蛋白质对偶氮氯膦(Ⅰ)的荧光猝灭及其分析应用研究

STUDY OF CHLOROPHOSPHONAZO ⅠFLUORESCENCE QUENCHING BY PROTEINS AND APPLICATION

  • 摘要: 在pH9.25 Britton-Robinson(B-R)缓冲介质中,牛血清白蛋白(BSA)对酸性染料偶氮氯膦Ⅰ(CPⅠ)的荧光有猝灭,使CPⅠ最大荧光峰从578nm红移至610nm,对荧光猝灭的实验条件进行了优化, 建立了蛋白质定量的线性方程△F = 20.8C-6.8(g/mL),线性响应范围0.04~30.0g/mL、检出限0.031g/mL(r=0.9956),并应用于样品中BSA含量的分析.对荧光猝灭机理进行了探讨,认为两者之间的猝灭是由于生成不发荧光的复合物,属于静态猝灭过程,求得不同温度下的形成常数及热力学函数H、G、S分别为-2.3KJ,-31.2KJ,98.6J,根据热力学函数确定了两者是通过静电作用力结合的.

     

    Abstract: At pH9.25 Britton-Robinson buffer solution, the interaction between Chlorophosphonazo Ⅰ(CPⅠ)and proteins has been studied by using fluorescence spectroscopy method. The emission spectrum of CPⅠ-BSA shows a bathochromic shift from 578nm to 610nm. The optimum condition of fluorimetric determination of protein was studied. The linear equation was △F=20.8C-6.8 (g/mL). The detection limit of this method was 0.031g /mL with the linear range of 0.04~30.0g /mL(r=0.9956). The developed method was successfully applied to the determination of protein in sample. In addition, the formation constant at different temperatures and the thermodynamic functions(such as G, H and S) of CPⅠwith BSA were obtained. the mechanism of the fluorescence quenching was also explored, it is considered that the quenching is mainly due to generating quenchable complex and that interaction of CPⅠand proteins was static electricity forces.

     

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