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Characterization of the cell growth analysis for detection of immortal cellular impurities in human mesenchymal stem cells

机译:用于检测人间充质干细胞中永生细胞杂质的细胞生长分析的特性

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The analysis of in vitro cell senescence/growth after serial passaging can be one of ways to show the absence of immortalized cells, which are frequently tumorigenic, in human cell-processed therapeutic products (hCTPs). However, the performance of the cell growth analysis for detection of the immortalized cellular impurities has never been evaluated. In the present study, we examined the growth rates of human mesenchymal stem cells (hMSCs, passage 5 (P = 5)) contaminated with various doses of HeLa cells, and compared with that of hMSCs alone. The growth rates of the contaminated hMSCs were comparable to that of hMSCs alone at P = 5, but significantly increased at P = 6 (0.1% and 0.01% HeLa) or P = 7 (0.001% HeLa) within 30 days. These findings suggest that the cell growth analysis is a simple and sensitive method to detect immortalized cellular impurities in hCTPs derived from human somatic cells. (C) 2014 The Authors. Published by Elsevier Ltd on behalf of The International Alliance for Biological Standardization.
机译:连续传代后体外细胞衰老/生长的分析可能是显示在人类细胞加工的治疗产品(hCTP)中没有永生化细胞的途径之一,而永生化细胞通常是致癌的。但是,从未评估过用于检测永生化细胞杂质的细胞生长分析的性能。在本研究中,我们检查了受不同剂量HeLa细胞污染的人间充质干细胞(hMSCs,第5代(P = 5))的生长速率,并将其与单独的hMSC进行了比较。受污染的hMSC的生长速率在P = 5时与单独的hMSC相当,但在30天之内在P = 6(0.1%和0.01%HeLa)或P = 7(0.001%HeLa)时显着增加。这些发现表明,细胞生长分析是一种简单而灵敏的方法,可检测源自人体细胞的hCTP中永生化的细胞杂质。 (C)2014作者。由Elsevier Ltd代表国际生物标准化联盟出版。

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