Ivandini T A, Sarada B V, Rao T N, Fujishima A
Department of Applied Chemistry, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.
Analyst. 2003 Jul;128(7):924-9. doi: 10.1039/b301483e.
Boron-doped diamond (BDD) electrodes have been examined for the electrochemical oxidation of underivatized-nucleic acids in terms of single stranded and double stranded DNA. Cyclic voltammetry and square wave voltammetry have been used to study the oxidation reactions and to detect DNA without derivatization or hydrolysis steps. At the diamond electrode, at least two well-defined voltammetric peaks were observed for both single stranded and double stranded DNA. Diamond electrode is the first material to show a well-defined voltammetric peaks for adenine group oxidation directly in the helix structure of nucleic acid due to its wide potential window. For single stranded DNA, a third peak, related to the pyrimidine group oxidation was also observed. As-deposited diamond film with predominantly hydrogen-terminated surface exhibited superior performance over oxygen-terminated diamond in terms of sensitivity. However, by optimizing the ionic strength, sensitivity of O-terminated films could be improved. Linear calibration results have shown linearity of current with concentration in the range 0.1-8 microg mL(-1) for both guanine and adenine residues at as-deposited BDD. Detection limits (S/N = 3) of 3.7 and 10 ng mL(-1) for adenine and guanine residue in single stranded DNA, respectively, and 5.2 and 10 ng mL(-1) for adenine and guanine residue in double stranded DNA, respectively, were observed. This work shows the promising use of diamond as an electrochemical detector for direct detection of nucleic acids. The results also show the possibility of using the oxidation peak current of adenine group that is more sensitive for the direct detection of nucleicacids.
已对掺硼金刚石(BDD)电极用于未衍生化核酸的电化学氧化进行了研究,涉及单链和双链DNA。循环伏安法和方波伏安法已被用于研究氧化反应以及检测无需衍生化或水解步骤的DNA。在金刚石电极上,单链和双链DNA均观察到至少两个明确的伏安峰。由于其宽电位窗口,金刚石电极是第一种能在核酸螺旋结构中直接显示腺嘌呤基团氧化明确伏安峰的材料。对于单链DNA,还观察到与嘧啶基团氧化相关的第三个峰。表面主要为氢终止的沉积态金刚石膜在灵敏度方面表现优于氧终止的金刚石膜。然而,通过优化离子强度,氧终止膜的灵敏度可以提高。线性校准结果表明,对于沉积态BDD上的鸟嘌呤和腺嘌呤残基,电流与浓度在0.1 - 8μg mL⁻¹范围内呈线性关系。单链DNA中腺嘌呤和鸟嘌呤残基的检测限(S/N = 3)分别为3.7和10 ng mL⁻¹,双链DNA中腺嘌呤和鸟嘌呤残基的检测限分别为5.2和10 ng mL⁻¹。这项工作表明金刚石有望用作直接检测核酸的电化学检测器。结果还表明利用对核酸直接检测更敏感的腺嘌呤基团氧化峰电流的可能性。