterior surfaces of the lumbar discs were exposed without puncture.RESULTS AND CONCLUSION:The chondrocytes of the nucleus pulposus originated and migrated from the cartilage endplate.At the junction of the nucleus pulposus and the cartilage endplate,the chondrocytes departed from the cartilage endplate to the nucleus pulposus vertically.At the junction of the inner annulus fibrosus and the cartilage endplate,the chondrocytes migrated along the collagen fibers from the cartilage endplate to the shrinked margin of the nucleus pulposus.The non-calcified layer thinned gradually,and the non-calcified layer/calcified layer ratio decreased.
出处 《中国组织工程研究》 CAS CSCD 2012年第9期1597-1600,共4页 Chinese Journal of Tissue Engineering Research
基金 国家自然科学基金面上项目(81071504) 北京自然科学基金项目(7123231)~~
  • 相关文献

参考文献13

  • 1Hunter CJ,Matyas JR,Duncan NA. The notochordal cell in the nucleus pulposus:a review in the context of tissue engineering[J].Tissue Engineering,2003,(04):667-677.doi:10.1089/107632703768247368.
  • 2Kim JH,Deasy BM,Seo HY. Differentiation of intervertebral notochordal cells through live automated cell imaging system in vitro[J].Spine (Phila Pa 1976),2009,(23):2486-2493.
  • 3Kim KW,Lim TH,Kim JG. The origin of chondrocytes in the nucleus pulposus and histologic findings associated with the transition of a notochordal nucleus pulposus to a fibrocartilaginous nucleus pulposus in intact rabbit intervertebral discs[J].Spine (Phila Pa 1976),2003.982-990.
  • 4Sobajima S,Kompel JF,Kim JS. A slowly progressive and reproducible animal model of intervertebral disc degeneration characterized by MRI,X-ray,and histology[J].Spine (Phila Pa 1976),2005,(01):15-24.
  • 5Masuda K,Aota Y,Muehleman C. A novel rabbit model of mild,reproducible disc degeneration by an anulus needle puncture:correlation between the degree of disc injury and radiological and histological appearances of disc degeneration[J].Spine (Phila Pa 1976),2005,(01):5-14.
  • 6Korecki CL,Costi JJ,Iatridis JC. Needle Puncture Injury Affects Intervertebral Disc Mechanics and biology in an organ culture model[J].Spine (Phila Pa 1976),2008,(03):235-241.
  • 7Freemont AJ,Watkins A,Le Maitre C. Current understanding of cellular and molecular events in intervertebral disc degeneration:implications for therapy[J].Journal of Pathology,2002.374-379.
  • 8Hunter CJ,Matyas JR,Duncan NA. The functional significance of cell clusters in the notochordal nucleus pulposus:survival and signaling in the canine intervertebral disc[J].Spine (Phila Pa 1976),2004.1099-1104.
  • 9Guehring T,Wilde G,Sumner M. Notochordal intervertebral disc cells-sensitivity to nutrient deprivation[J].Arthritis and Rheumatism,2009,(04):1026-1034.doi:10.1002/art.24407.
  • 10Michalek AJ,Latridis JC. Penetrating annulus fibrosus injuries affect dynamic compressive behaviors of the intervertebral disc via altered fluid flow:an analytical interpretation[J].Journal of Biomechanical Engineering,2011,(08):084502.

同被引文献18

引证文献2

二级引证文献9

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部