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Study on Electrochemical Insulin Sensing Utilizing a DNA Aptamer-Immobilized Gold Electrode

机译:利用DNA适体固定化的金电极对电化学胰岛素的研究

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摘要

We investigated an insulin-sensing method by utilizing an insulin-binding aptamer IGA3, which forms an anti-parallel G-quadruplex with folded single strands. Spectroscopic observation indicates that some anti-parallel G-quadruplex bind hemin and show peroxidase activity. In this study, the peroxidase activity of IGA3 with hemin was confirmed by spectrophotometric measurements, i.e., the activity was three-times higher than hemin itself. IGA3 was then immobilized onto a gold electrode to determine its electrochemical activity. The peroxidase activity of the immobilized IGA3-hemin complex was determined by cyclic voltammetry, and a cathodic peak current of the electrode showed a dependence on the concentration of H2O2. The cathodic peak current of the IGA3-hemin complex decreased by binding it to insulin, and this decrease depended on the concentration of insulin.
机译:我们通过利用胰岛素结合适体IGA3研究了一种胰岛素传感方法,该适体IGA3与折叠的单链形成反平行的G-四链体。光谱观察表明,一些反平行的G-四链体结合血红素并显示出过氧化物酶活性。在该研究中,通过分光光度法测定证实了IGA3与血红素的过氧化物酶活性,即该活性比血红素本身高三倍。然后将IGA3固定在金电极上,以确定其电化学活性。通过循环伏安法测定固定化的IGA3-血红素复合物的过氧化物酶活性,电极的阴极峰值电流显示出对H2O2浓度的依赖性。 IGA3-血红素复合物的阴极峰值电流通过与胰岛素结合而降低,该降低取决于胰岛素的浓度。

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