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Near-Infrared Fluorophores as Biomolecular Probes

机译:近红外荧光团作为生物分子探针

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Near-Infrared (NIR) fluorescence has been valuable in analytical and bioanalytical chemistry. NIR probes and labels have been used for several applications, including hydrophobicity of protein binding sites, DNA sequencing, immunoassays, CE separations, etc. The NIR region (700-1100 nm) has advantages for the spectroscopist due to the inherently lower background interference from the biological matrix and the high molar absorptivities of NIR chromophores. During the studies we report here several NIR dyes were prepared to determine the role of the hydrophobicity of NIR dyes and their charge in binding to amino acids and proteins, e.g., serum albumins. We synthesized NIR dye homologs containing the same chromophore but substituents of varying hydrophobicity. Hydrophobic moieties were represented by alkyl and aryl groups. These NIR dyes of varying hydrophobicity exhibited varying degrees of H-aggregation in aqueous solution indicating that the degree of H-aggregation could be used as an indicator to predict binding characteristics to serum albumins. In order to understand what factors may be important in the binding process, spectral behavior of these varying hydrophobicity dyes were examined in the presence of amino acids. Typical dye structures that exhibit large binding constants to biomolecules were compared in order to optimize applications utilizing non-covalent interactions.
机译:近红外(NIR)荧光在分析和生物分析化学中很有价值。 NIR探针和标记已用于多种应用,包括蛋白质结合位点的疏水性,DNA测序,免疫测定,CE分离等。NIR区域(700-1100 nm)对光谱学家具有优势,因为其固有的较低背景干扰NIR发色团的生物基质和高摩尔吸收率。在研究过程中,我们在这里报告了几种NIR染料,以测定NIR染料的疏水性及其电荷与氨基酸和蛋白质(例如血清白蛋白)结合的作用。我们合成了含有相同发色团但疏水性不同的NIR染料同系物。疏水部分由烷基和芳基表示。这些具有不同疏水性的NIR染料在水溶液中表现出不同程度的H聚集,表明H聚集的程度可以用作预测与血清白蛋白结合特性的指标。为了了解在结合过程中可能重要的因素,在氨基酸存在下检查了这些变化的疏水性染料的光谱行为。为了对利用非共价相互作用的应用进行优化,比较了对生物分子具有大结合常数的典型染料结构。

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