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Effect of Quencher Denaturants Temperature and pH on the Fluorescent Properties of BSA Protected Gold Nanoclusters

机译:猝灭剂变性剂温度和pH值对BSA保护的金纳米团簇的荧光性质的影响

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摘要

In this paper, we have synthesized BSA protected gold nanoclusters (BSA Au nanocluster) and studied the effect of quencher, protein denaturant, pH and temperature on the fluorescence properties of the tryptophan molecule of the BSA Au nanocluster and native BSA. We have also studied their effect on the peak emission of BSA Au nanoclusters (650 nm). The phtophysical characterization of a newly developed fluorophore in different environments is absolutely necessary to futher develop their biomedical and analytical applications. It was observed from our experiments that the tryptophan in BSA Au nanoclusters is better shielded from the polar environment. Tryptophan in native BSA showed a red shift in its peak emission wavelength position. Tryptophan is a highly polarity sensitive dye and a minimal change in its microenvironment can be easily observed in its photophysical properties.
机译:在本文中,我们合成了BSA保护的金纳米簇(BSA Au纳米簇),并研究了淬灭剂,蛋白质变性剂,pH和温度对BSA Au纳米簇和天然BSA色氨酸分子的荧光性质的影响。我们还研究了它们对BSA Au纳米团簇(650 nm)峰值发射的影响。为了进一步发展其生物医学和分析应用,绝对需要在不同环境中对新开发的荧光团进行光物理表征。从我们的实验中观察到,BSA Au纳米簇中的色氨酸可以更好地屏蔽极​​性环境。天然BSA中的色氨酸在其峰值发射波长位置显示出红移。色氨酸是一种高度极性敏感的染料,其微环境的光物理性质很容易观察到最小的变化。

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