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Optically enhanced acoustophoresis

机译:光学增强声泳

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Regenerative medicine has the capability to revolutionise many aspects of medical care, but for it to make the step from small scale autologous treatments to larger scale allogeneic approaches, robust and scalable label free cell sorting technologies are needed as part of a cell therapy bioprocessing pipeline. In this proceedings we describe several strategies for addressing the requirements for high throughput without labeling via: dimensional scaling, rare species targeting and sorting from a stable state. These three approaches are demonstrated through a combination of optical and ultrasonic forces. By combining mostly conservative and non-conservative forces from two different modalities it is possible to reduce the influence of flow velocity on sorting efficiency, hence increasing robustness and scalability. One such approach can be termed "optically enhanced acoustophoresis" which combines the ability of acoustics to handle large volumes of analyte with the high specificity of optical sorting.
机译:再生医学具有革新医学护理许多方面的能力,但是要使其从小规模自体治疗迈向更大规模的异体治疗方法,作为细胞疗法生物处理流程的一部分,需要强大且可扩展的无标签细胞分类技术。在此程序中,我们描述了几种无需标签即可解决高吞吐量需求的策略:尺寸缩放,稀有物种定位和从稳定状态分类。通过光学和超声力的结合展示了这三种方法。通过将来自两种不同模式的保守力和非保守力进行组合,可以减少流速对分选效率的影响,从而提高鲁棒性和可扩展性。一种这样的方法可以被称为“光学增强的声泳”,其将声学处理大量分析物的能力与光学分选的高特异性结合在一起。

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