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努力探索椎间盘退变的生物学治疗方法

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摘要 分子生物学、细胞生物学和组织工程学等学科的迅速发展,为骨科疾病的治疗提供了新的手段,进而开辟了新的领域。新的手段主要包括以细胞学为基础的组织移植或自身细胞的基因修饰等,最终达到生物学修复的目的。目前上述技术已应用于多种组织。
出处 《中华医学杂志》 CAS CSCD 北大核心 2010年第3期145-147,共3页 National Medical Journal of China
基金 基金项目:国家自然科学基金(30872606)
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参考文献34

  • 1Paesold G, Nerlich AG, Boos N. Biological treatment strategies for disc degeneration: potentials and shortcomings. Gene Ther, 2007,16:447-468.
  • 2田伟,赵丹慧.应发挥分子骨科对骨科发展的引领作用[J].中华医学杂志,2008,88(37):2593-2596. 被引量:3
  • 3An HS, Thonar EJ, Masuda K. Biological repair of intervertebral disc. Spine ,2003, 28:86-92.
  • 4Takegami K, Masuda K, An H. In vivo administration of osteogenic protein-I increases proteoglycan content and disc height in rabbit intervertebral disc. Orthop Res Soc Trans,2000,25:338.
  • 5An HS, Takegami K, Kamada H, et al. Intradiscal administration of osteogenic protein-1 increases intervertebral disc height and proteoglycan content in the nucleus pulposus in normal adolescent rabbits. Spine, 2005, 30:25-31.
  • 6Kawakami M, Matsumoto T, Hashizume H, et al. Osteogenic protein-1 (osteogenic protein-1/bone morphogenetic protein-7 ) inhibits degeneration and pain-related behavior induced by chronically compressed nucleus pulposus in the rat. Spine ,2005, 30,1933-1939.
  • 7Klein RG, Eek BC, O'Neill CW, et al. Biochemical injection treatment for discogenic low back pain: a pilot study. Spine J, 2003, 3:220-226.
  • 8Nishida K, Gilbertson LG, Robbins PD, et al. Potential applications of gene therapy to the treatment of intervertebral disc disorders. Clin Orthop Relat Res,2000, 379 Suppl :234-241.
  • 9Li S, Huang L. Nonviral gene therapy:promises and challenges. Gene Tber, 2000, 7:31-34.
  • 10Gardlik R, Palffy R, Hodosy J, et al. Vectors and delivery systems in gene therapy. Med Sci Monit, 2005, 11 : 110-121.

二级参考文献72

  • 1Nishida K, Kang JD, Gilbertson LG, et at. Modulation of the biologic activity of the rabbit intervertetral, disc by gene therapy : an in vivo study of adenovirus-mediated transfer of the human transforming growth factor beta 1 encoding gene. Spine, 1999, 24 : 2419-2425.
  • 2Chang SC, Hoang B, Thomas JT, et al. Cartilage-derived morphogenetic proteins:new members of the transforming growth factor-beta superfamily predominantly expressed in long bones during human embryonic development. J Biol Chem, 1994, 269 : 28227-282234.
  • 3Li W, Sadler LA. Low nucleotide diversity in man. Genetics, 1991, 129: 513-523.
  • 4Nickerson DA, Taylor SL, Weiss KM, et al. DNA sequence diversity in a 9.7 kb region of the human lipoprotein lipase gene. Nature Genetics,1998, 19 : 233-240.
  • 5Barbujani G, Magagni A, Minch E, et al. An apportionment of human DNA diversity. Proc Natl Acad Sci USA, 1997, 94: 4516- 4519.
  • 6Solovieva S, Leino-Arjas P, Saarela J, et al. Possible association of interleukin 1 gene locus polymorphisms with low back pain. Pain,2004, 109 : 8-19.
  • 7罗纳德,特伦特.分子医学.谢东,译.北京:科学出版社,2007:1-17.
  • 8Evans C. Potential biologic therapies for the intervertebral disc. J Bone Joint Surg, 2006, 88 Suppl 2:95-98.
  • 9Evans CH, Rosier RN. Molecular biology in orthopaedics: the advent of molecular orthopaedics. J Bone Joint Surg Am, 2005, 87:2550-2564.
  • 10Evans CH, Ghivizzani SC, Hemdon JH, et al. Gene therapy for the treatment of musculoskeletal discases. J Am Acad Orthop Surg, 2005, 13 : 230-242.

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