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Low serum and serum-free culture of multipotential human adipose stem cells

机译:低潜能和无潜能人类多能脂肪干细胞培养

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Background Adipose tissue provides an easily, accessible and abundant source of putative stem cells for translational clinical research. Currently prevalent culture techniques include the use of FBS, a highly variable and undefined component, which brings with it the potential for adverse patient reactions. In an effort to eliminate the use of animal products in human adipose stem cell (ASC) cultures, we have developed two new culture methods, a very low human serum expansion medium and a completely serum-free medium. Methods Through serial testing, a highly enriched medium formulation was developed for use with and without the addition of 0.5% human serum, an amount easily obtainable from autologous blood draws. Results Very low-serum culture yielded population-doubling times averaging 1.86 days in early passage, while the serum-free formulation was associated with less robust cell growth, with doubling times averaging 5.79 days. ASC in both conditions maintained its ability to differentiate into adipo-, chondro- and osteogenic lineages in vitro, despite lower expression of CD34 in early passage. Expression of ALDH, HLA, CD133, CD184, and CD31 was comparable with that seen in cells cultured in 10% FBS. Discussion These newly developed culture conditions provide a unique environment within which to study ASCs without the interference of animal serum, and allow for the rapid expansion of autologous ASCs in culture in an animal product-free environment for use in human clinical trials.
机译:背景技术脂肪组织为翻译临床研究提供了一个容易,可及且丰富的推定干细胞来源。当前流行的培养技术包括使用FBS,FBS是一种高度可变且不确定的成分,这带来了患者不良反应的可能性。为了避免在人类脂肪干细胞(ASC)培养物中使用动物产品,我们开发了两种新的培养方法:极低的人血清扩增培养基和完全无血清的培养基。方法通过系列测试,开发了一种高浓缩培养基配方,可在添加和不添加0.5%人血清的情况下使用,该量很容易从自体抽血中获得。结果极低血清培养在早期传代中的种群倍增时间平均为1.86天,而无血清制剂与较弱的细胞生长相关,其倍数平均为5.79天。尽管在早期传代中CD34的表达较低,但在两种情况下,ASC都可以在体外保持分化为成脂,成软骨和成骨谱系的能力。 ALDH,HLA,CD133,CD184和CD31的表达与在10%FBS中培养的细胞中的表达相当。讨论这些新开发的培养条件提供了一个独特的环境,可以在其中研究ASC,而不会受到动物血清的干扰,并且可以在无动物产品的环境中快速培养自体ASC,以用于人类临床试验。

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