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Multilabeling biomolecules at a single site. 1. Synthesis and characterization of a dendritic label for electrochemiuminescence assays

机译:在单个位置进行多标记生物分子。 1.用于电化学发光测定的树突标记的合成与表征

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Ultrasensitive bioanalytical assays are of great value for early detection of human diseases and pathogens. The sensitivities of immunoassays and DNA probing can be enhanced by multilabeling the biorecognition partner used for affinity-based assays. However, the bioreactivity of biomolecules is affected by a high degree of multilabeling at multiple functional sites. It is proposed that dendritic scaffoldings be used to link multiple signal-generating units to a single site with potentially minimum impact on the bioaffinity. A prototype label, a zeroth-generation dendron, bearing three [Ru(bpy)(3)](2+) units for electrochemiluminescence (ECL) assays was synthesized and characterized preliminarily by spectroscopic, electrochemical, and ECL methods. No evidence of interaction between the neighboring [Ru(bpy)(3)](2+) units in the label molecule was found from these characterizations. Both the photoluminescence and ECL of the prototype label have features very similar to those of mononuclear [Ru(bpy)(3)](2+) compounds. Labeling a model protein with a triad of [Ru(bpy)(3)](2+) at one NH2 position was demonstrated. The results reported here provide support to applying the proposed multilabeling strategy to affinity-based bioanalytical assays. [References: 54]
机译:超灵敏的生物分析测定对于人类疾病和病原体的早期检测具有重要的价值。免疫测定和DNA探测的灵敏度可以通过多标记用于基于亲和力的测定的生物识别伴侣来提高。然而,生物分子的生物反应性受到在多个功能位点的高度多重标记的影响。建议使用树突状支架将多个信号产生单元连接到单个位点,而对生物亲和力的影响可能最小。合成了带有三个[Ru(bpy)(3)](2+)单元用于电化学发光(ECL)分析的原型标签,第零代树突,并通过光谱,电化学和ECL方法进行了初步表征。从这些表征中,没有发现标记分子中相邻的[Ru(bpy)(3)](2+)单元之间发生相互作用的证据。原型标签的光致发光和ECL都具有与单核[Ru(bpy)(3)](2+)化合物非常相似的特征。证明了在一个NH2位置用三联体[Ru(bpy)(3)](2+)标记模型蛋白。本文报道的结果为将拟议的多标记策略应用于基于亲和力的生物分析检测提供了支持。 [参考:54]

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