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Photoacoustic-fluorescence in vitro flow cytometry for quantification of absorption, scattering and fluorescence properties of the cells

机译:光声荧光体外流式细胞术定量细胞的吸收,散射和荧光特性

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Fluorescence flow cytometry is a well-established analytical tool that provides quantification of multiple biological parameters of cells at molecular levels, including their functional states, morphology, composition, proliferation, and protein expression. However, only the fluorescence and scattering parameters of the cells or labels are available for detection. Cell pigmentation, presence of non-fluorescent dyes or nanoparticles cannot be reliably quantified. Herewith, we present a novel photoacoustic (PA) flow cytometry design for simple integration of absorbance measurements into schematics of conventional in vitro flow cytometers. The integrated system allow simultaneous measurements of light absorbance, scattering and of multicolor fluorescence from single cells in the flow at rates up to 2 m/s. We compared various combinations of excitation laser sources for multicolor detection, including simultaneous excitation of PA and fluorescence using a single 500 kHz pulsed nanosecond laser. Multichannel detection scheme allows simultaneous detection of up to 8 labels, including 4 fluorescent tags and 4 PA colors. In vitro PA-fluorescence flow cytometer was used for studies of nanoparticles uptake and for the analysis of cell line pigmentation, including genetically encoded melanin expression in breast cancer cell line. We demonstrate that this system can be used for direct nanotoxicity studies with simultaneous quantification of nanoparticles content and assessment of cell viability using a conventional fluorescent apoptosis assays.
机译:荧光流式细胞术是一种完善的分析工具,可在分子水平上量化细胞的多个生物学参数,包括其功能状态,形态,组成,增殖和蛋白质表达。但是,只有细胞或标记物的荧光和散射参数可用于检测。细胞色素沉着,非荧光染料或纳米粒子的存在无法可靠地量化。因此,我们提出了一种新颖的光声(PA)流式细胞仪设计,用于将吸光度测量值简单集成到常规体外流式细胞仪的示意图中。集成系统允许同时测量流量中单个细胞的光吸收,散射和多色荧光,速率高达2 m / s。我们比较了用于多色检测的激发激光源的各种组合,包括使用单个500 kHz脉冲纳秒激光同时激发PA和荧光。多通道检测方案允许同时检测多达8个标签,包括4个荧光标签和4种PA颜色。体外PA荧光流式细胞仪用于研究纳米颗粒的摄取和分析细胞系色素沉着,包括基因编码的黑色素在乳腺癌细胞系中的表达。我们证明了该系统可用于直接的纳米毒性研究,同时使用常规的荧光凋亡测定法对纳米颗粒含量进行定量和细胞活力评估。

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