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In vivo monitoring of protein-bound and free NADH during ischemia by nonlinear spectral imaging microscopy

机译:非线性光谱成像显微镜对缺血过程中蛋白质结合和游离NADH的体内监测

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Nonlinear spectral imaging microscopy (NSIM) allows simultaneous morphological and spectroscopic investigation of intercellular events within living animals. In this study we used NSIM for in vivo time-lapse in-depth spectral imaging and monitoring of protein-bound and free reduced nicotinamide adenine dinucleotide (NADH) in mouse keratinocytes following total acute ischemia for 3.3 h at ~3 min time intervals. The high spectral resolution of NSIM images allows discrimination between the two-photon excited fluorescence emission of protein-bound and free NAD(P)H by applying linear spectral unmixing to the spectral image data. Results reveal the difference in the dynamic response between protein-bound and free NAD(P)H to ischemia-induced hypoxia/anoxia. Our results demonstrate the capability of nonlinear spectral imaging microscopy in unraveling dynamic cellular metabolic events within living animals for long periods of time.
机译:非线性光谱成像显微镜(NSIM)可以同时对活体动物的细胞间事件进行形态学和光谱学研究。在这项研究中,我们使用NSIM进行体内延时深层光谱成像,并在约3分钟的时间间隔内进行总急性缺血3.3 h后,监测小鼠角质形成细胞中蛋白质结合的和游离的还原型烟酰胺腺嘌呤二核苷酸(NADH)。 NSIM图像的高光谱分辨率可通过对光谱图像数据进行线性光谱分解来区分蛋白结合的NAD(P)H和自由NAD(P)H的双光子激发荧光。结果揭示了蛋白结合和游离NAD(P)H对缺血诱导的缺氧/缺氧的动态反应之间的差异。我们的研究结果证明了非线性光谱成像显微镜能够长期揭示活体动物体内动态细胞代谢事件的能力。

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