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为探讨转染FL和/或TPO基因骨髓基质细胞系对脐血CD34+细胞的体外扩增效应, 建立了转基因骨髓基质细胞系共培养体系. 采用免疫磁珠法分离人脐血CD34+细胞, 在CD34+细胞不同体外培养体系中取样测试细胞总数、CD34+细胞百分率和CFC(包括CFU-GM 和BFU-E). 结果表明, 在8种不同组合的培养体系中, 转基因基质细胞共培养体系较无基质液体培养体系对细胞总数, CFC, CD34+细胞均具有明显的扩增效应, 其中以SCF + IL-3 + HFT扩增效果最好, 分别扩增了(893.3±52.1), (74.5±5.2)和15.7倍. CFU-GM和BFU-E在第2周时达扩增高峰, 扩增倍数分别为(78.1±5.5)和(57.0±19.7). LTC-IC测定结果显示, 只有SCF + IL-3 + FL + TPO和SCF + IL-3 + HFT组有LTC-IC的存在, 统计学检验无显著性差异. 上述结果提示, 转基因骨髓基质细胞系可通过细胞间的接触协同其他细胞因子增强对脐血CD34+细胞的体外扩增作用.  相似文献   
2.
To elucidate the effect of gene transfected marrow stromal cell on expansion of human cord blood CD34+ cells, a culture system was established in which FL and TPO genes were transfected into human stromal cell line HFCL. To establish gene transfected stromal cells co-culture system, cord blood CD34+ cells were purified by using a magnetic beads sorting system. The number of all cells and the number of CD34+ cells and CFC (CFU-GM and BFU-E) were counted in different culture systems. The results showed that in all 8 culture systems, SCF+IL-3+HFT manifested the most potent combination, with the number of total nucleated cells increasing by (893.3±52.1)-fold, total progenitor cells (CFC) by (74.5±5.2)-fold and CD34+ cells by 15.7-fold. Maximal expansions of CFC and CD34+ cells were observed at the end of the second week of culture. Within 14 days of culture, (78.1±5.5)-fold and (57.0±19.7)-fold increases in CFU-GM and BFU-E were obtained. Moreover, generation of LTC-IC from amplified CD34+ cells within 2  相似文献   
3.
To elucidate the effect of gene transfected marrow stromal cell on expansion of human cord blood CD34+ cells, a culture system was established in which FL and TPO genes were transfected into human stromal cell line HFCL. To establish gene transfected stromal cells co-culture system, cord blood CD34+ cells were purified by using a magnetic beads sorting system. The number of all cells and the number of CD34+ cells and CFC (CFU-GM and BFU-E) were counted in different culture systems. The results showed that in all 8 culture systems, SCF+IL-3+HFT manifested the most potent combination, with the number of total nucleated cells increasing by (893.3±52.1)-fold, total progenitor cells (CFC) by (74.5±5.2)-fold and CD34+ cells by 15.7-fold.Maximal expansions of CFC and CD34+ cells were observed at the end of the second week of culture. Within 14 days of culture, (78.1 ± 5.5)-fold and (57.0 ± 19.7)-fold increases in CFU-GM and BFU-E were obtained. Moreover, generation of LTC-IC from amplified CD34+ cells within 28 days was found only in two combinations, I.e. SCF+IL-3+FL+TPO and SCF+IL-3+HFT, and there was no significant difference between these two groups statistically. These results suggest that human umbilical cord blood CD34+ cells can be extensively expanded ex vivo by using gene transfected stromal cells along with cytokines.  相似文献   
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前言水稻主茎和分蘖的生理生化特性,在水稻营养和水稻生产上都有重大意义。有关主茎与分蘖间营养物质转移方面,目前国内外有许多研究成果。但目前为止,有关分蘖的增产效果,人们还没有得到一致的结论,在探讨主  相似文献   
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