Sudalaimani S, Arun S, Esokkiya A, Sanjeev Kumar K, Sivakumar C, Giribabu K
Electrodics and Electrocatalysis Division, CSIR-Central Electrochemical Research Institute, Karaikudi-630 003, Tamil Nadu, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad-201002, India.
Analyst. 2023 Mar 27;148(7):1451-1459. doi: 10.1039/d2an01663j.
Sensing acetylcholine has been predominantly based on enzymatic strategies using acetylcholine esterase and choline oxidase because of its electrochemical inertness. Electrified liquid-liquid interfaces are not limited to oxidation/reduction processes, and can be utilized to detect non-redox molecules which cannot be detected using conventional solid electrodes. In this study, a disposable micropipette tip based liquid-organogel interface, in the presence/absence of calixarene has been developed as a platform for sensing acetylcholine. We also explored a liquid-liquid interface approach for sensing acetylcholine using a pre-pulled glass micropipette. In both approaches, the configuration, , liquid-organogel and liquid-liquid interface-current linearly increases during the backward transfer of acetylcholine. The simple and facilitated ion transfer of acetylcholine across the liquid-organogel exhibited a linear range of 10-50 μM and 1-30 μM with a detection limit of 0.18 μM and 0.23 μM and a sensitivity of 9.52 nA μM and 9.20 nA μM, respectively. Whereas, the detection limit of simple and facilitated ion transfer of liquid-liquid interface using pre-pulled glass micropipette was found to be 0.42 μM and 0.13 μM with a sensitivity of 5 × 10 nA μM and 3.39 × 10 nA μM. The results indicate that the liquid-organogel configuration supported on a disposable micropipette tip without any pre-fabrication is highly suitable for electrified soft interface sensing applications.
由于乙酰胆碱具有电化学惰性,对其进行传感主要基于使用乙酰胆碱酯酶和胆碱氧化酶的酶促策略。带电的液-液界面不限于氧化/还原过程,可用于检测使用传统固体电极无法检测的非氧化还原分子。在本研究中,已开发出一种基于一次性微量移液器吸头的液-有机凝胶界面,该界面在有/无杯芳烃的情况下作为传感乙酰胆碱的平台。我们还探索了一种使用预拉制玻璃微量移液器传感乙酰胆碱的液-液界面方法。在这两种方法中,在乙酰胆碱反向转移过程中,液-有机凝胶和液-液界面的电流配置呈线性增加。乙酰胆碱在液-有机凝胶中的简单且促进的离子转移表现出线性范围为10 - 50 μM和1 - 30 μM,检测限分别为0.18 μM和0.23 μM,灵敏度分别为9.52 nA/μM和9.20 nA/μM。而使用预拉制玻璃微量移液器的液-液界面的简单且促进的离子转移的检测限分别为0.42 μM和0.13 μM,灵敏度分别为5×10 nA/μM和3.39×10 nA/μM。结果表明,基于一次性微量移液器吸头且无需任何预制的液-有机凝胶配置非常适合带电软界面传感应用。