Universidade Estadual de Londrina, Centro de Ciências Exatas, Departamento de Química, CEP: 86057-970, Londrina, PR, Brazil.
Universidade Tecnológica Federal do Paraná, Programa de Pós-Graduação em Engenharia Ambiental, Câmpus Londrina, CEP: 86036-370, Londrina, PR, Brazil.
Bioelectrochemistry. 2020 Oct;135:107543. doi: 10.1016/j.bioelechem.2020.107543. Epub 2020 May 15.
Laccase from Botryosphaeria rhodina MAMB-05 was covalently immobilized on carboxymethyl-botryosphaeran by 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide and N-hydroxysuccinimide (EDC/NHS) in aqueous solution. This approach was employed to fabricate a novel laccase-based biosensor to electrochemically quantify quercetin (QCT), using a simple carbon black paste electrode as a transducer. The proposed biosensor was characterized by electrochemical impedance spectroscopy and Nyquist plots were used to evaluate the immobilization of the enzyme. For determining QCT, variables were optimized, that included experimental conditions for laccase immobilization, pH of the supporting electrolyte, and instrumental parameters of the electroanalytical technique. From square-wave-voltammograms, a linear dependence between the cathodic current peak and QCT concentration was observed within the range 4.98-50.0 × 10 mol L, with a theoretical detection limit of 2.6 × 10 mol L. The proposed method was successfully applied to determine QCT in beverages, pharmaceuticals, and biological samples. The proposed biosensor device presented good selectivity in the presence of uric acid, various inorganic ions, as well as other phenolic compounds, demonstrating the potential application of this biosensing platform in chemically complex solutions. Operational and analytical stability of the laccase-biosensor were evaluated, and good intra-day (SD = 1.23%) and inter-day (SD = 2.32%) repeatability, and long storage stability (SD = 3.47%) are presented.
从 Botryosphaeria rhodina MAMB-05 中提取的漆酶通过 1-乙基-3-(3-二甲基氨基丙基)碳二亚胺和 N-羟基琥珀酰亚胺(EDC/NHS)在水溶液中与羧甲基瓶霉多糖共价固定。这种方法被用于制造一种新型的基于漆酶的生物传感器,以电化学方式定量测定槲皮素(QCT),使用简单的碳黑糊电极作为换能器。所提出的生物传感器通过电化学阻抗谱进行了表征,并使用 Nyquist 图来评估酶的固定化。为了测定 QCT,对变量进行了优化,包括酶固定化的实验条件、支持电解质的 pH 值以及电分析技术的仪器参数。从方波伏安图中,可以观察到阴极电流峰值与 QCT 浓度之间呈线性关系,范围为 4.98-50.0 × 10 mol L,理论检测限为 2.6 × 10 mol L。该方法成功应用于测定饮料、药品和生物样品中的 QCT。在存在尿酸、各种无机离子以及其他酚类化合物的情况下,所提出的生物传感器表现出良好的选择性,证明了该生物传感平台在化学复杂溶液中的潜在应用。评估了漆酶生物传感器的操作和分析稳定性,表现出良好的日内(SD=1.23%)和日间(SD=2.32%)重复性以及长期储存稳定性(SD=3.47%)。