Laboratorio di Chimica Analitica, Dipartimento di Scienze e Tecnologie Biologiche e Ambientali (Di.S.Te.B.A.), Università del Salento, 73100, Lecce, Italy.
Istituto Italiano di Tecnologia, Nanobiointeractions & Nanodiagnostics, Via Morego 30, 16163, Genova, Italy.
Mikrochim Acta. 2023 Sep 30;190(10):425. doi: 10.1007/s00604-023-05992-9.
The ability of shape-controlled octahedral Pt nanoparticles to act as nanozyme mimicking glucose oxidase enzyme is reported. Extended {111} particle surface facets coupled with a size comparable to natural enzymes and easy-to-remove citrate coating give high affinity for glucose, comparable to the enzyme as proven by the steady-state kinetics of glucose electrooxidation. The easy and thorough removal of the citrate coating, demonstrated by X-ray photoelectron spectroscopy analysis, allows a highly stable deposition of the nanozymes on the electrode. The glucose electrochemical detection (at -0.2 V vs SCE) shows a linear response between 0.36 and 17 mM with a limit of detection of 110 μM. A good reproducibility has been achieved, with an average relative standard deviation (RSD) value of 9.1% (n = 3). Similarly, a low intra-sensor variability has been observed, with a RSD of 6.6% (n = 3). Moreover, the sensor shows a long-term stability with reproducible performances for at least 2 months (RSD: 7.8%). Tests in saliva samples show the applicability of Pt nanozymes to commercial systems for non-invasive monitoring of hyperglycemia in saliva, with recoveries ranging from 92 to 98%.
报道了具有形状可控八面体结构的 Pt 纳米粒子作为葡萄糖氧化酶纳米模拟酶的能力。扩展的{111}颗粒表面面加上与天然酶相当的尺寸和易于去除的柠檬酸根涂层赋予了对葡萄糖的高亲和力,通过葡萄糖电氧化的稳态动力学证明与酶相当。通过 X 射线光电子能谱分析证明,柠檬酸根涂层的易于和彻底去除允许纳米酶高度稳定地沉积在电极上。葡萄糖电化学检测(在 -0.2 V 相对于 SCE)在 0.36 和 17 mM 之间呈现线性响应,检测限为 110 μM。实现了良好的重现性,平均相对标准偏差 (RSD) 值为 9.1%(n = 3)。同样,观察到传感器内的低变异性,RSD 为 6.6%(n = 3)。此外,该传感器具有至少 2 个月的长期稳定性和可重复的性能(RSD:7.8%)。在唾液样本中的测试表明,Pt 纳米酶适用于商业系统,可用于非侵入性监测唾液中的高血糖,回收率范围为 92%至 98%。