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Sensitivity of human pluripotent stem cells to insulin precipitation induced by peristaltic pump-based medium circulation: considerations on process development

机译:人多能干细胞对基于蠕动泵的介质循环诱导的胰岛素沉淀的敏感性:对工艺开发的考虑

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摘要

Controlled large-scale production of human pluripotent stem cells (hPSCs) is indispensable for their envisioned clinical translation. Aiming at advanced process development in suspension culture, the sensitivity of hPSC media to continuous peristaltic pump-based circulation, a well-established technology extensively used in hydraulically-driven bioreactors, was investigated. Unexpectedly, conditioning of low protein media (i.e. E8 and TeSR-E8) in a peristaltic pump circuit induced severe viability loss of hPSCs cultured as aggregates in suspension. Optical, biochemical, and cytological analyses of the media revealed that the applied circulation mode resulted in the reduction of the growth hormone insulin by precipitation of micro-sized particles. Notably, in contrast to insulin depletion, individual withdrawal of other medium protein components (i.e. bFGF, TGFβ1 or transferrin) provoked minor reduction of hPSC viability, if any. Supplementation of the surfactant glycerol or the use of the insulin analogue Aspart did not overcome the issue of insulin precipitation. In contrast, the presence of bovine or human serum albumin (BSA or HSA, respectively) stabilized insulin rescuing its content, possibly by acting as molecular chaperone-like protein, ultimately supporting hPSC maintenance. This study highlights the potential and the requirement of media optimization for automated hPSC processing and has broad implications on media development and bioreactor-based technologies.
机译:人多能干细胞(hPSC)的大规模大规模生产对于其预想的临床翻译是必不可少的。针对悬浮培养中的先进工艺开发,研究了hPSC培养基对基于蠕动泵的连续循环的敏感性,该技术已广泛应用于液压驱动生物反应器中。出乎意料的是,蠕动泵回路中低蛋白培养基(即E8和TeSR-E8)的调节导致悬浮培养的hPSC严重丧失活力。培养基的光学,生化和细胞学分析表明,所应用的循环模式通过微尺寸颗粒的沉淀导致生长激素胰岛素的减少。值得注意的是,与胰岛素耗竭相反,其他中蛋白成分(即bFGF,TGFβ1或转铁蛋白)的单独撤回导致hPSC生存力的轻微降低(如果有)。补充表面活性剂甘油或使用胰岛素类似物Aspart不能克服胰岛素沉淀的问题。相反,牛或人血清白蛋白(分别为BSA或HSA)的存在可能通过充当分子伴侣样蛋白来稳定胰岛素,以恢复其含量,最终支持hPSC的维持。这项研究突出了自动化hPSC处理的媒体优化的潜力和要求,并且对媒体开发和基于生物反应器的技术具有广泛的意义。

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