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梯度降解软骨支架材料应力刺激下与骨髓基质干细胞复合三维培养的实验研究 被引量:12

Experimental studies on gradient degradation cartilage biomaterials combined with cultured marrow stroma cell in vitro
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摘要 [目的]探讨梯度降解软骨支架材料(GDABM)的细胞生物相容性及诱导后的骨髓基质干细胞(MSCs)在三维支架上培养的生物学行为.[方法]将MSCs与复合转化生长因子-β(TGF-β)的胶原共同混合后培养于三维软骨支架材料上,离心管内培养,10次/d,以600 r/min离心10 min.8 h、24 h、72 h、4 d、7 d进行倒置显微镜形态学观察、扫描电镜观察.1~8 d采用MTT法检测细胞增殖活性,描绘生长曲线.通过3H-Proline掺入实验了解材料对MSCs胶原合成的影响.[结果]8 h后MSCs在支架材料上呈球型黏附生长,4 d后MSCs在支架材料上呈菱形或多角型复层生长,包裹于大量细胞外基质内.GDABM组细胞第3 d进入对数增长期,倍增时间为4.75 d,而单纯软骨细胞培养对照组倍增时间为5.25 d.GDABM组与单纯软骨细胞培养对照组比较胶原合成略低,3H-Proline掺入值有显著性差异(P<0.05),说明经诱导MSCs的细胞胶原分泌功能仍低于软骨细胞.[结论]经TGF-β诱导和低转速离心应力刺激后的MSCs向软骨细胞功能分化,复合细胞因子梯度降解软骨支架材料具有良好的生物相容性,可作为MSCs的有效载体应用于组织工程化软骨的构建. [ Objective ] To study the biocompatibility of gradient degradation cartilage biomaterials (GDABM) and biological behavior of cultured marrow stroma cell(MSCs) combined with this three-dimension scaffold in tissue engineering. [ Method] MSCs(5 ×10^6) were cultured combining with GDABM in vitro in centrifuge tube, TGF-β was added to collagen and attached to GDABM. Culture tube was centrifuged in 600 r/min, 10 times/d, lOmin per time. The morphological characters, cell proliferation were detected. Collagen synthesis were tracked by incorporated radioactive ^3H labeled proline into culture. [ Result] The MSCs attached to GDABM and grew along fibers in lozenge-like or multiangular-like manner Cells in GDABM group reached logarithm increasing period at the third day. Its' doubling time was 4.75 d, While cells in control group was 5.25 d. There was difference of 3H-Proline value between the'two groups( P 〉0.05) ,which hint that the MSCs function was induced to cartilage in collagen synthesis, but MSCs collagen function level was lower than that of cartilage. [ Condusion] MSCs can be induced to cartilage-collagen function cell in low centrifuge stress combined with TGF-β. GDABM show good biocompatibility combined with MSCs and can provide a promising extracellular matrix scaffold for cell transplantation in cartilage tissue engineering.
出处 《中国矫形外科杂志》 CAS CSCD 北大核心 2006年第10期772-774,共3页 Orthopedic Journal of China
基金 黑龙江省教育厅基金项目(10541121)
关键词 基质干细胞 生物材料 生物相容性 组织工程 Marrow stroma cell Biomaterials Biocompatibility Tissue engineering
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