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人类多能干细胞的稳健扩增:生物工艺设计与转录组学和代谢组学表征的整合

Robust Expansion of Human Pluripotent Stem Cells: Integration of Bioprocess Design With Transcriptomic and Metabolomic Characterization.

作者信息

Silva Marta M, Rodrigues Ana F, Correia Cláudia, Sousa Marcos F Q, Brito Catarina, Coroadinha Ana S, Serra Margarida, Alves Paula M

机构信息

iBET, Instituto de Biologia Experimental e Tecnológica, Oeiras, Portugal; Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Oeiras, Portugal.

iBET, Instituto de Biologia Experimental e Tecnológica, Oeiras, Portugal; Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Oeiras, Portugal

出版信息

Stem Cells Transl Med. 2015 Jul;4(7):731-42. doi: 10.5966/sctm.2014-0270. Epub 2015 May 15.

Abstract

UNLABELLED

: Human embryonic stem cells (hESCs) have an enormous potential as a source for cell replacement therapies, tissue engineering, and in vitro toxicology applications. The lack of standardized and robust bioprocesses for hESC expansion has hindered the application of hESCs and their derivatives in clinical settings. We developed a robust and well-characterized bioprocess for hESC expansion under fully defined conditions and explored the potential of transcriptomic and metabolomic tools for a more comprehensive assessment of culture system impact on cell proliferation, metabolism, and phenotype. Two different hESC lines (feeder-dependent and feeder-free lines) were efficiently expanded on xeno-free microcarriers in stirred culture systems. Both hESC lines maintained the expression of stemness markers such as Oct-4, Nanog, SSEA-4, and TRA1-60 and the ability to spontaneously differentiate into the three germ layers. Whole-genome transcriptome profiling revealed a phenotypic convergence between both hESC lines along the expansion process in stirred-tank bioreactor cultures, providing strong evidence of the robustness of the cultivation process to homogenize cellular phenotype. Under low-oxygen tension, results showed metabolic rearrangement with upregulation of the glycolytic machinery favoring an anaerobic glycolysis Warburg-effect-like phenotype, with no evidence of hypoxic stress response, in contrast to two-dimensional culture. Overall, we report a standardized expansion bioprocess that can guarantee maximal product quality. Furthermore, the "omics" tools used provided relevant findings on the physiological and metabolic changes during hESC expansion in environmentally controlled stirred-tank bioreactors, which can contribute to improved scale-up production systems.

SIGNIFICANCE

The clinical application of human pluripotent stem cells (hPSCs) has been hindered by the lack of robust protocols able to sustain production of high cell numbers, as required for regenerative medicine. In this study, a strategy was developed for the expansion of human embryonic stem cells in well-defined culture conditions using microcarrier technology and stirred-tank bioreactors. The use of transcriptomic and metabolic tools allowed detailed characterization of the cell-based product and showed a phenotypic convergence between both hESC lines along the expansion process. This study provided valuable insights into the metabolic hallmarks of hPSC expansion and new information to guide bioprocess design and media optimization for the production of cells with higher quantity and improved quality, which are requisite for translation to the clinic.

摘要

未标注

人类胚胎干细胞(hESCs)作为细胞替代疗法、组织工程和体外毒理学应用的细胞来源具有巨大潜力。缺乏用于hESC扩增的标准化且稳健的生物工艺阻碍了hESCs及其衍生物在临床环境中的应用。我们开发了一种在完全确定的条件下用于hESC扩增的稳健且特征明确的生物工艺,并探索了转录组学和代谢组学工具在更全面评估培养系统对细胞增殖、代谢和表型影响方面的潜力。两种不同的hESC系(依赖饲养层和无饲养层系)在搅拌培养系统中的无动物源微载体上高效扩增。两种hESC系均维持了干性标志物如Oct-4、Nanog、SSEA-4和TRA1-60的表达以及自发分化为三个胚层的能力。全基因组转录组分析揭示了在搅拌罐生物反应器培养的扩增过程中两种hESC系之间的表型趋同,为培养过程使细胞表型同质化的稳健性提供了有力证据。在低氧张力下,结果显示代谢重排,糖酵解机制上调,有利于类似无氧糖酵解沃伯格效应的表型,与二维培养相比,没有缺氧应激反应的证据。总体而言,我们报告了一种可保证最大产品质量的标准化扩增生物工艺。此外,所使用的“组学”工具提供了关于在环境控制的搅拌罐生物反应器中hESC扩增期间生理和代谢变化的相关发现,这有助于改进放大生产系统。

意义

人类多能干细胞(hPSCs)的临床应用因缺乏能够维持再生医学所需的高细胞数量生产的稳健方案而受到阻碍。在本研究中,开发了一种使用微载体技术和搅拌罐生物反应器在明确的培养条件下扩增人类胚胎干细胞的策略。转录组学和代谢工具的使用允许对基于细胞的产品进行详细表征,并显示了在扩增过程中两种hESC系之间的表型趋同。本研究为hPSC扩增的代谢特征提供了有价值的见解,并为指导生物工艺设计和培养基优化以生产数量更多、质量更高的细胞提供了新信息,这是转化到临床所必需的。

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