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Kinetic Exclusion Assay of Biomolecules by Aptamer Capture

机译:适体捕获的生物分子动力学排除法

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摘要

DNA aptamers are short nucleotide oligomers selected to bind a target ligand with affinity and specificity rivaling that of antibodies. These remarkable features recommend aptamers as candidates for analytical and therapeutic applications that traditionally use antibodies as biorecognition elements. Numerous traditional and emerging analytical techniques have been proposed and successfully implemented to utilize aptamers for sensing purposes. In this work, we exploited the analytical capabilities offered by the kinetic exclusion assay technology to measure the affinity of fluorescent aptamers for their thrombin target and quantify the concentration of analyte in solution. Standard binding curves constructed by using equilibrated mixtures of aptamers titrated with thrombin were fitted with a 1:1 binding model and provided an effective K of the binding in the sub-nanomolar range. However, our experimental results suggest that this simple model does not satisfactorily describe the binding process; therefore, the possibility that the aptamer is composed of a mixture of two or more distinct K populations is discussed. The same standard curves, together with a four-parameter logistic equation, were used to determine “unknown” concentrations of thrombin in mock samples. The ability to identify and characterize complex binding stoichiometry, together with the determination of target analyte concentrations in the pM–nM range, supports the adoption of this technology for kinetics, equilibrium, and analytical purposes by employing aptamers as biorecognition elements.
机译:DNA适体是短核苷酸寡聚体,经选择可与抗体结合的亲和力和特异性结合目标配体。这些非凡的功能推荐将适体用作传统上使用抗体作为生物识别元件的分析和治疗应用的候选对象。已经提出并成功实现了许多传统的和新兴的分析技术,以将适体用于感测目的。在这项工作中,我们利用动力学排斥分析技术提供的分析功能来测量荧光适体对其凝血酶靶标的亲和力,并量化溶液中分析物的浓度。使用通过凝血酶滴定的适体的平衡混合物构建的标准结合曲线与1:1结合模型拟合,并提供了在亚纳摩尔范围内的有效结合K。然而,我们的实验结果表明,这种简单的模型不能令人满意地描述结合过程。因此,讨论了适体由两个或多个不同的K种群的混合物组成的可能性。相同的标准曲线以及四参数对数方程用于确定模拟样品中凝血酶的“未知”浓度。鉴定和表征复杂结合化学计量的能力,以及在pM–nM范围内确定目标分析物浓度的能力,通过采用适体作为生物识别元素,支持了该技术在动力学,平衡和分析方面的应用。

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