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Affinity patterns of enzyme tracers for triazine immunoassays

机译:酶示踪剂对三嗪免疫测定的亲和力模式

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Abstract: Cross-reactivities are one of the most important characteristics of immunoassays. Nevertheless most cross- reactivity studies are only performed with small molecules, which are similar to the target analyte. The complex mechanism of the binding event of an antibody makes it likely that the orientation of the hapten plays a critical role. Therefore cross-reactivities of hapten-derivatives with spacers may be quite different compared to the simple compound, especially when the spacer has been coupled to a large molecule, like a marker enzyme (e.g. peroxidase). We examined the relative affinity patterns of 17 enzyme tracers to 16 monoclonal and polyclonal antibodies for the analysis of triazine herbicides (atrazine, terbuthylazine, etc.). This allows interesting discussions about the structure of the antibody binding site and the comparison of antibodies generated with different immunogens. In addition, some general rules for the selection of immunogen structures could be derived from the data. The figures shown in this paper facilitate to find suitable tracer haptens for one of the tested antibodies and support for instance the optimization of immunosensor regeneration, as tracer affinity is closely correlated to the dissociation rate constant of an antibody-tracer complex. !21
机译:摘要:交叉反应是免疫测定的最重要特征之一。但是,大多数交叉反应性研究仅使用与目标分析物相似的小分子进行。抗体结合事件的复杂机制使得半抗原的方向可能起关键作用。因此,与简单化合物相比,带有间隔基的半抗原衍生物的交叉反应性可能有很大不同,特别是当间隔基已与大分子偶联时,如标记酶(例如过氧化物酶)。我们检查了17种酶示踪剂对16种单克隆和多克隆抗体的相对亲和力模式,以分析三嗪除草剂(阿特拉津,丁丁嗪等)。这允许对抗体结合位点的结构以及使用不同免疫原生成的抗体进行比较的有趣讨论。此外,可以从数据中得出一些选择免疫原结构的一般规则。由于示踪剂亲和力与抗体-示踪剂复合物的解离速率常数密切相关,因此本文中显示的附图有助于为一种被测抗体找到合适的示踪剂半抗原,并支持例如优化免疫传感器的再生。 !21

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