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A metabolic interpretation for the response of cellular autofluorescence to chemical perturbations assessed using spectral phasor analysis

机译:使用光谱相量分析评估细胞自发荧光对化学扰动响应的代谢解释

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Analytical approaches for sensing cellular NADH conformation from autofluorescence signals have significance because NADH is a metabolic indicator and endogenous biomarker. Recently, spectral detection of multiple cellular NADH forms during chemically-induced metabolic response was reported, however because NADH is solvatochromic and the spectral change is small, the possibility of a non-metabolic interpretation needs to be considered. Here we investigate the response of UV-excited autofluorescence to a range of well-known chemicals affecting fermentation, respiration, and oxidative-stress pathways in Saccharomyces cerevisiae . The two-component nature of the spectral response is assessed using phasor analysis. By considering a series of physically similar and dissimilar chemicals acting on multiple pathways, we show how the two-component nature of a spectral response is of metabolic origin, indicative of whether a single or several pathways have been affected.
机译:用于分析自体荧光信号中细胞NADH构象的分析方法具有重要意义,因为NADH是一种代谢指标和内源性生物标志物。最近,据报道在化学诱导的代谢反应过程中多种细胞NADH形式的光谱检测,但是由于NADH是溶剂变色的,并且光谱变化很小,因此需要考虑非代谢解释的可能性。在这里,我们研究了紫外线激发的自发荧光对啤酒酵母中影响发酵,呼吸作用和氧化应激途径的一系列知名化学物质的响应。使用相量分析评估光谱响应的两部分性质。通过考虑作用于多种途径的一系列物理上相似和相异的化学物质,我们展示了光谱响应的两成分性质是如何起源于代谢的,表明单个或多个途径是否受到影响。

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