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首页> 外文期刊>Cell and Tissue Research >Human platelet lysate as a fetal bovine serum substitute improves human adipose-derived stromal cell culture for future cardiac repair applications
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Human platelet lysate as a fetal bovine serum substitute improves human adipose-derived stromal cell culture for future cardiac repair applications

机译:人血小板裂解物作为胎牛血清的替代品可改善人脂肪来源的基质细胞培养物,以用于未来的心脏修复应用

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摘要

Adipose-derived stromal cells (ASC) are promising candidates for cell therapy, for example to treat myocardial infarction. Commonly, fetal bovine serum (FBS) is used in ASC culturing. However, FBS has several disadvantages. Its effects differ between batches and, when applied clinically, transmission of pathogens and antibody development against FBS are possible. In this study, we investigated whether FBS can be substituted by human platelet lysate (PL) in ASC culture, without affecting functional capacities particularly important for cardiac repair application of ASC. We found that PL-cultured ASC had a significant 3-fold increased proliferation rate and a significantly higher attachment to tissue culture plastic as well as to endothelial cells compared with FBS-cultured ASC. PL-cultured ASC remained a significant 25% smaller than FBS-cultured ASC. Both showed a comparable surface marker profile, with the exception of significantly higher levels of CD73, CD90, and CD166 on PL-cultured ASC. PL-cultured ASC showed a significantly higher migration rate compared with FBS-cultured ASC in a transwell assay. Finally, FBS- and PL-cultured ASC had a similar high capacity to differentiate towards cardiomyocytes. In conclusion, this study showed that culturing ASC is more favorable in PL-supplemented medium compared with FBS-supplemented medium.
机译:脂肪来源的基质细胞(ASC)是用于细胞治疗(例如治疗心肌梗塞)的有前途的候选药物。通常,胎牛血清(FBS)用于ASC培养。但是,FBS有几个缺点。批次之间的效果不同,并且在临床上应用时,可能会传播病原体和针对FBS的抗体发展。在这项研究中,我们调查了FBS是否可以在ASC培养物中被人血小板裂解液(PL)取代,而不影响对ASC心脏修复应用特别重要的功能能力。我们发现,与FBS培养的ASC相比,PL培养的ASC的增殖速率显着提高了3倍,并且对组织培养塑料以及内皮细胞的附着也明显更高。 PL培养的ASC仍比FBS培养的ASC小25%。两者均显示出可比较的表面标记图谱,但在PL培养的ASC上CD73,CD90和CD166的水平明显较高。在Transwell分析中,与FBS培养的ASC相比,PL培养的ASC显示出明显更高的迁移率。最后,FBS和PL培养的ASC具有类似的向心肌细胞分化的高能力。总之,这项研究表明,与添加FBS的培养基相比,在添加PL的培养基中培养ASC更有利。

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