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线粒体特性的流式细胞术定量分析:一种用于单细胞器分析的高通量方法。

Flow Cytometric Quantification of Mitochondrial Properties: A High-Throughput Approach for Single Organelle Analysis.

作者信息

Piasecki Andrew J, Sheehan Hannah C, Tilly Jonathan L, Woods Dori C

机构信息

Department of Biology, Northeastern University, Boston, MA 02115, USA.

出版信息

Int J Mol Sci. 2025 Jun 7;26(12):5481. doi: 10.3390/ijms26125481.

Abstract

Recent advances in flow cytometry facilitate the detection of subcellular components, such as organelles and vesicles. Fluorescence-activated mitochondria sorting (FAMS) is a flow cytometry-based technique that allows for quantitative analysis and sorting of mitochondria as individual organelles from various tissues and in vitro cell culture. This manuscript details three novel applications of this technique to study mitochondrial function on an organelle-specific level, which is not possible with other approaches. Specifically, we detail the further development and versatility of this nanoscaled flow cytometry approach, including assays to quantitatively assess mitochondrial subpopulations, mitochondrial protein translocation, and both free-floating and EV-encapsulated secreted mitochondria. We demonstrate a multi-parameter quantitative assay for the analysis of mitochondrial autophagy using antibodies targeting the proteins PINK1 and Parkin corresponding to ΔΨ and further show how these can be assessed for mtDNA content on a single organelle level. Further, we establish parameters for the size and surface marker-based analysis of EVs, many of which contain identifiable and respiring mitochondria, as well as free-floating respiratory-competent mitochondria. These results display the versatility of nanoscaled flow cytometry in terms of both sample input and target organelle and provide an important methodological means for the quantitative assessment of mitochondrial features.

摘要

流式细胞术的最新进展促进了对亚细胞成分(如细胞器和囊泡)的检测。荧光激活线粒体分选(FAMS)是一种基于流式细胞术的技术,可对来自各种组织和体外细胞培养的单个细胞器线粒体进行定量分析和分选。本手稿详细介绍了该技术在细胞器特异性水平上研究线粒体功能的三种新应用,这是其他方法无法实现的。具体而言,我们详细介绍了这种纳米级流式细胞术方法的进一步发展和多功能性,包括定量评估线粒体亚群、线粒体蛋白转运以及游离和外泌体包裹的分泌线粒体的分析方法。我们展示了一种多参数定量分析方法,用于使用针对与ΔΨ对应的PINK1和Parkin蛋白的抗体分析线粒体自噬,并进一步展示了如何在单个细胞器水平上评估这些线粒体的mtDNA含量。此外,我们建立了基于大小和表面标志物的细胞外囊泡分析参数,其中许多囊泡含有可识别且具有呼吸功能的线粒体以及游离的具有呼吸功能的线粒体。这些结果展示了纳米级流式细胞术在样品输入和目标细胞器方面的多功能性,并为线粒体特征的定量评估提供了重要的方法手段。

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