Gandhi Mansi, Rajagopal Desikan, Parthasarathy Sampath, Raja Sudhakaran, Huang Sheng-Tung, Senthil Kumar Annamalai
Nano and Bioelectrochemistry Research Laboratory, Department of Chemistry, School of Advanced Sciences, Carbon dioxide Research and Green Technology Centre, and Aquaculture Biotechnology Laboratory, Department of Integrative Biology, School of Biosciences and Technology, Vellore Institute of Technology, Vellore 632014, India.
Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, Florida 32827, United States.
ACS Omega. 2018 Sep 30;3(9):10823-10835. doi: 10.1021/acsomega.8b01296. Epub 2018 Sep 7.
Most of the common redox mediators such as organic dyes and cyanide ligand-associated metal complex systems that have been used for various electrochemical applications are hazardous nature. Sesamol, a vital nutrient that exists in natural products like sesame seeds and oil, shows several therapeutic benefits including anticancer, antidiabetic, cardiovascular protective properties, etc. Herein, we introduce a new electrochemical redox platform based on a sesamol derivative, sesamol-quinone (Ses-Qn; oxidized sesamol), prepared by the in situ electrochemical oxidation method on a carbon nanoblack chemically modified glassy carbon electrode surface (GCE/CB@Ses-Qn) in pH 7 phosphate buffer solution, for nontoxic and sustainable electrochemical, electroanalytical, and bioelectroanalytical applications. The new Ses-Qn-modified electrode showed a well-defined redox peak at = 0.1 V vs Ag/AgCl without any surface-fouling behavior. Following three representative applications were demonstrated with this new redox system: (i) simple and quick estimation of sesamol content in the natural herbal products by electrochemical oxidation on GCE/CB followed by analyzing the oxidation current signal. (ii) Utilization of the GCE/CB@Ses-Qn as a transducer, bioelectrocatalytic reduction, and sensing of HO after absorbing the horseradish peroxidase (HRP)-based enzymatic system on the underlying surface. The biosensor showed a highly selective HO signal with current sensitivity and detection limit values 0.1303 μA μM and 990 nM, respectively, with tolerable interference from the common biochemicals like dissolved oxygen, cysteine, ascorbic acid, glucose, xanthine, hypoxanthine, uric acid, and hydrazine. (iii) Electrochemical immunosensing of white spot syndrome virus by sequentially modifying primary antibody, antigen, secondary antibody (HRP-linked), and bovine serum albumin on the redox electrode, followed by selective bioelectrochemical detection of HO.
大多数常见的氧化还原介质,如用于各种电化学应用的有机染料和氰化物配体相关的金属络合物系统,都具有危险性。芝麻酚是一种存在于芝麻籽和芝麻油等天然产物中的重要营养物质,具有多种治疗功效,包括抗癌、抗糖尿病、心血管保护特性等。在此,我们介绍一种基于芝麻酚衍生物芝麻酚醌(Ses-Qn;氧化芝麻酚)的新型电化学氧化还原平台,该平台是通过在pH 7的磷酸盐缓冲溶液中,在化学修饰的玻碳电极表面(GCE/CB@Ses-Qn)上采用原位电化学氧化法制备的,用于无毒且可持续的电化学、电分析和生物电分析应用。新型Ses-Qn修饰电极在相对于Ag/AgCl为0.1 V时显示出明确的氧化还原峰,且无任何表面污染行为。利用这个新的氧化还原系统展示了以下三个代表性应用:(i)通过在GCE/CB上进行电化学氧化,然后分析氧化电流信号,简单快速地估算天然草药产品中的芝麻酚含量。(ii)将GCE/CB@Ses-Qn用作传感器,在其表面吸附基于辣根过氧化物酶(HRP)的酶系统后,对过氧化氢进行生物电催化还原和传感。该生物传感器显示出对过氧化氢具有高选择性的信号,电流灵敏度和检测限分别为0.1303 μA μM和990 nM,对溶解氧、半胱氨酸、抗坏血酸、葡萄糖、黄嘌呤、次黄嘌呤、尿酸和肼等常见生物化学物质具有可耐受的干扰。(iii)通过在氧化还原电极上依次修饰一抗、抗原、二抗(与HRP连接)和牛血清白蛋白,然后对过氧化氢进行选择性生物电化学检测,实现对白斑综合征病毒的电化学免疫传感。