期刊文献+

软骨细胞培养中细胞去分化和再分化研究进展 被引量:1

原文传递
导出
摘要 软骨细胞是软骨组织工程种子细胞的一个重要来源,应用自体软骨细胞构建的组织工程软骨可以成功修复大型哺乳动物关节承重面的缺损.自体软骨细胞移植术作为一种有效和成熟的技术已开始应用于临床关节软骨缺损修复,但软骨组织中的软骨细胞数量较少,接种支架前需要进行足量的扩增才能满足修复缺损的要求.
出处 《中华整形外科杂志》 CAS CSCD 北大核心 2011年第4期318-320,共3页 Chinese Journal of Plastic Surgery
基金 国家自然科学基金青年科学基金项目(30801192),北京市自然基金(7102134) 高等学校博士学科点专项科研基金(新教师基金课题,200800231078)
  • 相关文献

参考文献33

  • 1Liu Y, Chen F, Liu W, et al. Repairing large porcine full- thickness defects of articular cartilage using autologous chondrocyte-engineered cartilage. Tissue Eng, 2002, 8(4) :709- 721.
  • 2Brittberg M, Lindahl A, Nilsson A, et al. Treatment of deep cartilage defects in the knee with autologous chondrocyte transplantation. New Engl J Med, 1994, 331 (14) :889-895.
  • 3Chung C, Mesa J, Miller GJ, et al. Effects of auricular chondrocyte expansion on neocartilage formation in photocrosslinked hyaluronic acid networks. Tissue Eng, 2006, 12(9) :2665-2673.
  • 4Benya PD, Shaffer JD. Dedifferentiated chondrocytes reexpress the differentiated collagen phenotype when cultured in agarose gels. Cell, 1982, 30(1) :215-224.
  • 5Darling EM, Athanasiou KA. Rapid phenotypic changes in passaged articular chondrocyte subpopulations. J Orthop Res, 2005, 23(2) :425-432.
  • 6Schulze-Tanzil G, de Souza P, Villegas Castrejon H, et al. Redifferentiation of dedifferentiated human chondrocytes in high- density cultures . Cell Tissue Res, 2002, 308(3) :371-379.
  • 7Schulze-Tanzil G, Mobasheri A, de Souza P, et al. Loss of chondrogenic potential in dedifferentiated chondrocytes correlates with deficient Shc-Erk interaction and apoptosis. Osteoarthritis Cartilage, 2004, 12(6) :448-458.
  • 8Sasazaki Y, Seedhom BB, Shore R. Morphology of the bovine chondrocyte and of its cytoskeleton in isolation and in situ: are chondrocytes ubiquitously paired through the entire layer of articular cartilage? Rheumatology (Oxford), 2008 , 47(11 ): 1641-1646.
  • 9Idowu BD, Knight MM, Bader DL, et al. Confocal analysis of cytoskeletal organisation within isolated chondrocyte sub- populations cuhured in agarose. Histochem J, 2000,32 (3) :165- 174.
  • 10Vinall RL, Lo SH, Reddi AH. Regulation of articular chondrocyte phenotype by bone morphogenetic protein 7, interleukin 1, and cellular context is dependent on the cytoskeletonl Exp Cell Res, 2002, 272(1) :32-44.

二级参考文献10

  • 1Loeser RF, Shanker G, Carlson CS, et al. Reduction in the chondrocyte response to insulin-like growth factor 1 in aging and osteoarthritis. Arthritis Rheum, 2000,43 : 2110-2120.
  • 2Enomoto-Iwamoto M, Iwamoto M, Mukudai Y, et al. Bone morphogenetic protein signaling is required for maintenance of differentiated phenotype, control of proliferation, and hypertrophy in chondrocytes. J Cell Biol, 1998,140: 409-418.
  • 3Vincenti MP, Brinckerhoff CE. Early response genes induced in chondrocytes stimulated with the inflammatory cytokine interleukin1beta. Arthritis Res, 2001, 3: 381-388.
  • 4Osaki M, Tan L, Choy BK, et al. The TATA-containing core promoter of the type II collagen gene (COL2A1) is the target of interferongamma-mediated inhibition in human chondrocytes: requirement for Statl alpha, Jak1 and Jak2. Biochem J, 2003, 369:103-115.
  • 5Hou WS, Li W, Keyszer G, et al. Comparison of cathepsins K and S expression within the rheumatoid and osteoarthritic synovium. Arthritis Rheum, 2002,46:663-674.
  • 6Mallein-Gerin F, Garrone R, Van der Rest M. Proteoglycan and collagen synthesis are correlated with actin organization in dedifferentiating chondrocytes. Eur J Cell Biol, 1991, 56:364-373.
  • 7Shapland C, Hsuan JJ, Totty NF, et al. Purification and properties of transgelin: a transformation and shape change sensitive actin-gelling protein. J Cell Biol, 1993, 121:1065-1073.
  • 8Kafienah W, Bromme D, Buttle D J, et al. Human cathepsin K cleaves native type I and II collagens at the N-terminal end of the triple helix. Biochem J, 1998, 331:727-732.
  • 9Hou WS, Li Z, Buttner FH, et al. Cleavage site specificity of cathepsin K toward cartilage proteoglycans and protease complex formation. Biol Chem, 2003, 384:891-897.
  • 10Pearson D, Sasse J. Differential regulation of biglycan and decorin by retinoic acid in bovine chondrocytes. J Biol Chem, 1992, 267:25364- 25370.

共引文献13

同被引文献8

引证文献1

二级引证文献1

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