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Method for simultaneous luminescence sensing of two species using optical probes of different decay time, and its application to an enzymatic reaction at varying temperature

机译:使用不同衰减时间的光学探针同时检测两种物质的方法及其在不同温度下的酶促反应中的应用

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Chemical sensing, imaging and microscopy based on the use of fluorescent probes has so far been limited almost exclusively to the detection of a single parameter at a time. We present a scheme that can overcome this limitation by enabling optical sensing of two parameter simultaneously and even at identical excitation and emission wavelengths of two probes provided (a) their decay times are different enough to enable two time windows to be recorded, and (b) the emission of the shorter-lived probe decays to below the detectable limit while that of the other still can be measured. We refer to this new scheme as the dual lifetime determination (DLD) method and show that it can be widely varied by appropriate choice of probes and experimental settings. DLD is demonstrated to work by sensing oxygen and temperature independently from each other by making use of two probes, one for oxygen (a platinum porphyrin dissolved in polystyrene), and one for temperature [a europium complex dissolved in poly(vinyl methylketone)]. DLD was applied to monitor the consumption of oxygen in the glucose oxidase-catalyzed oxidation of glucose at varying temperatures. The scheme is expected to have further applications in cellular assays and biophysical imaging.
机译:迄今为止,基于使用荧光探针的化学传感,成像和显微镜检查几乎仅限于一次检测单个参数。我们提出了一种可以通过同时对两个参数进行光学传感,甚至在两个探头的激发和发射波长相同的情况下提供光学传感来克服这一限制的方案(a)它们的衰减时间足够不同,可以记录两个时间窗口;和(b寿命较短的探针的发射衰减到可检测的极限以下,而另一种仍可以测量。我们将此新方案称为双重寿命确定(DLD)方法,并表明通过适当选择探针和实验设置可以广泛地改变它。通过使用两个探头,一个用于氧气(铂卟啉溶解在聚苯乙烯中)和一个用于温度[溶解在聚(乙烯基甲基酮)中的complex络合物),证明了DLD是通过彼此独立地感测氧气和温度而工作的。 DLD用于监测在不同温度下葡萄糖氧化酶催化的葡萄糖氧化中氧气的消耗。该方案有望在细胞测定和生物物理成像中进一步应用。

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