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Droplet Microfluidic Flow Cytometer for Sorting on Transient Cellular Responses of Genetically-Encoded Sensors

机译:液滴微流式细胞仪对遗传编码传感器的瞬时细胞反应进行分选

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摘要

Fluorescent biosensors are important measurement tools for in vivo quantification of pH, concentrations of metal ions and other analytes, and physical parameters such as membrane potential. Both the development of these sensors and their implementation in examining cellular heterogeneity requires technology for measuring and sorting cells based on the fluorescence levels before and after chemical or physical perturbations. We developed a droplet microfluidic platform for the screening and separation of cell populations on the basis of the in vivo response of expressed fluorescence-based biosensors after addition of an exogenous analyte. We demonstrate the capability to resolve the responses of two genetically-encoded Zn2+ sensors at a range of time points spanning several seconds and subsequently sort a mixed-cell population of varying ratios with high accuracy.
机译:荧光生物传感器是重要的测量工具,可用于体内量化pH,金属离子和其他分析物的浓度以及诸如膜电位之类的物理参数。这些传感器的开发及其在检查细胞异质性中的实现都需要基于化学或物理扰动前后基于荧光水平测量和分类细胞的技术。我们在添加外源分析物后,基于表达的基于荧光的生物传感器的体内反应,开发了用于筛选和分离细胞群体的微滴微流控平台。我们展示了解决两个遗传编码的Zn 2 + 传感器在几秒钟的时间范围内响应的能力,并随后以高精度对不同比例的混合细胞群体进行了分类。

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