Dixit Bhavna, Vanhoozer Shon, Anti Nana Abena, O'Connor Matthew S, Boominathan Amutha
Department of Mitochondrial Research, SENS Research Foundation, Mountain View, CA, 95051 USA.
MethodsX. 2020 Dec 23;8:101197. doi: 10.1016/j.mex.2020.101197. eCollection 2021.
We describe here a simple method to enrich mitochondrial fractions from mammalian cells for downstream analyses in the lab. Mitochondria purification involves cell lysis followed by separation of the organelles from the rest of the cellular components. Here, we use detergent to rupture the cell membrane of mammalian cells followed by differential centrifugation to enrich the organelles. Optimum conditions with respect to detergent concentration, time, sample size, and yield are discussed. The method's utility in downstream analyses and ease of processing multiple samples simultaneously is also described. All the reagents in this method can be assembled in-house, are economical, and are comparable, if not superior, to commercially available kits in terms of mitochondrial yield and integrity. • Rapid enrichment of mitochondria from mammalian cells using commonly available reagents. • Multiple samples can be processed simultaneously. • Works over a wide range of sample size (1 million to 100 million cells).
我们在此描述一种从哺乳动物细胞中富集线粒体组分的简单方法,用于实验室的下游分析。线粒体纯化包括细胞裂解,然后将细胞器与其他细胞成分分离。在此,我们使用去污剂破坏哺乳动物细胞的细胞膜,然后通过差速离心来富集细胞器。讨论了去污剂浓度、时间、样品量和产量方面的最佳条件。还描述了该方法在下游分析中的实用性以及同时处理多个样品的简便性。该方法中的所有试剂都可以在内部组装,经济实惠,在线粒体产量和完整性方面即使不比市售试剂盒优越,也可与之相媲美。
• 使用常用试剂从哺乳动物细胞中快速富集线粒体。
• 可同时处理多个样品。
• 适用于广泛的样品量范围(100万个至1亿个细胞)。