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作为固定化模型酶的葡萄糖氧化酶与激光沉积在聚碳酸酯载体上的掺铝和未掺铝的ZnO薄膜之间的无介质相互作用。

Mediator-free interaction of glucose oxidase, as model enzyme for immobilization, with Al-doped and undoped ZnO thin films laser-deposited on polycarbonate supports.

作者信息

V T K P Fidal, Inguva Saikumar, Krishnamurthy Satheesh, Marsili Enrico, Mosnier Jean-Paul, T S Chandra

机构信息

Bhupat and Jyoti Mehta School of Biosciences, Department of Biotechnology, Indian Institute of Technology, Madras, Chennai-600036, India.

School of Physical Sciences and National Centre for Plasma Science and Technology, Dublin City University, Collins Avenue, Dublin9, Ireland.

出版信息

Enzyme Microb Technol. 2017 Jan;96:67-74. doi: 10.1016/j.enzmictec.2016.09.012. Epub 2016 Sep 23.

Abstract

Al doped and undoped ZnO thin films were deposited by pulsed-laser deposition on polycarbonate sheets. The films were characterized by optical transmission, Hall effect measurement, XRD and SEM. Optical transmission and surface reflectometry studies showed good transparency with thicknesses ∼100nm and surface roughness of 10nm. Hall effect measurements showed that the sheet carrier concentration was -1.44×10cm for AZO and -6×10cm for ZnO. The films were then modified by drop-casting glucose oxidase (GOx) without the use of any mediators. Higher protein concentration was observed on ZnO as compared to AZO with higher specific activity for ZnO (0.042Umg) compared to AZO (0.032Umg), and was in agreement with cyclic voltemmetry (CV). X-ray photoelectron spectroscopy (XPS) suggested that the protein was bound by dipole interactions between AZO lattice oxygen and the amino group of the enzyme. Chronoamperometry showed sensitivity of 5.5μAmMcm towards glucose for GOx/AZO and 2.2μAmMcm for GOx/ZnO. The limit of detection (LoD) was 167μM of glucose for GOx/AZO, as compared to 360μM for GOx/ZnO. The linearity was 0.28-28mM for GOx/AZO whereas it was 0.6-28mM for GOx/ZnO with a response time of 10s. Possibly due to higher enzyme loading, the decrease of impedance in presence of glucose was larger for GOx/ZnO as compared to GOx/AZO in electrochemical impedance spectroscopy (EIS). Analyses with clinical blood serum samples showed that the systems had good reproducibility and accuracy. The characteristics of novel ZnO and AZO thin films with GOx as a model enzyme, should prove useful for the future fabrication of inexpensive, highly sensitive, disposable electrochemical biosensors for high throughput diagnostics.

摘要

通过脉冲激光沉积法在聚碳酸酯片材上沉积了掺铝和未掺铝的ZnO薄膜。通过光透射、霍尔效应测量、XRD和SEM对薄膜进行了表征。光透射和表面反射测量研究表明,薄膜具有良好的透明度,厚度约为100nm,表面粗糙度为10nm。霍尔效应测量表明,AZO的面载流子浓度为-1.44×10¹⁹cm⁻³,ZnO的面载流子浓度为-6×10¹⁹cm⁻³。然后通过滴铸葡萄糖氧化酶(GOx)对薄膜进行修饰,且不使用任何媒介物。与AZO相比,在ZnO上观察到更高的蛋白质浓度,ZnO的比活性(0.042Umg⁻¹)高于AZO(0.032Umg⁻¹),这与循环伏安法(CV)一致。X射线光电子能谱(XPS)表明,蛋白质通过AZO晶格氧与酶的氨基之间的偶极相互作用结合。计时电流法显示,GOx/AZO对葡萄糖的灵敏度为5.5μAmM⁻¹cm⁻²,GOx/ZnO对葡萄糖的灵敏度为2.2μAmM⁻¹cm⁻²。GOx/AZO的葡萄糖检测限(LoD)为167μM,而GOx/ZnO的葡萄糖检测限为360μM。GOx/AZO的线性范围为0.28 - 28mM,而GOx/ZnO的线性范围为0.6 - 28mM,响应时间为10s。在电化学阻抗谱(EIS)中,可能由于更高的酶负载量,与GOx/AZO相比,GOx/ZnO在葡萄糖存在下的阻抗下降更大。对临床血清样本的分析表明,该系统具有良好的重现性和准确性。以GOx作为模型酶的新型ZnO和AZO薄膜的特性,应有助于未来制造用于高通量诊断的廉价、高灵敏度、一次性电化学生物传感器。

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