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Increasing label-free stem cell sorting capacity to reach transplantation-scale throughput

机译:增加无标记干细胞分选能力以达到移植规模的通量

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摘要

Dielectrophoresis (DEP) has proven an invaluable tool for the enrichment of populations of stem and progenitor cells owing to its ability to sort cells in a label-free manner and its biological safety. However, DEP separation devices have suffered from a low throughput preventing researchers from undertaking studies requiring large numbers of cells, such as needed for cell transplantation. We developed a microfluidic device designed for the enrichment of stem and progenitor cell populations that sorts cells at a rate of 150,000 cells/h, corresponding to an improvement in the throughput achieved with our previous device designs by over an order of magnitude. This advancement, coupled with data showing the DEP-sorted cells retain their enrichment and differentiation capacity when expanded in culture for periods of up to 2 weeks, provides sufficient throughput and cell numbers to enable a wider variety of experiments with enriched stem and progenitor cell populations. Furthermore, the sorting devices presented here provide ease of setup and operation, a simple fabrication process, and a low associated cost to use that makes them more amenable for use in common biological research laboratories. To our knowledge, this work represents the first to enrich stem cells and expand them in culture to generate transplantation-scale numbers of differentiation-competent cells using DEP.
机译:介电电泳(DEP)由于其以无标记方式分选细胞的能力及其生物学安全性,已被证明是富集干细胞和祖细胞群体的宝贵工具。然而,DEP分离装置的通量低,妨碍了研究人员进行需要大量细胞的研究,例如细胞移植所需的细胞。我们开发了一种用于富集干细胞和祖细胞群体的微流控设备,该设备以150,000个细胞/小时的速度分选细胞,这对应于我们以前的设备设计所实现的吞吐量提高了一个数量级。这项进展以及数据显示,经过DEP分选的细胞在培养中扩增长达2周时,仍保持了其富集和分化能力,从而提供了足够的通量和细胞数量,从而能够进行更多有关富集的干细胞和祖细胞的实验。此外,这里介绍的分类设备提供了易于设置和操作,简单的制造过程以及较低的使用相关联的成本,这使其更适合在普通的生物学研究实验室中使用。据我们所知,这项工作代表了第一个富集干细胞并在培养中扩增干细胞,以使用DEP产生具有移植能力的分化能力细胞的数量。

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