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Impact of Dissociation Constant on the Detection Sensitivity of Polymerization-Based Signal Amplification Reactions

机译:离解常数对基于聚合的信号放大反应的检测灵敏度的影响

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Many studies have demonstrated the concept of using free-radical polymerization reactions to provide signal amplification so that molecular recognition events indicative of disease states may be detected in a simple and low-cost manner. We provide the first systematic study of how the dissociation constant impacts detection sensitivity in these assays, having chosen a range of dissociation constants (nanomolar to picomolar) that is typical of those encountered in molecular diagnostic applications that detect protein-protein binding events. In addition, we use experimental results to validate a mass-action kinetic model that may be used to predict assay performance as an alternative or supplement to the empirical approach to developing new polymerization-based amplification assays that has characterized the field to date.
机译:许多研究已经证明了使用自由基聚合反应提供信号放大的概念,从而可以以简单且低成本的方式检测指示疾病状态的分子识别事件。我们选择了一定范围的解离常数(纳摩尔至皮摩尔),这是检测蛋白质-蛋白质结合事件的分子诊断应用中常见的解离常数,这是对这些测定中解离常数如何影响检测灵敏度的首次系统研究。此外,我们使用实验结果来验证质量反应动力学模型,该模型可用于预测测定性能,以替代或补充经验方法来开发新的基于聚合的扩增测定方法,该方法迄今已成为该领域的特征。

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