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Glutamate oxidase biosensor based on mixed ceria and titania nanoparticles for the detection of glutamate in hypoxic environments

机译:基于混合氧化铈和二氧化钛纳米粒子的谷氨酸氧化酶生物传感器用于低氧环境中的谷氨酸检测

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摘要

We report on the design and development of a glutamate oxidase (GmOx) microelectrode for measuring L-glutamic acid (GluA) in oxygen-depleted conditions, which is based on the oxygen storage and release capacity of cerium oxides. To fabricate the biosensor, a nanocomposite of oxygen-rich ceria and titania nanoparticles dispersed within a semi-permeable chitosan membrane was co-immobilized with the enzyme GmOx on the surface of a Pt microelectrode. The oxygen delivery capacity of the ceria nanoparticles embedded in a biocompatible chitosan matrix facilitated enzyme stabilization and operation in oxygen free conditions. GluA was measured by amperometry at a working potential of 0.6 V vs Ag/AgCl. Detection limits of 0.594 μM and 0.493 μM and a sensitivity of 793 pA/μM (RSD 3.49%, n=5) and 395 pA/μM (RSD 2.48%, n=5) were recorded in oxygenated and deoxygenated conditions, with response times of 2s and 5s, respectively. The biosensor had good operational stability and selectivity against common interfering substances. Operation of the biosensor was tested in cerebrospinal fluid. Preliminary in vivo recording in Sprague-Dawley rats to monitor GluA in the cortex during cerebral ischemia and reperfusion demonstrate a potential application of the biosensor in hypoxic conditions. This method provides a solution to ensure functionality of oxidoreductase enzymes in oxygen-free environments.
机译:我们报告了在缺氧条件下测量L-谷氨酸(GluA)的谷氨酸氧化酶(GmOx)微电极的设计和开发,该电极基于氧化铈的储氧和释放能力。为了制造生物传感器,将分散在半透性壳聚糖膜中的富氧二氧化铈和二氧化钛纳米颗粒的纳米复合物与酶GmOx共同固定在Pt微电极的表面上。嵌入生物相容性壳聚糖基质中的二氧化铈纳米颗粒的氧输送能力促进了酶的稳定和在无氧条件下的操作。通过安培法在相对于Ag / AgCl的0.6V的工作电势下测量GluA。在加氧和脱氧条件下记录的检测限分别为0.594μM和0.493μM,灵敏度为793 pA /μM(RSD 3.49%,n = 5)和395 pA /μM(RSD 2.48%,n = 5),响应时间分别为2s和5s。该生物传感器具有良好的操作稳定性和对常见干扰物质的选择性。在脑脊液中测试了生物传感器的操作。在Sprague-Dawley大鼠中进行的体内初步记录以监测脑缺血和再灌注过程中皮层中的GluA,证明了该生物传感器在低氧条件下的潜在应用。此方法提供了一种解决方案,可确保在无氧环境中氧化还原酶的功能。

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