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Study on the fluorescent enhancement effect in terbium-gadolinium-protein-sodium dodecyl benzene sulfonate system and its application on sensitive detection of protein at nanogram level

机译:ga-protein-蛋白质-十二烷基苯磺酸钠体系的荧光增强作用及其在纳克级蛋白质灵敏检测中的应用

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The co-luminescence effect in a terbium-gadolinium-protein-sodium dodecyl benzene sulfonate (SDBS) system is reported here. Based on it, the sensitive quantitative analysis of protein at nanogram levels is established. The co-luminescence mechanism is studied using fluorescence, resonance light scattering (RLS), absorption spectroscopy and NMR measurement. It is considered that protein could be unfolded by SDBS, then a efficacious intramolecular fluorescent energy transfer occurs from unfolded protein to rare earth ions through SDBS acting as a "transfer bridge" to enhance the emission fluorescence of Tb3+ in this ternary complex of Tb-SDBS-BSA, where energy transfer from protein to SDBS by aromatic ring stacking is the most important step. Cooperating with the intramolecular energy transfer above is the intermolecular energy transfer between the simultaneous existing complexes of both Tb3+ and Gd3+. The fluorescence quantum yield is increased by an energy-insulating sheath, which is considered to be another reason for the resulting enhancement of the fluorescence. Forster theory is used to calculate the distribution of enhancing factors and has led to a greater understanding of the mechanisms of energy transfer. (C) 2004 Elsevier SAS. All rights reserved.
机译:此处报道了ter-protein-蛋白质-十二烷基苯磺酸钠(SDBS)系统中的协同发光效应。在此基础上,建立了纳克级蛋白质的灵敏定量分析。使用荧光,共振光散射(RLS),吸收光谱和NMR测量研究了共发光机理。人们认为,SDBS可以使蛋白质解折叠,然后通过SDBS作为“转移桥”,从未折叠的蛋白质向稀土离子发生有效的分子内荧光能量转移,从而增强Tb-SDBS三元复合物中Tb3 +的发射荧光。 -BSA,其中通过芳环堆叠将能量从蛋白质转移到SDBS是最重要的步骤。与上面的分子内能量转移配合的是Tb3 +和Gd3 +的同时存在的复合物之间的分子间能量转移。能量绝缘鞘提高了荧光量子产率,这被认为是导致荧光增强的另一个原因。福斯特理论用于计算增强因子的分布,并导致人们对能量转移的机理有了更深入的了解。 (C)2004 Elsevier SAS。版权所有。

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