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Laser-Based Propagation of Human iPS and ES Cells Generates Reproducible Cultures with Enhanced Differentiation Potential

机译:基于激光的人IP和ES细胞的传播产生具有增强的分化潜力的可重复培养物

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Proper maintenance of stem cells is essential for successful utilization of ESCs/iPSCs as tools in developmental and drug discovery studies and in regenerative medicine. Standardization is critical for all future applications of stem cells and necessary to fully understand their potential. This study reports a novel approach for the efficient, consistent expansion of human ESCs and iPSCs using laser sectioning, instead of mechanical devices or enzymes, to divide cultures into defined size clumps for propagation. Laser-mediated propagation maintained the pluripotency, quality, and genetic stability of ESCs/iPSCs and led to enhanced differentiation potential. This approach removes the variability associated with ESC/iPSC propagation, significantly reduces the expertise, labor, and time associated with manual passaging techniques and provides the basis for scalable delivery of standardized ESC/iPSC lines. Adoption of standardized protocols would allow researchers to understand the role of genetics, environment, and/or procedural effects on stem cells and would ensure reproducible production of stem cell cultures for use in clinical/therapeutic applications.
机译:适当维持干细胞对于成功利用ESC / IPSC作为发育和药物发现研究和再生医学的工具至关重要。标准化对于干细胞的所有未来应用以及完全理解其潜力的必要性至关重要。本研究报告了使用激光切片代替机械装置或酶的人体ESC和IPSC的有效,一致扩展的新方法,以将培养物分成定义的尺寸块以进行繁殖。激光介导的传播保持了ESC / IPSCS的多能性,质量和遗传稳定性,并导致了增强的分化势。该方法消除了与ESC / IPSC传播相关的可变性,显着降低了与手动传递技术相关的专业知识,劳动力和时间,并为标准化ESC / IPSC线路提供可扩展传送的基础。通过标准化议定书将允许研究人员了解遗传,环境和/或程序效果对干细​​胞的作用,并确保用于临床/治疗应用的干细胞培养物的可重复生产。

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