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Microfluidic flow cytometer for quantifying photobleaching of fluorescent proteins in cells

机译:微流体流式细胞仪在细胞定量荧光蛋白的光漂白

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摘要

Traditional flow cytometers are capable of rapid cellular assays on the basis of fluorescence intensity and light scatter. Microfluidic flow cytometers have largely followed the same path of technological development as their traditional counterparts, however the significantly smaller transport distance and resulting lower cell speeds in microchannels provides for the opportunity to detect novel spectroscopic signatures based on multiple, non-temporally-coincident excitation beams. Here, we characterize the design and operation of a cytometer with a 3-beam, probe/bleach/probe geometry, employing HeLa suspension cells expressing fluorescent proteins. The data collection rate exceeds 20 cells/s under a range of beam intensities (5 kW – 179 kW/cm2). The measured percent photobleaching (ratio of fluorescence intensities excited by the first and third beams: Sbeam3/Sbeam1) partially resolves a mixture of four red fluorescent proteins in mixed samples. Photokinetic simulations are presented and demonstrate that the percent photobleaching reflects a combination of the reversible and irreversible photobleaching kinetics. By introducing a photobleaching optical signature, which complements traditional fluorescence intensity-based detection, this method adds another dimension to multi-channel fluorescence cytometry, and provides a means for flow-cytometry-based screening of directed libraries of fluorescent protein photobleaching.
机译:传统流式细胞计能够基于荧光强度和光散射快速细胞测定。微流体流式细胞计在很大程度上遵循与传统的对应物的技术开发的相同路径,然而,微通道的显着较小的运输距离和导致较低的细胞速度提供了基于多个非时间重合激发束来检测新型光谱签名的机会。这里,我们表征具有三梁,探针/漂白/探针几何形状的细胞仪的设计和操作,采用表达荧光蛋白的HeLa悬浮细胞。数据收集率在一系列光束强度(5 kW - 179kW / cm 2 )范围内超过20个单元/ s。测量的百分比光漂白(第一和第三光束激发的荧光强度比:SBeam3 / Sbeam1)部分地分解了混合样品中的四个红色荧光蛋白的混合物。提出了光电模拟,并证明了光博百分比反映了可逆和不可逆的光漂白动力学的组合。通过引入重写基于传统荧光强度的检测的光漂白光学签名,该方法对多通道荧光细胞术添加了另一种尺寸,并提供了一种基于流式蛋白质光漂白的流动细胞计量筛选的方法。

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