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Metabolic imaging in multiple time scales

机译:多个时间尺度的代谢成像

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We report here a novel combination of time-resolved imaging methods for probing mitochondrial metabolism in multiple time scales at the level of single cells. By exploiting a mitochondrial membrane potential reporter fluorescence we demonstrate the single cell metabolic dynamics in time scales ranging from microseconds to seconds to minutes in response to glucose metabolism and mitochondrial perturbations in real time. Our results show that in comparison with normal human mammary epithelial cells, the breast cancer cells display significant alterations in metabolic responses at all measured time scales by single cell kinetics, fluorescence recovery after photobleaching and by scaling analysis of time-series data obtained from mitochondrial fluorescence fluctuations. Furthermore scaling analysis of time-series data in living cells with distinct mitochondrial dysfunction also revealed significant metabolic differences thereby suggesting the broader applicability (e.g. in mitochondrial myopathies and other metabolic disorders) of the proposed strategies beyond the scope of cancer metabolism. We discuss the scope of these findings in the context of developing portable, real-time metabolic measurement systems that can find applications in preclinical and clinical diagnostics.
机译:我们在这里报告了一种新的时间分辨成像方法的组合,用于在单个细胞水平的多个时间尺度上探测线粒体代谢。通过利用线粒体膜电位报告基因荧光,我们证明了实时响应葡萄糖代谢和线粒体摄动的单细胞代谢动力学,其时间范围从微秒到数秒到数分钟不等。我们的结果表明,与正常人的乳腺上皮细胞相比,乳腺癌细胞通过单细胞动力学,光漂白后的荧光恢复以及线粒体荧光获得的时间序列数据的缩放分析,在所有测量的时间尺度上均显示出代谢反应的显着变化波动。此外,在具有明显线粒体功能障碍的活细胞中对时间序列数据进行定标分析还显示出明显的代谢差异,从而表明拟议策略的广泛应用性(例如在线粒体肌病和其他代谢性疾病中)超出了癌症代谢的范围。我们在开发可在临床前和临床诊断中找到应用的便携式实时代谢测量系统的背景下讨论这些发现的范围。

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