O-Fenilendiamin ve Benzokinon BazlıPolimer Filmle Oluşturulan Kolestrol Biyosensörünün Elektrokimyasal Karakterizasyonu

Kezban Kartlaşmiş, Umut Kökbaş, Levent Kayrin
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引用次数: 0

摘要

目的:血液中胆固醇浓度的检测是许多疾病诊断和随访的重要参数,包括心血管和肝胆疾病。目前,胆固醇的常规分析方法多种多样,包括分光光度法、高效液相色谱法和安培法。由于生物传感器具有灵敏度高、响应快、成本低、体积小、连续在线检测和结果可重复等优点,因此旨在开发一种用于胆固醇测定的生物传感器方法。方法:在含有邻苯二胺和苯醌的乙腈-水介质中,在金电极表面电化学固定聚合物膜。胆固醇氧化酶(ChOx,E.C.1.1.3.6)酶通过自形成单层法固定在聚合物膜固定的电极表面上。用制备的电极对胆固醇的测定进行了优化和表征研究。结果:通过监测酶促产生的H2O2在0.70V Ag/AgCl下的氧化电流来测定胆固醇。确定了Au/oPD BQ/ChOx酶电极在0.1M、pH 7.0和30°C的磷酸盐缓冲液中的最佳生物传感器条件。线性工作范围为9.8×10-6-1.1×10-2 mM,胆固醇检测限为9.8×10-3 mM。使用所提出的Au/oPD BQ/ChOx电极对溶液中的总胆固醇进行分析。结论:用聚合物膜将胆固醇氧化酶固定在制备的电极表面,建立了一种简便、重现性好、稳定的测定胆固醇的方法。我们设计的传感器可以扩展,以提高临床上对许多分析物的检测。
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O-Fenilendiamin ve Benzokinon Bazlı Polimer Filmle Oluşturulan Kolesterol Biyosensörünün Elektrokimyasal Karakterizasyonu
Aim: The detection of cholesterol concentration in the blood is an important parameter in the diagnosis and follow-up of many diseases, including cardiovascular and hepatobiliary diseases. Nowadays, various methods have been used for the routine analysis of cholesterol, including spectrophotometric, high-performance liquid chromatography (HPLC), and amperometric methods. Since biosensors have advantages such as high sensitivity, fast response, low cost, small size, continuous online detection, and reproducible results, it is aimed to develop a biosensor method for cholesterol determination. Methods: Polymer film immobilization was performed on the gold electrode surface electrochemically in an acetonitrile-water medium containing o-phenylenediamine and benzoquinone. Cholesterol oxidase (ChOx, E.C. 1.1.3.6) enzyme was immobilized on the polymer film-immobilized electrode surface by the self-forming monolayer method. Optimization and characterization studies were carried out for the determination of cholesterol with the prepared electrodes. Results: The determination of cholesterol was performed via monitoring the oxidation current of enzymatically produced H2O2 at 0.70 V Ag/AgCl. Optimum biosensor conditions were determined for phosphate buffer at 0.1M, pH 7.0, and 30°C for the Au/oPD-BQ/ChOx enzyme electrode. The linear working range is 9.8×10-6-1.1×10-2 mM, and the cholesterol detection limit is 9.8×10-6 mM. The analysis of total cholesterol in solutions was performed using the proposed Au/oPD-BQ/ChOx electrode. Conclusion: A convenient, simple, reproducible, and stable method was developed for the determination of cholesterol by immobilizing cholesterol oxidase on the prepared electrode surface through a polymer film. The sensor we designed can be expanded to improve the detection of many analytes in the clinic.
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