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体外培养所形成的细胞外基质对MC3T3-E1细胞生长和分化的影响
引用本文:郭勇,刘璐,郝庆新,李瑞欣,张西正,王亮,宁波.体外培养所形成的细胞外基质对MC3T3-E1细胞生长和分化的影响[J].生物工程学报,2011,27(11):1606-1612.
作者姓名:郭勇  刘璐  郝庆新  李瑞欣  张西正  王亮  宁波
作者单位:军事医学科学院卫生装备研究所,天津,300161
基金项目:国家自然科学基金 (Nos. 10832012, 11172062, 30700156) 资助。
摘    要:细胞外基对组织细胞起支持、保护、营养作用,对细胞的增殖、分化有重要影响,在细胞和组织工程中,应该充分考虑细胞外基质的作用。本研究首先脱去培养板中融合培养的原代小鼠心肌成纤维细胞和成骨细胞,获得两种体外形成的细胞外基质包被的培养板,其中成骨细胞细胞外基质中含有骨形成蛋白2。然后将MC3T3-E1成骨前体细胞接种在这种培养板中,发现成纤维细胞胞外基质包被的培养板中的细胞增殖活性最高,而成骨细胞胞外基质包被的培养板中细胞的碱性磷酸酶活性、骨形成蛋白2和骨桥蛋白的相对蛋白表达量最高,细胞外钙沉积量比其他组高1倍左右。结果表明:包被在培养板上的这两种细胞外基质有不同的生物活性,成纤维细胞胞外基质可促进成骨前体细胞增殖,成骨细胞胞外基质可促进成骨前体细胞骨向分化。

关 键 词:细胞外基质,成骨细胞,成纤维细胞,增殖,分化
收稿时间:2011/4/21 0:00:00

Effects of extracellular matrix produced in vitro on growth and differentiation of MC3T3-E1 cells
Yong Guo,Lu Liu,Qingxin Hao,Ruixin Li,Xizheng Zhang,Liang Wang and Bo Ning.Effects of extracellular matrix produced in vitro on growth and differentiation of MC3T3-E1 cells[J].Chinese Journal of Biotechnology,2011,27(11):1606-1612.
Authors:Yong Guo  Lu Liu  Qingxin Hao  Ruixin Li  Xizheng Zhang  Liang Wang and Bo Ning
Institution:Tianjin Institute of Medical Equipment, Tianjin 300161, China;Tianjin Institute of Medical Equipment, Tianjin 300161, China;Tianjin Institute of Medical Equipment, Tianjin 300161, China;Tianjin Institute of Medical Equipment, Tianjin 300161, China;Tianjin Institute of Medical Equipment, Tianjin 300161, China;Tianjin Institute of Medical Equipment, Tianjin 300161, China;Tianjin Institute of Medical Equipment, Tianjin 300161, China
Abstract:Extracellular matrix(ECM) keeps cell's shape,protects and nourishes cells;it plays a great role in cell proliferation and differentiation.Therefore,ECM is very important in cell and tissue engineering.In this study,after primary mouse osteoblasts and fibroblasts maintained at confluence in vitro were removed,their ECM coated on cell culture plate was prepared,and bone morphogenetic proteins 2(BMP-2) was detected in the osteoblasts ECM.MC3T3-E1 preosteoblasts cells were seeded on cell culture plates covered ...
Keywords:extracellular matrix  osteoblasts  fibroblasts  proliferation  differentiation
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