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Utilization of Pyronine B as Voltammetric Probe for the Determination of DNA

机译:吡咯乙酮伏安法测定DNA

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The electrochemical behaviors of the interaction of pyronine B (PB) with DNA were investigated on the mercury drop working electrode.In pH 2.0 Britton-Robinson (B-R) buffer solution,PB can be easily reduced on the mercury electrode and had a well-defined voltammetric reductive wave at -0.86 V (vs.saturated calomel-electrode,SDE).On the addition of DNA into the PB solution,the reductive peak current of PB decreased with the positive movement of the peak potential and without the appearance of new peaks.The result showed that a new supramolecular complex was formed via intercalation of PB with DNA,which can't be reduced on the Hg electrode.The conditions of interaction and the electrochemical detection were carefully investigated.Under the optimal conditions the decrease of peak current was proportional to the concentration of DNA in the range of 1.0 approx 30.0mg/L with the linear regression equation as DELTA Ip"(nA)=51.84C (mg/L)-94.97 (n=13,gamma=0.993) and the detection limit was 0.90 mg/L.The interaction mechanism was discussed with the aggregation of DNA-PB supramolecular complex and the stoichiometry of the supramolecular complex was calculated with the binding number as 3 and the binding constant as 1.61 x 10~(15).
机译:在汞滴工作电极上研究了吡咯烷B(PB)与DNA相互作用的电化学行为。在pH 2.0的Britton-Robinson(BR)缓冲溶液中,PB可以很容易地在汞电极上还原并具有良好的定义伏安还原波在-0.86 V下(相对于饱和甘汞电极,SDE)。在PB溶液中添加DNA时,PB的还原峰电流随着峰电位的正向移动而降低,并且没有出现新的峰结果表明,PB与DNA的插入形成了一种新的超分子复合物,在Hg电极上无法还原,仔细研究了相互作用条件和电化学检测,在最佳条件下降低了峰值电流线性回归方程为DELTA Ip“(nA)= 51.84C(mg / L)-94.97(n = 13,gamma = 0.993),其与DNA浓度在1.0约30.0mg / L范围内成正比。检出限为0.9在0 mg / L的条件下,以DNA-PB超分子复合物的聚集为讨论机理,计算了结合数为3,结合常数为1.61 x 10〜(15)的超分子复合物的化学计量。

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