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Supermolecular Interaction of Ferrocenium with Yeast DNA and Application in Electrochemical Sensing for Hybridization Recognition of Yeast DNA

机译:ro与酵母DNA的超分子相互作用及其在电化学传感中对酵母DNA的杂交识别

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The supermolecular interactions of single-stranded yeast DNA (ssDNA) and double-stranded DNA (dsDNA) with ferrocenium (Fc+) both in solution and at the electrode/solution interface were studied with UV spectroscopy and electrochemical method. The interaction of covalently immobilized dsDNA with Fc+ resulted in a change of the electrode behavior from diffusion-controlled to surface-controlled and an increase in the current response of Fc+ reduction, which has been used to develop a novel electrochemical yeast DNA sensor for hybridization recognition of immobilized yeast ssDNA to its complementary ssDNA (cDNA). The adsorption constants of Fc+ on ssDNA and dsDNA modified gold electrode surface were (3.38±0.04)×103 M-1 and (2.02±0.02)×104 M-1, respectively, indicating a higher affinity of dsDNA to Fc+. UV spectra and the influence of ion strength showed that the interaction mode between Fc+ and dsDNA in solution might be a groove binding. The interaction between Fc+ and immobilized DNA was mainly an electrostatic model.
机译:通过紫外光谱和电化学研究了溶液中以及在电极/溶液界面处单链酵母DNA(ssDNA)和双链DNA(dsDNA)与二茂铁(Fc + )的超分子相互作用。方法。共价固定的dsDNA与Fc + 的相互作用导致电极行为从扩散控制变为表面控制,并导致Fc + 还原的电流响应增加,已用于开发新型电化学酵母DNA传感器,用于将固定的酵母ssDNA与其互补的ssDNA(cDNA)进行杂交识别。 Fc + 在ssDNA和dsDNA修饰的金电极表面的吸附常数为(3.38±0.04)×10 3 M -1 和(2.02 ±0.02)×10 4 M -1 ,表明dsDNA对Fc + 的亲和力更高。紫外光谱和离子强度的影响表明,溶液中Fc + 与dsDNA的相互作用方式可能是沟结合。 Fc + 与固定的DNA之间的相互作用主要是静电模型。

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