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Concise Review: Microfluidic Technology Platforms: Poised to Accelerate Development and Translation of Stem Cell-Derived Therapies

机译:简要评论:微流控技术平台:有望加速干细胞衍生疗法的开发和翻译

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Stem cells are a powerful resource for producing a variety of cell types with utility in clinically associated applications, including preclinical drug screening and development, disease and developmental modeling, and regenerative medicine. Regardless of the type of stem cell, substantial barriers to clinical translation still exist and must be overcome to realize full clinical potential. These barriers span processes including cell isolation, expansion, and differentiation; purification, quality control, and therapeutic efficacy and safety; and the economic viability of bioprocesses for production of functional cell products. Microfluidic systems have been developed for a myriad of biological applications and have the intrinsic capability of controlling and interrogating the cellular microenvironment with unrivalled precision; therefore, they have particular relevance to overcoming such barriers to translation. Development of microfluidic technologies increasingly utilizes stem cells, addresses stem cell-relevant biological phenomena, and aligns capabilities with translational challenges and goals. In this concise review, we describe how microfluidic technologies can contribute to the translation of stem cell research outcomes, and we provide an update on innovative research efforts in this area. This timely convergence of stem cell translational challenges and microfluidic capabilities means that there is now an opportunity for both disciplines to benefit from increased interaction.
机译:干细胞是产生各种细胞类型的强大资源,可用于临床相关应用,包括临床前药物筛选和开发,疾病和发育模型以及再生医学。无论干细胞的类型如何,临床翻译的实质性障碍仍然存在,必须克服这些障碍才能充分发挥临床潜力。这些障碍跨越包括细胞分离,扩增和分化的过程。纯化,质量控制以及治疗效果和安全性;以及生产功能性细胞产品的生物工艺的经济可行性。微流控系统已被开发用于多种生物学应用,并具有以无与伦比的精度控制和询问细胞微环境的内在能力。因此,它们与克服此类翻译障碍特别相关。微流体技术的发展越来越多地利用干细胞,解决与干细胞有关的生物学现象,并使功能与翻译挑战和目标保持一致。在这篇简明的综述中,我们描述了微流体技术如何促进干细胞研究成果的翻译,并提供了该领域创新研究成果的最新信息。干细胞翻译挑战和微流体能力的及时融合意味着这两个学科现在都有机会从增加的相互作用中受益。

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