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Ultratrace measurements of nucleic acids by baseline-corrected adsorptive stripping square-wave voltammetry

机译:通过基线校正的吸附溶出方波伏安法对核酸进行超痕量测量

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摘要

The direct and reliable electrochemical detection of DNA is of paramount importance to the development of modern DNA hybridization chips, for the detection of nucleic acids following their electrophoretic separations, or for the sensing of DNA damage and interactions. Such solid electrode voltammetric measurements of nucleic acids have been traditionally hampered by the large solvent decomposition background current that obscures the oxidation signals of the purine nucleobases, This paper reports on the use of adsorptive stripping square-wave voltammetry, in connection with the "moving average baseline correction" approach, for monitoring ultratrace levels of DNA and RNA. Compared to other baseline-fitted or background-subtraction protocols, the moving average baseline scheme is particularly effective in isolating the small purine nucleobase peaks, which appear as small shoulders on the steep background discharge contribution. The remarkably hat baseline thus obtained (up to extreme potentials) leads to a dramatic lowering of the detection limits to the femtomole level and to a performance that compares favorably with that of computerized chronopotentiometric measurements of nucleic acids. Combined with the speed of square-wave voltammetric measurements, such developments should expand the role of voltammetry in DNA diagnostics and nucleic acid research. [References: 22]
机译:直接和可靠的DNA电化学检测对于现代DNA杂交芯片的开发,电泳分离后的核酸检测或DNA损伤和相互作用的感测至关重要。传统上,这种核酸的固体电极伏安法测量受阻于嘌呤核碱基氧化信号的大溶剂分解背景电流的阻碍。本文报道了吸附剥离方波伏安法与“移动平均值”的结合使用。基线校正”方法,用于监测DNA和RNA的超痕量水平。与其他基线拟合或背景扣除方案相比,移动平均基线方案在分离小的嘌呤核苷碱基峰时特别有效,该峰在陡峭的背景放电中表现为小肩峰。如此获得的显着的基线(达到极高的电位)导致检测限显着降低至fe浓度,并且其性能可与计算机计时电位测量相媲美。结合方波伏安法测量的速度,这种发展应扩大伏安法在DNA诊断和核酸研究中的作用。 [参考:22]

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