线粒体
生物能学
细胞生物学
海马
呼吸
生物
克拉克电极
生物化学
神经退行性变
细胞呼吸
生物物理学
化学
解剖
疾病
电极
病理
生态学
医学
电解质
物理化学
作者
Ajit S. Divakaruni,George W. Rogers,Anne N. Murphy
标识
DOI:10.1002/0471140856.tx2502s60
摘要
Abstract Measurements of mitochondrial respiration in intact cells can help define metabolism and its dysregulation in fields such as cancer, metabolic disease, immunology, and neurodegeneration. Although cells can be offered various substrates in the assay medium, many cell types can oxidize stored pools of energy substrates. A general bioenergetic profile can therefore be obtained using intact cells, but the inability to control substrate provision to the mitochondria can restrict an in‐depth, mechanistic understanding. Mitochondria can be isolated from intact cells, but the yield and quality of the end product is often poor and prone to subselection during isolation. Plasma membrane permeabilization of cells provides a solution to this challenge, allowing experimental control of the medium surrounding the mitochondria. This unit describes techniques to measure respiration in permeabilized adherent cells using a Seahorse XF Analyzer or permeabilized suspended cells in a Hansatech Oxygraph. Curr. Protoc. Toxicol . 60:25.2.1‐25.2.16. © 2014 by John Wiley & Sons, Inc.
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