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首页> 外文期刊>Analytica chimica acta >On the performance of bioanalytical fluorescence correlation spectroscopy measurements in a multiparameter photon-counting microscope
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On the performance of bioanalytical fluorescence correlation spectroscopy measurements in a multiparameter photon-counting microscope

机译:关于多参数光子计数显微镜中生物分析荧光相关光谱测量的性能

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Fluorescence correlation spectroscopy (FCS) data acquisition and analysis routines were developed and implemented in a home-built, multiparameter photon-counting microscope. Laser excitation conditions were investigated for two representative fluorescent probes, RhodaminellO and enhanced green fluorescent protein (EGFP). Reliable local concentrations and diffusion constants were obtained by fitting measured FCS curves, provided that the excitation intensity did not exceed 20% of the saturation level for each fluorophore. Accurate results were obtained from FCS measurements for sample concentrations varying from pM to μM range, as well as for conditions of high background signals. These experimental constraints were found to be determined by characteristics of the detection system and by the saturation behavior of the fluorescent probes. These factors actually limit the average number of photons that can be collected from a single fluorophore passing through the detection volume. The versatility of our setup and the data analysis capabilities were tested by measuring the mobility of EGFP in the nucleus of Drosophila cells under conditions of high concentration and molecular crowding. As a bioanalytical application, we studied by FCS the binding affinity of a novel peptide-based drug to the cancer-regulating STAT3 protein and corroborated the results with fluorescence polarization analysis derived from the same photon data.
机译:荧光相关光谱(FCS)数据采集和分析程序已开发并在自制的多参数光子计数显微镜中实现。研究了两种代表性荧光探针罗丹明110和增强型绿色荧光蛋白(EGFP)的激光激发条件。通过拟合测得的FCS曲线可获得可靠的局部浓度和扩散常数,条件是每种荧光团的激发强度不超过饱和度的20%。从FCS测量中获得的准确结果适用于浓度范围从pM到μM的样品浓度以及高背景信号的条件。发现这些实验约束是由检测系统的特征和荧光探针的饱和行为决定的。这些因素实际上限制了可以从通过检测体积的单个荧光团中收集的平均光子数。在高浓度和分子拥挤的条件下,通过测量果蝇细胞核中EGFP的迁移率,测试了我们设置的多功能性和数据分析能力。作为生物分析应用,我们通过FCS研究了一种新型肽基药物与癌症调节STAT3蛋白的结合亲和力,并用源自相同光子数据的荧光偏振分析证实了这一结果。

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