Spectroscopic study of pH and solvent effects on the structure of Congo red and its binding mechanism to amyloid-like proteins

E. Pigorsch, A. Elhaddaoui, S. Turrell
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引用次数: 53

Abstract

The pH and solvent effects on the structure of the azo dye Congo red were investigated. The absorption, resonance Raman and NMR spectra give evidence of the existence of different protonated dye molecules in acidic solutions. There exist a red form with an azoic structure and at least three blue forms with quinoid structures. The position of the equilibrium between the azoic and quinoid structures depends on the solvent and the pH and is related to the capability of the solvent to form three and two dimensional solvation structures, respectively.

Spectral variations similar to those observed for Congo red dissolved in organic solvents accompany binding of the dye to amyloid-like proteins. This observation leads to the suggestion that the dye molecules must experience similar changes in environment in both cases.

pH和溶剂对刚果红结构影响的光谱研究及其与淀粉样蛋白的结合机制
研究了pH和溶剂对偶氮染料刚果红结构的影响。吸收光谱、共振拉曼光谱和核磁共振光谱证明了酸性溶液中不同质子化染料分子的存在。存在一种具有偶氮结构的红色形式和至少三种具有醌结构的蓝色形式。偶氮和类醌结构之间的平衡位置取决于溶剂和pH值,并分别与溶剂形成三维和二维溶剂化结构的能力有关。光谱变化类似于在有机溶剂中溶解的刚果红,伴随着染料与淀粉样蛋白的结合。这一观察结果表明,在这两种情况下,染料分子在环境中一定经历了类似的变化。
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