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Interaction of anticancer herbal drug berberine with DNA immobilized on the glassy carbon electrode

机译:抗癌药黄连素与固定在玻璃碳电极上的DNA的相互作用

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The interaction of anticancer herbal drug berberine with double-strand DNA (dsDNA) and single-strand DNA (ssDNA) in solution, dsDNA immobilized on the glassy carbon electrode prepared by Langmuir-Blodgett technique, were investigated by electrochemical techniques (cyclic voltammetry, differential pulse voltammetry) and UV spectroscopy. The presence of DNA results in a decrease of the currents and a negative shift of the electrode potentials from the DPV curves of berberine, indicating the dominance of electrostatic interactions. The spectroscopy data confirmed that the predominant interaction between berberine and DNA is electrostatic. The binding of berberine with DNA, when analyzed in terms of the cooperative Hill model, yields the binding constant K-a=2.2(+/- 0.2) x 10(4) M-1, corresponding to the dissociation equilibrium constant K-d=4.6(+/- 0.3) x 10(-5) M, which in the range of the applied concentrations, of DNA (bp) and berberine, and a Hill coefficient m = 1.82(+/- 0.08) in Britton-Robinson buffer solution (0.05 M, pH 5.72) at T=298 K (25 degrees C). Apparently, at least two molecules of berberine have to bind as a couple to cause, e.g., the "elementary event" of current change. The results are suggestive for further fruitful applications of this anticancer herbal drug and DNA-modified electrodes. (C) 2008 Elsevier B.V. All rights reserved.
机译:通过电化学技术(循环伏安法,差示电化学法)研究了抗癌草药黄连素与溶液中固定在Langmuir-Blodgett技术制备的玻璃碳电极上的双链DNA(dsDNA)和单链DNA(ssDNA)的相互作用。脉冲伏安法)和紫外光谱。 DNA的存在导致电流减少,而小ber碱的DPV曲线使电极电位负移,表明静电相互作用占主导地位。光谱数据证实,小ine碱和DNA之间的主要相互作用是静电。当按照协同希尔模型分析小碱与DNA的结合时,结合常数Ka = 2.2(+/- 0.2)x 10(4)M-1,对应于解离平衡常数Kd = 4.6(+ /-0.3)x 10(-5)M,在施加的浓度范围内,在Britton-Robinson缓冲溶液中的DNA(bp)和小ber碱和Hill系数m = 1.82(+/- 0.08) M,pH 5.72)在T = 298K(25℃)。显然,至少两个小碱分子必须成对结合,以引起例如电流变化的“基本事件”。该结果暗示了该抗癌草药和DNA修饰电极的进一步成功应用。 (C)2008 Elsevier B.V.保留所有权利。

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