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Planar waveguide biosensors for nucleic acid hybridization reactions

机译:用于核酸杂交反应的平面波导生物传感器

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Abstract: Oligonucleotide probes derived from (1) the T3 RNA polymerase promoter sequence (T3) and (2) prostate-specific antigen messenger RNA (PSA) were prepared and labeled with a red-emitting fluorescent dye (Cy5). The complimentary oligonucleotides were prepared and labeled with biotin. Initially, a feasibility study was performed in which the hybridization rate of the T3/anti T3 Oligonucleotide pair was examined. Specifically, biotinylated anti T3 was immobilized to a neutravidin-coated waveguide and solutions containing increasing concentrations of Cy5-labeled T3 were injected into the biosensor. Fluorescence emission was detected with an evanescent wave imaging fluorometer. The hybridization reaction proceeded rapidly with a significant amount of binding occurring during the first 5 minutes. A Michaelis-Menton kinetics model was used to analyze hybridization rate data and gave values of 78 nanomolar for the apparent affinity of the hybridization reaction and 1.4 picomolar for the analytical sensitivity of the hybridization assay. In subsequent studies the hybridization rate of the PSA/anti PSA oligonucleotide pair was examined. Biotinylated anti PSA was immobilized to the waveguide and solutions containing increasing concentration of Cy5-labeled PSA were injected into the biosensor. The hybridization rate observed for formation of the PSA/anti PSA pari was comparable to the high rates observed for the T3/anti T3 pari. Lastly, the selectivity of the biosensor was examined using an Oligonucleotide probe derived from human glandular kallikrein, which exhibits a high degree of homology to PSA. The two Oligonucleotide probes only differed in 7 out of 20 positions. Interestingly, the hybridization rate observed for Cy5-labeled hGK was very low - not statistically different from the non-specific binding rate of the hybridization assay. !24
机译:摘要:制备了源自(1)T3 RNA聚合酶启动子序列(T3)和(2)前列腺特异性抗原信使RNA(PSA)的寡核苷酸探针,并用发红光的荧光染料(Cy5)进行了标记。制备互补的寡核苷酸并用生物素标记。最初,进行了可行性研究,其中检查了T3 /抗T3寡核苷酸对的杂交速率。具体而言,将生物素化的抗T3固定在涂有中性生物素的波导上,并将浓度递增的Cy5标记的T3溶液注入生物传感器。用van逝波成像荧光计检测荧光发射。杂交反应进行得很快,在最初的5分钟内发生了大量的结合。使用Michaelis-Menton动力学模型分析杂交速率数据,杂交反应的表观亲和力为78纳摩尔,杂交分析的分析灵敏度为1.4皮摩尔。在随后的研究中,检查了PSA /抗PSA寡核苷酸对的杂交速率。将生物素化的抗PSA固定在波导上,然后将浓度递增的Cy5标记的PSA溶液注入生物传感器。观察到的形成PSA /抗PSA壁的杂交速率与观察到的T3 /抗T3壁的高杂交速率相当。最后,使用衍生自人腺激肽释放酶的寡核苷酸探针检查了生物传感器的选择性,该探针表现出与PSA的高度同源性。两种寡核苷酸探针在20个位置中只有7个存在差异。有趣的是,Cy5标记的hGK的杂交率非常低-与杂交测定的非特异性结合率无统计学差异。 !24

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