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用于评估细胞代谢的细胞能量预算平台。

Cell energy budget platform for assessment of cell metabolism.

作者信息

Papkovsky Dmitri B, Zhdanov Alexander V

机构信息

School of Biochemistry and Cell Biology, University College Cork, Cavanagh Pharmacy Building, Office 1.28, College Road, Cork, Ireland,

出版信息

Methods Mol Biol. 2015;1265:333-48. doi: 10.1007/978-1-4939-2288-8_23.

Abstract

Changes in bioenergetic parameters report on metabolic rearrangement, dysfunction of major pathways, and regulatory processes within the cell, adaptation to energy stress, or new physiological condition. A combined measurement of oxidative phosphorylation, glycolytic flux, the Krebs cycle activity, ATP levels, and total biomass allows detailed metabolic assessment. We describe a simple methodology for high-throughput multiparametric assessment of cell bioenergetics, called cell energy budget (CEB) platform, and demonstrate its practical use with cell models. The CEB relies on a standard multi-label reader with time-resolved fluorescence capabilities, the lanthanide probe pH-Xtra™ to measure extracellular acidification (ECA) associated with lactate (L-ECA) and combined lactate/CO2 (T-ECA) extrusion, the phosphorescent probe MitoXpress®-Xtra to measure oxygen consumption rate (OCR), the bioluminescent total ATP assay, and absorbance-based total protein assay. This approach can be further extended with the measurement of other cellular parameters, such as NAD(P)H, Ca(2+), mitochondrial pH, membrane potential, and redox state, using the corresponding fluorescent or luminescent probes.

摘要

生物能量参数的变化反映了细胞内的代谢重排、主要途径的功能障碍、调节过程、对能量应激的适应或新的生理状态。对氧化磷酸化、糖酵解通量、三羧酸循环活性、ATP水平和总生物量进行综合测量,可实现详细的代谢评估。我们描述了一种用于细胞生物能量学高通量多参数评估的简单方法,称为细胞能量预算(CEB)平台,并展示了其在细胞模型中的实际应用。CEB依赖于具有时间分辨荧光功能的标准多标记读数仪、镧系探针pH-Xtra™ 来测量与乳酸(L-ECA)和乳酸/二氧化碳联合(T-ECA)排出相关的细胞外酸化(ECA)、磷光探针MitoXpress®-Xtra来测量耗氧率(OCR)、生物发光总ATP检测法和基于吸光度的总蛋白检测法。使用相应的荧光或发光探针测量其他细胞参数,如NAD(P)H、Ca(2+)、线粒体pH、膜电位和氧化还原状态,这种方法可以进一步扩展。

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