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首页> 外文期刊>Electroanalysis >Application of elimination voltammetry to the resolution of adenine and cytosine signals in oligonucleotides II. Hetero-oligodeoxynucleotides with different sequences of adenine and cytosine nucleotides
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Application of elimination voltammetry to the resolution of adenine and cytosine signals in oligonucleotides II. Hetero-oligodeoxynucleotides with different sequences of adenine and cytosine nucleotides

机译:消除伏安法在寡核苷酸II中腺嘌呤和胞嘧啶信号解析中的应用。具有腺嘌呤和胞嘧啶核苷酸序列不同的杂聚寡脱氧核苷酸

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摘要

Elimination voltammetry with linear scan (EVLS) was applied to the resolution of reduction signals of adenine (A) and cytosine (C) residues in short synthetic hetero-oligodeoxynucleotides (ODNs) with different sequences of A and C. T e EVLS evaluation required linear sweep voltammograms measured on a hanging mercury drop electrode (HMDE) at different scan rates. Compared to linear sweep voltammetry (LSV) and usual voltammetric methods the EVLS is capable of resolving the overlapped A and C signals, specifically by using the elimination function which eliminates the charging and kinetic currents (I-c, I-k) and conserves the diffusion current (I-d). Since for an adsorbed electroactive substance this elimination function yields a well readable peak - counterpeak signal, the adsorptive stripping (AdS) procedure was favorably used. The adsorption of ODNs was carried out at -0.1 V for accumulation time of 120 s under stirring. It was found that heights and potentials of LSV signals were affected by ODNs concentrations, pH, scan rates, time of accumulation, and stirring speed during the adsorption. While on LSV curves the only one reduction peak of A and C residues was observed in all ODNs, the EVLS yielded two separated peaks in dependence on A, C sequences and pH. Our results showed that the EVLS in connection with the AdS procedure is a useful tool for qualitative and quantitative studies of short ODNs and a promising sensitive method for the development of electrochemical sensor following the ODN sequences.
机译:线性扫描消除伏安法(EVLS)用于解析具有不同序列A和C的短合成杂聚寡脱氧核苷酸(ODN)中腺嘌呤(A)和胞嘧啶(C)残基的还原信号。在悬挂的汞滴电极(HMDE)上以不同扫描速率测量的扫描伏安图。与线性扫描伏安法(LSV)和常规伏安法相比,EVLS能够解析重叠的A和C信号,特别是通过使用消除功能消除了充电和动电流(Ic,Ik)并节省了扩散电流(Id )。由于对于吸附的电活性物质,这种消除功能会产生易于理解的峰-峰信号,因此,最好使用吸附剥离(AdS)程序。在搅拌下,ODN的吸附在-0.1 V下进行120 s的累积时间。发现在吸附过程中LSV信号的高度和电位受ODNs浓度,pH,扫描速率,累积时间和搅拌速度的影响。在LSV曲线上,在所有ODN中仅观察到A和C残基的一个还原峰,而EVLS根据A,C序列和pH值产生两个分离的峰。我们的结果表明,与AdS程序相关的EVLS是对短ODN进行定性和定量研究的有用工具,并且是遵循ODN序列开发电化学传感器的有希望的灵敏方法。

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