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Endogenous fluorescence lifetime of viable cells by flow cytometry

机译:流式细胞仪检测活细胞的内源性荧光寿命

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Autofluorescence emission is commonly measured in flow cytometry and is used as a negative control in protocols that explore binding of exogenous fluorophores to cell receptors or other targets of interest. The presence of intrinsic fluorophores however may burden complex cytometry applications. For example it may be difficult to resolve fluorescence signals from multi-intensity and multi-color measurements when the de-convolved fluorescence in question falls close to the autofluorescence background. One possible solution to intensity and spectral overlap problems in flow cytometry is to acquire fluorescence decay kinetic measurements. To this end we focus on advancing time-dependent flow cytometry and conduct measurements of endogenous fluorescence lifetime. Instrument developments to a phase-sensitive flow cytometry (PSFC) system were coupled with lifetime measurements of intrinsic fluorophores from viable cell samples. The average lifetime of >300,000 individual rat fibroblast cells was measured at discrete wavelengths ranging from 457- to 785-nm using a 10-MHz intensity-modulated excitation beam. AC amplitude, DC, and phase-shift were resolved and the average lifetime from excitable endogenous species was measured. The lifetime results ranged from 1- to 6-ns over the broad spectral range. Cataloging lifetime values prefaces the use of phase-sensitive techniques in more complex systems and provides a priori measurements necessary for PSFC filtering known lifetime signals from Raman, or other emission and scattering events.
机译:自体荧光发射通常在流式细胞仪中测量,并在探索外源荧光团与细胞受体或其他目标靶标结合的方案中用作阴性对照。但是,固有荧光团的存在可能会给复杂的细胞计数应用带来负担。例如,当所讨论的去卷积荧光接近自发荧光背景时,可能难以从多强度和多色测量中解析荧光信号。解决流式细胞仪中强度和光谱重叠问题的一种可能方法是获取荧光衰减动力学测量值。为此,我们专注于推进时间依赖性流式细胞仪并进行内源性荧光寿命的测量。相敏流式细胞仪(PSFC)系统的仪器开发与活细胞样品中固有荧光团的寿命测量相结合。使用10 MHz强度调制的激发光束,在457至785 nm的离散波长范围内测量了300,000多个大鼠成纤维细胞的平均寿命。解决了交流幅度,直流和相移问题,并测量了可激发内生物种的平均寿命。在较宽的光谱范围内,寿命结果范围为1 ns至6 ns。归类寿命值是在更复杂的系统中使用相敏技术的先驱,并提供了PSFC过滤拉曼已知寿命信号或其他发射和散射事件所需的先验测量。

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