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DNA Aptamer-Based Bioanalysis of IgE by Fluorescence Anisotropy

机译:基于DNA适体的IgE荧光各向异性生物分析

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A rapid, homogeneous aptamer-based bioanalysis is reported for the sensitive detection of immunoglobulin E (IgE) using fluorescence polarization (FP). 5′-End-labeled D17.4 DNA aptamer was used for IgE detection based on the anisotropy differences of the labeled ligand. Two different fluorophores, fluorescein and Texas Red, were used to analyze IgE in the low-nanomolar range with high specificity. Measurable anisotropy changes were observed with a short equilibration time. Analysis of the binding data reveals a possible cooperative binding process in solution. The nature of the fluorophore clearly influences the sensitivity of the analysis more than the tether length used for the dye conjugation. The local fluorophore motion is seen to influence the sensitivity of the FP probe significantly. Texas Red is seen to be relatively more sensitive for this approach and has apparently favorable dye-DNA interactions, and a limit of detection of 350 pM was obtained. Significant temperature dependence of the FP responses has been observed in this work. Ionic composition of the binding buffer also influences the assay sensitivity. The results confirm the promise and potential of similar homogeneous assays for aptamer-based bioanalysis.
机译:据报道,使用荧光偏振(FP)对免疫球蛋白E(IgE)进行灵敏检测,可以进行快速,均质的基于适体的生物分析。基于标记的配体的各向异性差异,将5'-末端标记的D17.4 DNA适体用于IgE检测。两种不同的荧光团,荧光素和德克萨斯红,被用于以高特异性分析低纳摩尔范围内的IgE。在较短的平衡时间内观察到可测量的各向异性变化。对绑定数据的分析揭示了解决方案中可能存在的协作绑定过程。荧光团的性质显然比染料偶联所用的系链长度对分析灵敏度的影响更大。可以看到局部荧光团的运动会显着影响FP探针的灵敏度。德克萨斯红被认为对这种方法相对更敏感,并且具有明显有利的染料-DNA相互作用,并获得了350 pM的检出限。在这项工作中已观察到FP反应的显着温度依赖性。结合缓冲液的离子组成也影响测定灵敏度。结果证实了基于适体的生物分析类似均相测定的前景和潜力。

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