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基于理性设计的萘基取代胺官能化离子液体平台用于血红蛋白的共价固定化和直接电化学。

Rationally designed naphthyl substituted amine functionalized ionic liquid platform for covalent immobilization and direct electrochemistry of hemoglobin.

机构信息

Department of Chemistry, School of Advanced SciencesVellore Institute of Technology (VIT), Vellore, 632014, India.

出版信息

Sci Rep. 2019 Jul 18;9(1):10428. doi: 10.1038/s41598-019-46982-3.

Abstract

Herein, we have designed and demonstrated a facile and effective platform for the covalent anchoring of a tetrameric hemoprotein, hemoglobin (Hb). The platform comprises of naphthyl substituted amine functionalized gel type hydrophobic ionic liquid (NpNH-IL) through which the heme protein was covalently attached over a glassy carbon electrode (Hb-NpNH-IL/GCE). UV-vis and FT-IR spectral results confirmed that the Hb on NpNH-IL retains its native structure, even after being covalently immobilized on NpNH-IL platform. The direct electron transfer of redox protein could be realized at Hb-NpNH-IL/GCE modified electrode and a well resolved redox peak with a formal potential of -0.30 V and peak separation of 65 mV was observed. This is due to the covalent attachment of highly conducting NpNH-IL to the Hb, which facilitates rapid shuttling of electrons between the redox site of protein and the electrode. Further, the fabricated biosensor favoured the electrochemical reduction of bromate in neutral pH with linearity ranging from 12 to 228 µM and 0.228 to 4.42 mM with a detection limit and sensitivities of 3 µM, 430.7 µA mM cm and 148.4 µA mM cm respectively. Notably, the fabricated biosensor showed good operational stability under static and dynamic conditions with high selectivity and reproducibility.

摘要

在这里,我们设计并展示了一种简便有效的平台,用于共价固定四聚血红素蛋白血红蛋白 (Hb)。该平台由萘基取代胺功能化凝胶型疏水性离子液体 (NpNH-IL) 组成,通过该平台,血红素蛋白共价连接到玻碳电极 (Hb-NpNH-IL/GCE) 上。紫外可见光谱和傅里叶变换红外光谱结果证实,NpNH-IL 上的 Hb 保留了其天然结构,即使在共价固定在 NpNH-IL 平台上之后也是如此。Hb-NpNH-IL/GCE 修饰电极上可以实现氧化还原蛋白的直接电子转移,并且观察到具有 -0.30 V 的形式电势和 65 mV 的峰分离的良好分辨的氧化还原峰。这是由于高度导电的 NpNH-IL 与 Hb 的共价附着,这促进了电子在蛋白质的氧化还原位点和电极之间的快速穿梭。此外,所制备的生物传感器有利于在中性 pH 下溴酸盐的电化学还原,线性范围为 12 至 228 μM 和 0.228 至 4.42 mM,检测限和灵敏度分别为 3 μM、430.7 μA·mM cm 和 148.4 μA·mM cm。值得注意的是,所制备的生物传感器在静态和动态条件下具有良好的操作稳定性,具有高选择性和重现性。

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