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探索外生真菌生物聚合物博特琼脂聚糖用于漆酶生物传感器结构,并应用于多巴胺和螺内酯的测定。

Exploring the exocellular fungal biopolymer botryosphaeran for laccase-biosensor architecture and application to determine dopamine and spironolactone.

机构信息

Universidade Estadual de Londrina (UEL), Centro de Ciências Exatas, Departamento de Química, CEP, 86057-970, Londrina, PR, Brazil.

Universidade Tecnológica Federal do Paraná (UTFPR), Programa de Pós-Graduação em Engenharia Ambiental, Câmpus Londrina, CEP, 86036-370, Londrina, PR, Brazil.

出版信息

Talanta. 2019 Nov 1;204:475-483. doi: 10.1016/j.talanta.2019.06.033. Epub 2019 Jun 11.

DOI:10.1016/j.talanta.2019.06.033
PMID:31357322
Abstract

Laccase was immobilized on a glassy carbon electrode layered with multi-walled carbon nanotubes using a film of botryosphaeran, a fungal (1 → 3)(1 → 6)-β-D-glucan. This novel biosensing platform was characterized by electrochemical impedance spectroscopy and scanning electron microscopy, and applied for the determination of dopamine. Experimental variables such as enzyme concentration, pH value and operational parameters of the electroanalytical technique were optimized. Using square-wave voltammetry, there was a linear dependence of peak current and dopamine concentration within the range of 2.99-38.5 μmol L with a limit of detection of 0.127 μmol L. The biosensor was successfully applied in the determination of dopamine in pharmaceutical injection and synthetic biological samples, and presented good selectivity even in the presence of uric acid and ascorbic acid, as well as other phenolic compounds. The different aspects regarding the operational stability of the laccase biosensor were evaluated, demonstrating good intra-day and inter-day repeatability, and long-storage stability. Furthermore, this biosensor was evaluated in the indirect determination of spironolactone by using the analytical signal of dopamine, presenting a limit of detection of 0.94 μmol L. The results obtained in the analysis of spironolactone in commercial pharmaceutical samples were satisfactory.

摘要

漆酶通过瓶霉菌(1→3)(1→6)-β-D-葡聚糖的薄膜固定在多层碳纳米管修饰的玻碳电极上。该新型生物传感平台通过电化学阻抗谱和扫描电子显微镜进行了表征,并应用于多巴胺的测定。实验变量,如酶浓度、pH 值和电化学分析技术的操作参数都进行了优化。使用方波伏安法,在 2.99-38.5μmol/L 的范围内,峰电流与多巴胺浓度呈线性关系,检测限为 0.127μmol/L。该生物传感器成功地应用于药物注射和合成生物样品中多巴胺的测定,即使在尿酸和抗坏血酸以及其他酚类化合物存在的情况下,也表现出良好的选择性。还评估了漆酶生物传感器操作稳定性的不同方面,表明具有良好的日内和日间重现性以及长期存储稳定性。此外,还通过使用多巴胺的分析信号间接测定螺内酯,该生物传感器的检测限为 0.94μmol/L。在对商业药物样本中螺内酯的分析中,得到了令人满意的结果。

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