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Real-time optical detection of competitive surface hybridization on microarrays

机译:实时光学检测微阵列上竞争性表面杂交

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摘要

Application of microarrays for single nucleotide polymorphims (SNPs) has a limited appeal currently due to low reliability of experimental results. Theoretical and experimental studies of surface hybridization of heterozygous samples allow us to identify two factors of observed instabilities. First, reactions may not reach thermodynamic equilibrium in the course of the experiment and second, competitive displacement of low affinity species by high affinity species is the mechanism defining specificity of molecular recognition. Here we describe a real time optical detection arrangement that facilitated the detection of competitive displacement between a wild-type target and a SNP target. Results show that even when the SNP is an order of magnitude lower in concentration (100 pM) then the wild-type target, the kinetics of the SNP hybridization affects hybridization of the wild-type target. Additionally, results show that observed binding kinetics can be altered by adjusting the concentration of the SNP without changing the concentration of the wild-type target. These results have significance when considering what needs to be accounted for when analyzing real time hybridization data.
机译:由于实验结果的可靠性低,目前将微阵列用于单核苷酸多态性(SNP)的吸引力有限。杂合样品表面杂交的理论和实验研究使我们能够确定观察到的不稳定性的两个因素。首先,在实验过程中反应可能无法达到热力学平衡;其次,高亲和力物质对低亲和力物质的竞争性取代是定义分子识别特异性的机制。在这里,我们描述了一种实时光学检测装置,它有助于检测野生型目标和SNP目标之间的竞争性位移。结果表明,即使当SNP的浓度(100 pM)比野生型靶标低一个数量级时,SNP杂交的动力学也会影响野生型靶标的杂交。另外,结果表明,可以通过调节SNP的浓度而不改变野生型靶标的浓度来改变观察到的结合动力学。这些结果在考虑分析实时杂交数据时需要考虑的因素时具有重要意义。

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