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A comprehensive study on optimization of proliferation and differentiation potency of bone marrow derived mesenchymal stem cells under prolonged culture condition

机译:长期培养条件下优化骨髓源间充质干细胞增殖和分化能力的综合研究

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摘要

Bone marrow derived stem cells (BMSC) have paved way to clinical approaches for its utilization in a variety of diseases due to its ease of isolation combined with its multilineage differentiation capacity. However, the applicability of BMSC is not successful due to the lesser number of nucleated cells obtained from large samples. Hence, culture expansion of BMSC is a prerequisite, as high numbers of stem cells are needed to meet the standards of clinical advancement. There are attempts on optimizing culture condition for large scale production of BMSC. It was believed that, prolonged culture of BMSC is difficult since they tend to lose their characteristics and differentiation potential. Hence, our study aims to determine whether BMSCs could retain its proliferative and differentiation capacity in prolonged in vitro culture by a comparative study on extensive culturing of BMSC with the following four media, DMEM LG (DMEM-Low Glucose), DMEM KO (DMEM-Knock Out), Alpha MEM (Alpha Minimal Essential Medium), DMEM F 12. We found that two samples among the three cultured tend to lose their property in long term culturing. Besides, we also found that DMEM LG and Alpha MEM were the optimal media for in vitro culturing of BMSC. Overall, it was concluded that BMSC can be cultured until passage 15 without losing its characteristics. However, its potency beyond passage 15 has to be further elucidated for utilization of the ex vivo expanded BMSC for subsequent cellular therapies.
机译:骨髓来源的干细胞(BMSC)由于其易于分离且具有多系分化能力,因此已在多种疾病中得到了广泛应用。但是,由于从大样品中获得的有核细胞数量较少,因此BMSC的适用性并不成功。因此,BMSC的培养扩增是前提条件,因为需要大量的干细胞来满足临床发展的标准。有尝试优化培养条件以大规模生产BMSC。据信,由于BMSC倾向于失去其特性和分化潜能,因此难以长期培养。因此,我们的研究旨在通过对DMSC LG(DMEM-Low Glucose),DMEM KO(DMEM-D)和以下四种培养基进行广泛培养的比较研究,确定BMSCs是否可以在长时间的体外培养中保留其增殖和分化能力。敲除),Alpha MEM(Alpha最小必需培养基),DMEM F12。我们发现,在长期培养中,三种培养物中的两种倾向于失去其特性。此外,我们还发现DMEM LG和Alpha MEM是BMSC体外培养的最佳培养基。总的来说,可以得出结论,BMSC可以培养到第15代,而不会失去其特性。然而,必须进一步阐明其在第15代之后的效力,以用于体外扩增的BMSC用于随后的细胞治疗。

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