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首页> 外文期刊>Analytica chimica acta >Electrochemical oxidation of ochratoxin A at a glassy carbon electrode and in situ evaluation of the interaction with deoxyribonucleic acid using an electrochemical deoxyribonucleic acid-biosensor
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Electrochemical oxidation of ochratoxin A at a glassy carbon electrode and in situ evaluation of the interaction with deoxyribonucleic acid using an electrochemical deoxyribonucleic acid-biosensor

机译:a碳毒素A在玻璃碳电极上的电化学氧化,并使用电化学脱氧核糖核酸-生物传感器原位评估与脱氧核糖核酸的相互作用

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摘要

Ochratoxin A (OTA) is a fungal metabolite that occurs in foods,beverages,animal tissues,human blood and presents carcinogenic,teratogenic and nephrotoxic properties.This study concerns the redox properties of OTA using electrochemical techniques which have the potential for providing insights into the biological redox reactions of this molecule.The in situ evaluation of the OTA interaction with DNA using a DNA-electrochemical biosensor is also reported.The oxidation of OTA is an irreversible process proceeds with the transfer of one electron and one proton in a diffusion-controlled mechanism.The diffusion coefficient of OTA was calculated in pH 7 phosphate buffer to be D_o = 3.65 x 10~(-6) cm~2 s~(-1).The oxidation of OTA is also pH dependent for electrolytes with pH < 7 and involves the formation of a main oxidation product which adsorbs strongly at the GCE surface undergoing reversible oxidation.In alkaline electrolytes OTA undergoes chemical deprotonation,the oxidation involving only the transfer of one electron.The electrochemical dsDNA-biosensor was also used to evaluate the possible interaction between OTA and DNA.The experiments have clearly proven that OTA interacts and binds to dsDNA strands immobilized onto a GCE surface,but no evidence of DNA-damage caused by OTA was obtained.
机译:ch曲霉毒素A(OTA)是一种真菌代谢产物,它存在于食品,饮料,动物组织,人血中,并具有致癌,致畸和肾毒性特性。还报道了使用DNA电化学生物传感器原位评估OTA与DNA相互作用的过程.OTA的氧化是不可逆的过程,在扩散控制下一个电子和一个质子的转移在pH 7磷酸盐缓冲液中OTA的扩散系数经计算为D_o = 3.65 x 10〜(-6)cm〜2 s〜(-1)。对于pH <7的电解质,OTA的氧化也取决于pH并涉及形成主要氧化产物,该产物强烈吸附在GCE表面,并经历可逆氧化。在碱性电解液中,OTA经历化学去质子化,其中氧化仅通过一个电子的转移。电化学dsDNA生物传感器也用于评估OTA与DNA之间可能的相互作用。实验已明确证明OTA与固定在GCE表面的dsDNA链相互作用并结合,但没有DNA-的证据。获得了由OTA引起的损坏。

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