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Phosphorescence decay time measurements using intensity correlation spectroscopy.

机译:使用强度相关光谱法测量磷光衰减时间。

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摘要

In this paper, we report on phosphorescence measurements for oxygen dynamics in cells by means of a correlation method, which is an expansion of the fluorescence correlation spectroscopy. The intensity correlation function of the emission excited by a pulsed light source was measured. With changing the pulse timing, both the fluorescence correlation function and the decay time of phosphorescence could be analyzed. This method was applied for the analysis of the oxygen dynamics in HeLa cells stained by Pd(II)-porphine. The decay function consisted of two exponential components, which might be attributed to free and protein-bound forms of Pd(II)-porphine in the cell, respectively. The relative change of the oxygen concentration under normal and uncoupled respiration conditions was also measured. The simplicity of this method is a great advantage in the biological applications. Although the current system we used was limited in the temporal resolution, the method is in principle applicable to faster decay time measurements down to the nano-second range of the fluorescence decay times.
机译:在本文中,我们报告了通过相关方法对细胞中的氧气动力学进行磷光测量,这是荧光相关光谱学的扩展。测量了由脉冲光源激发的发射的强度相关函数。通过改变脉冲时序,可以分析荧光相关函数和磷光的衰减时间。该方法用于分析Pd(II)-吗啡染色的HeLa细胞中的氧动力学。衰减函数由两个指数成分组成,这可能分别归因于细胞中Pd(II)-吗啡的游离形式和蛋白质结合形式。还测量了正常和非耦合呼吸条件下氧气浓度的相对变化。该方法的简单性在生物学应用中具有很大的优势。尽管我们使用的当前系统在时间分辨率上受到限制,但该方法原则上适用于更快的衰减时间测量,直至荧光衰减时间的纳秒范围。

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