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应用离心管技术以异体微粒软骨脱细胞基质为支架体外构建组织工程软骨 被引量:3

Experimental study of tissue engineered cartilage construction with scaffold of allogenic cartilage microparticle acellular tissue matrix
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摘要 目的将软骨细胞与异体软骨微粒脱细胞基质相结合,构建组织工程软骨.方法分别利用氯化钾、胰蛋白酶和乙二胺四乙酸钠对绵羊关节软骨进行脱细胞,并制成直径0.100~0.154 mm的微粒.先分离异体关节软骨细胞并进行体外扩增,再将异体软骨细胞与软骨微粒脱细胞基质混合培养,离心后应用离心管体外培养.结果本脱细胞方法可以使关节软骨细胞完全脱落,且软骨细胞紧紧围绕于异体软骨微粒脱细胞基质四周,生长和分泌功能良好.结论软骨细胞与异体软骨微粒脱细胞基质有良好的生物相容性,可于体外形成软骨样组织. Objective To construct tissue engineered cartilage by combining allogenic cartilage microparticle acellular tissue matrix and chondrocytes. Methods Cartilage microparticle acellular tissue matrix from sheep articular cartilage were prepared with KCl, trypsin and EDTA, the diameter of which was from 0.100 mm to 0.154 mm. Allogenic chondrocytes were isolated and cultured in vitro. Finally, chondrocytes and cartilage microparticle acellular tissue matrix were mixed and cultured in centrifuge tube in vitro. Results The acellularization procedure resulted in a complete removal of the original cells. Allogenic microparticles were circled by chondrocytes whose growth and secretion were good. Conclusions Allogenic cartilage microparticles acellular tissue matrix possesses satisfactory biocompatibility to chondrocytes. Cartilage tissue can be constructed by this procedure in vitro.
出处 《中华风湿病学杂志》 CAS CSCD 2005年第1期1-3,i001,共4页 Chinese Journal of Rheumatology
基金 国家自然科学基金资助项目(3017090) 黑龙江省杰出青年基金资助项目(JC-02-07) 黑龙江省教育厅基金资助项目(10511039)
关键词 离心管技术 异体微粒 脱细胞基质 支架 构建 组织工程 Cartilage, articular Extracellular matrix Tissue engineering
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  • 1颜炜群,佟明华,宇莉,余涛,侯立中,杨同书,高贵,张家颖.培养软骨细胞再形成生长板样软骨组织的研究[J].实验生物学报,1994,27(2):193-203. 被引量:14
  • 2刘彦春 王炜 等.卵磷脂、多聚赖氨酸和PLA包埋PGA与软骨细胞体外培养的研究实验[J].实用美容整形外科杂志,1997,8:225-231. 被引量:1
  • 3[1]Lawrie GM, Morris GC Jr, Earle N. Long-term results of coronary bypass surgery. Analysis of 1698 patients followed 15 to 20 years. Ann Surg, 1991; 213(5):377 被引量:1
  • 4[2]Niklason LE, Gao J, Abbott WM, et al. Functional arteries grown in vitro [see comments]. Science, 1999; 284(5 413):489 被引量:1
  • 5[5]Scott M, Vesely I. Aortic valves cusp microstructure: The role of elastin. Ann Thorac Sury, 1995; 60(2):391 被引量:1
  • 6[6]Meredith JE Jr, Fazeli B, Schwartz MA. The extracellular matrix as a cell survival factor. Mol Biol Cell, 1993; 4(9):953 被引量:1
  • 7[7]Thoumine O, Nerem RM, Girard PR. Oscillatory shear stress and hydrostatic pressure modulate cell-matrix attachment proteins in cultured endothelial cells. In Vitro Cell Dev Biol Anim, 1995; 31(1):45 被引量:1
  • 8[8]Lee RT, Berditchevski F, Cheng GC, et al. Integrin-mediated collagen matrix reorganization by cultured human vascular smooth muscle cells. Circ Res, 1995; 76(2): 209 被引量:1
  • 9[9]Walluscheck KP, Steinhoff G, Haverich A. Endothelial cell seeding of native vascular surfaces. Eur J Vasc Endovasc Surg, 1996; 11(3): 290 被引量:1
  • 10[10]Cines DB, Pollak ES, Buck CA, et al. Endothelial cells in physiology and in the pathophysiology of vascular disorders. Blood, 1998; 91(10):3 527 被引量:1

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