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首页> 外文期刊>BMC Biotechnology >Effect of different freezing rates during cryopreservation of rat mesenchymal stem cells using combinations of hydroxyethyl starch and dimethylsulfoxide
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Effect of different freezing rates during cryopreservation of rat mesenchymal stem cells using combinations of hydroxyethyl starch and dimethylsulfoxide

机译:羟乙基淀粉和二甲亚砜联合冷冻保存大鼠间充质干细胞过程中不同冷冻速率的影响

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Background Mesenchymal stem cells (MSCs) are increasingly used as therapeutic agents as well as research tools in regenerative medicine. Development of technologies which allow storing and banking of MSC with minimal loss of cell viability, differentiation capacity, and function is required for clinical and research applications. Cryopreservation is the most effective way to preserve cells long term, but it involves potentially cytotoxic compounds and processing steps. Here, we investigate the effect of decreasing dimethyl sulfoxide ( DMSO ) concentrations in cryosolution by substituting with hydroxyethyl starch (HES) of different molecular weights using different freezing rates. Post-thaw viability, phenotype and osteogenic differentiation capacity of MSCs were analysed. Results The study confirms that, for rat MSC, cryopreservation effects need to be assessed some time after, rather than immediately after thawing. MSCs cryopreserved with HES maintain their characteristic cell surface marker expression as well as the osteogenic, adipogenic and chondrogenic differentiation potential. HES alone does not provide sufficient cryoprotection for rat MSCs, but provides good cryoprotection in combination with DMSO , permitting the DMSO content to be reduced to 5%. There are indications that such a combination would seem useful not just for the clinical disadvantages of DMSO but also based on a tendency for reduced osteogenic differentiation capacity of rat MSC cryopreserved with high DMSO concentration. HES molecular weight appears to play only a minor role in its capacity to act as a cryopreservation solution for MSC. The use of a ‘straight freeze’ protocol is no less effective in maintaining post-thaw viability of MSC compared to controlled rate freezing methods. Conclusion A 5% DMSO / 5% HES solution cryopreservation solution using a ‘straight freeze’ approach can be recommended for rat MSC.
机译:背景间充质干细胞(MSCs)越来越多地用作再生医学中的治疗剂和研究工具。对于临床和研究应用,需要开发允许以最小的细胞生存力,分化能力和功能损失的方式储存和储存MSC的技术。冷冻保存是长期保存细胞的最有效方法,但是它涉及潜在的细胞毒性化合物和加工步骤。在这里,我们研究了通过使用不同的冷冻速率用不同分子量的羟乙基淀粉(HES)替代降低冷冻溶液中二甲基亚砜(DMSO)浓度的效果。分析了MSC的解冻后活力,表型和成骨分化能力。结果研究证实,对于大鼠MSC,需要在解冻后的某个时间而不是立即解冻后评估冷冻保存效果。冷冻保存有HES的MSC保持其特征性的细胞表面标志物表达以及成骨,成脂和成软骨分化潜能。单独的HES不能为大鼠MSC提供足够的冷冻保护,但与DMSO结合可以提供良好的冷冻保护,从而使DMSO含量降低到5%。有迹象表明,这种组合似乎不仅对DMSO的临床缺点有用,而且还基于以高DMSO浓度冷冻保存的大鼠MSC的成骨分化能力降低的趋势。 HES分子量似乎在充当MSC冷冻保存溶液的能力中仅扮演次要角色。与控制速率冷冻方法相比,使用“直接冷冻”协议在保持MSC解冻后活力方面同样有效。结论对于大鼠MSC,建议使用“直接冷冻”方法的5%DMSO / 5%HES溶液冷冻保存溶液。

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