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Multicolor Fluorescence Detection-Based Microfluidic Device for Single-Cell Metabolomics: Simultaneous Quantitation of Multiple Small Molecules in Primary Liver Cells

机译:基于多色荧光检测的单细胞代谢组学微流控设备:同时定量原代肝细胞中的多个小分子。

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摘要

Single-cell metabolomics can be used to study cell diversity and how cells respond to environment. There is an urgent need to develop effective detection. methods for single-cell metabolomics. Microchip electrophoresis with laser-induced fluorescence detection (MCE-LIFD) is a powerful tool to detect metabolites at the single-cell level. However, the existing one-laser excitation and one-color fluorescence collection in MCE-LIFD is not sufficient for the simultaneous detection of multiple small molecules with wide variations in their fluorescence excitation and emission spectra. In this manuscript, we describe a multicolor fluorescence detection-based microfluidic device (MFD-MD) for single-cell metabolomics research. We selected primary liver cells from acute ethanol stimulated mice as the model cells and hydrogen peroxide (H2O2), glutathione (GSH), and cysteine (Cys) as representative small-molecule metabolites for single-cell analysis. The microfluidic chip enabled accurate single-cell manipulation and effective electrophoresis separation. The new multicolor fluorescence detection permitted simultaneous analysis of H2O2 GSH, and Cys. Ethanol exposure induced an increase in H2O2 and a decrease in GSH and Cys. Obvious cell heterogeneity was observed. These results provide insights regarding the intracellular oxidative/antioxidative molecular mechanism in response to external stimuli. The MFD-MD provides a new opportunity for simultaneous single-cell analysis of multiple metabolites.
机译:单细胞代谢组学可用于研究细胞多样性以及细胞对环境的反应。迫切需要开发有效的检测方法。单细胞代谢组学方法。带有激光诱导荧光检测(MCE-LIFD)的微芯片电泳是检测单细胞水平代谢物的强大工具。然而,MCE-LIFD中现有的单激光激发和单色荧光收集不足以同时检测荧光激发和发射光谱变化很大的多个小分子。在此手稿中,我们描述了一种用于单细胞代谢组学研究的基于多色荧光检测的微流体装置(MFD-MD)。我们从急性乙醇刺激的小鼠中选择原代肝细胞作为模型细胞,过氧化氢(H2O2),谷胱甘肽(GSH)和半胱氨酸(Cys)作为代表性小分子代谢物进行单细胞分析。微流控芯片可实现精确的单细胞操作和有效的电泳分离。新的多色荧光检测允许同时分析H2O2 GSH和Cys。乙醇暴露导致H2O2升高,GSH和Cys降低。观察到明显的细胞异质性。这些结果提供了有关响应外部刺激的细胞内氧化/抗氧化分子机制的见解。 MFD-MD为同时进行多种代谢物的单细胞分析提供了新的机会。

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