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Utilization of microparticles in next-generation assays for microflow cytometers

机译:微粒在新一代微流式细胞仪检测中的利用

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摘要

Micron-sized particles have primarily been used in microfabricated flow cytometers for calibration purposes and proof-of-concept experiments. With increasing frequency, microparticles are serving as a platform for assays measured in these small analytical devices. Light scattering has been used to measure the agglomeration of antibodycoated particles in the presence of an antigen. Impedance detection is another technology being integrated into microflow cytometers for microparticle-based assays. Fluorescence is the most popular detection method in flow cytometry, enabling highly sensitive multiplexed assays. Finally, magnetic particles have also been used to measure antigen levels using a magnetophoretic micro-device. We review the progress of microparticle-based assays in microflow cytometry in terms of the advantages and limitations of each approach.
机译:微米大小的颗粒主要用于微型流式细胞仪中,用于校准目的和概念验证实验。随着频率的增加,微粒正成为在这些小型分析设备中进行测定的平台。光散射已经用于在抗原存在下测量抗体包被的颗粒的团聚。阻抗检测是集成到微流式细胞仪中的另一项技术,用于基于微粒的检测。荧光是流式细胞术中最流行的检测方法,可进行高度灵敏的多重测定。最后,磁性粒子也已被用于使用磁致微器件来测量抗原水平。我们就每种方法的优点和局限性,回顾了微流式细胞术中基于微粒的检测方法的进展。

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