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High-Throughput Multiparameter Analysis of Individual Mitochondria

机译:单个线粒体的高通量多参数分析

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Mitochondria are one of the most important organelles responsible for cellular energy metabolism and apoptosis regulation. However, single-mitochondrion analysis is challenging, because of their small sizes and the low content of organelle constituents. Here, we report the development of a sensitive and versatile platform for high-throughput multiparameter analysis of individual mitochondria. Employing specific fluorescent staining with a laboratory-built high-sensitivity flow cytometer (HSFCM), we demonstrate the simultaneous detection of side scatter, cardiolipin, and mitochondria DNA (mtDNA) of a single mitochondrion. Simultaneous measurements of side scatter, porin, and cytochrome c of individual mitochondria are reported for the first time. Correlation analysis among multiple attributes on an organelle-by-organelle basis could provide a more definitive assessment of the purity, structure integrity, and apoptosis-related proteins of isolated mitochondria than bulk measurement. This work represents a significant advancement in single-mitochondrion analysis. We believe that the HSFCM holds great potential for studying apoptotic signal transduction pathways at the single-mitochondrion level.
机译:线粒体是负责细胞能量代谢和细胞凋亡调节的最重要的细胞器之一。但是,单线粒体分析具有挑战性,因为其体积小且细胞器成分含量低。在这里,我们报告了用于单个线粒体高通量多参数分析的灵敏,多功能平台的开发。利用实验室内置的高灵敏度流式细胞仪(HSFCM)进行特异性荧光染色,我们证明了单个线粒体的侧向散射,心磷脂和线粒体DNA(mtDNA)的同时检测。首次报道了单个线粒体的侧向散射,孔蛋白和细胞色素c的同时测量。与单个细胞器相比,基于细胞器的多个属性之间的相关性分析可以更准确地评估线粒体的纯度,结构完整性和凋亡相关蛋白。这项工作代表了单线粒体分析的重大进步。我们相信,HSFCM在研究单线粒体水平的细胞凋亡信号转导途径方面具有巨大潜力。

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