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首页> 外文期刊>Analytical chemistry >Polymeric Membrane Neutral Phenol-Sensitive Electrodes for Potentiometric G-Quadruplex/Hemin DNAzyme-Based Biosensing
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Polymeric Membrane Neutral Phenol-Sensitive Electrodes for Potentiometric G-Quadruplex/Hemin DNAzyme-Based Biosensing

机译:高分子膜中性酚敏感电极,用于基于电位G-四联体/血红素DNA酶的生物传感

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The first potentiometric transducer for G-quadruplex/hemin DNAzyme-based biosensing has been developed by using potential responses of electrically neutral oligomeric phenols on polymeric membrane electrodes. In the presence of G-quadruplex/hemin DNAzyme and H_2O_2, monomeric phenols (e.g., phenol, methylphenols, and methoxyphenols) can be condensed into oligomeric phenols. Because both substrates and products are nonionic under optimal pH conditions, these reactions are traditionally not considered in designing potentiometric biosensing schemes. However, in this paper, the electrically neutral oligomeric phenols have been found to induce highly sensitive potential responses on quaternary ammonium salt-doped polymeric membrane electrodes owing to their high lipophilicities. In contrast, the potential responses to monomeric phenolic substrates are rather low. Thus, the G-quadruplex/hemin DNAzyme-catalyzed oxidative coupling of monomeric phenols can induce large potential signals, and the catalytic activities of DNAzymes can be probed. A comparison of potential responses induced by peroxidations of 13 monomeric phenols indicates that p-methoxyphenol is the most efficient substrate for potentiometric detection of G-quadruplex/hemin DNAzymes. Finally, two label-free and separation-free potentiometric DNA assay protocols based on the G-quadruplex/hemin DNAzyme have been developed with sensitivities higher than those of colorimetric and fluorometric methods. Coupled with other features such as reliable instrumentation, low cost, ease of miniaturization, and resistance to color and turbid interferences, the proposed polymeric membrane-based potentiometric sensor promises to be a competitive transducer for peroxidase-mimicking DNAzyme-involved biosensing.
机译:通过使用聚合物膜电极上的电中性低聚酚的电势响应,已经开发出了第一个基于G-四链体/血红素DNAzyme的生物传感的电位传感器。在G-四链体/血红素DNA核酶和H_2O_2的存在下,单体酚(例如苯酚,甲基苯酚和甲氧基苯酚)可以缩合为低聚苯酚。由于底物和产物在最佳pH条件下都是非离子的,因此在设计电位生物传感方案时通常不会考虑这些反应。然而,在本文中,由于其高亲脂性,已发现电中性低聚酚可在季铵盐掺杂的聚合物膜电极上诱导高度敏感的电位响应。相反,对单体酚醛底物的潜在响应相当低。因此,单体酚的G-四链体/血红素DNA酶催化的氧化偶联可以诱导大的潜在信号,并且可以探测DNA酶的催化活性。通过比较13种单体酚的过氧化诱导的电位响应,表明对甲氧基苯酚是电位测定G-四链体/血红素DNA酶的最有效底物。最后,已经开发出了两种基于G-四链体/血红素DNA酶的无标记和无分离的电位DNA测定方案,其灵敏度高于比色法和荧光法。与其他功能(例如可靠的仪器,低成本,易于小型化以及对颜色和浑浊干扰的抵抗力)相结合,所提出的基于聚合物膜的电位传感器有望成为模仿过氧化物酶的涉及DNAzyme的生物传感的竞争性传感器。

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