Department of Biochemistry, Radboud Institute for Molecular Life Sciences, Nijmegen, the Netherlands.
Khondrion BV, Nijmegen, the Netherlands.
Nat Protoc. 2016 Sep;11(9):1693-710. doi: 10.1038/nprot.2016.094. Epub 2016 Aug 18.
Mitochondria have a central role in cellular (patho)physiology, and they display a highly variable morphology that is probably coupled to their functional state. Here we present a protocol that allows unbiased and automated quantification of mitochondrial 'morphofunction' (i.e., morphology and membrane potential), cellular parameters (size, confluence) and nuclear parameters (number, morphology) in intact living primary human skin fibroblasts (PHSFs). Cells are cultured in 96-well plates and stained with tetramethyl rhodamine methyl ester (TMRM), calcein-AM (acetoxy-methyl ester) and Hoechst 33258. Next, multispectral fluorescence images are acquired using automated microscopy and processed to extract 44 descriptors. Subsequently, the descriptor data are subjected to a quality control (QC) algorithm based upon principal component analysis (PCA) and interpreted using univariate, bivariate and multivariate analysis. The protocol requires a time investment of ∼4 h distributed over 2 d. Although it is specifically developed for PHSFs, which are widely used in preclinical research, the protocol is portable to other cell types and can be scaled up for implementation in high-content screening.
线粒体在细胞(病理)生理学中具有核心作用,其形态具有高度可变性,这可能与其功能状态有关。本文提供了一种方案,可用于在完整的活原代人皮肤成纤维细胞(PHSF)中对线粒体“形态功能”(即形态和膜电位)、细胞参数(大小、融合度)和核参数(数量、形态)进行无偏和自动化的定量分析。细胞在 96 孔板中培养,并使用四甲基罗丹明甲酯(TMRM)、钙黄绿素-AM(乙酰氧基甲酯)和 Hoechst 33258 进行染色。然后,使用自动化显微镜获取多光谱荧光图像,并进行处理以提取 44 个描述符。随后,使用主成分分析(PCA)为基础的质量控制(QC)算法对描述符数据进行处理,并使用单变量、双变量和多变量分析进行解释。该方案需要大约 4 小时的时间投入,分 2 天进行。尽管它是专门为广泛用于临床前研究的 PHSF 开发的,但该方案可移植到其他细胞类型,并可扩展用于高通量筛选中的实施。