Designing an electrochemical biosensor based tyrosinase for highly sensitive and rapid detection of Bisphenol-a and its derivatives

IF 1 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY
O. Bodur, M. Keskin, Başak Avan, Halit Arslan
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引用次数: 0

Abstract

Bisphenol-A (BPA) is a monomer commonly used in the production of epoxy resins, plastic bottles and dental filling materials. Due to its chemical structure, BPA and its derivates shows activity similar to the endocrine hormones. It can bind to estrogen receptors and cause neurological disturbances, even at low doses. Therefore, it is important to determine BPA and its derivatives quickly and sensitively at low concentrations. In this study, a single amperometric tyrosinase enzyme biosensor was designed for the determination of the amount of BPA, BPF (Bisphenol F) and BPS (Bisphenol S) monomers. Tyrosinase was immobilized onto a modified carbon paste electrode by cross-linking with glutaraldehyde. The amount of BPA (BPS and BPF) was determined directly on the reduction of quinone compound that released as a result of the enzymatic reaction at -0.15V. Km(app) value of the designed biosensor for BPA was found 0.00067 ?M, the linear operating range was 0.001-0.005 ?M (a) and 0.03-0.1 ?M (b) and the lower detection limit was found 1 nM for each monomer. It is clear that designed biosensor is enable the fast, efficient and precise determination of BPA and its derivatives released from materials used in dental materials.
设计一种基于酪氨酸酶的电化学生物传感器,用于高灵敏度和快速检测双酚a及其衍生物
双酚a (BPA)是一种常用的单体,用于生产环氧树脂、塑料瓶和牙科填充材料。由于其化学结构,BPA及其衍生物表现出类似于内分泌激素的活性。它可以与雌激素受体结合,即使是低剂量也会引起神经紊乱。因此,在低浓度下快速、灵敏地测定BPA及其衍生物具有重要意义。本研究设计了一种单一的电流型酪氨酸酶生物传感器,用于测定BPA、BPF(双酚F)和BPS(双酚S)单体的含量。用戊二醛交联的方法将酪氨酸酶固定在改性碳糊电极上。双酚a (BPS和BPF)的数量直接取决于酶促反应在-0.15V下释放的醌化合物的减少。所设计的双酚a生物传感器的Km(app)值为0.00067 μ M,线性工作范围为0.001 ~ 0.005 μ M (a)和0.03 ~ 0.1 μ M (b),每种单体的下限为1 nM。所设计的生物传感器能够快速、高效、准确地测定牙科材料中BPA及其衍生物的含量。
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来源期刊
CiteScore
1.80
自引率
0.00%
发文量
76
审稿时长
1 months
期刊介绍: The Journal of the Serbian Chemical Society -JSCS (formerly Glasnik Hemijskog društva Beograd) publishes articles original papers that have not been published previously, from the fields of fundamental and applied chemistry: Theoretical Chemistry, Organic Chemistry, Biochemistry and Biotechnology, Food Chemistry, Technology and Engineering, Inorganic Chemistry, Polymers, Analytical Chemistry, Physical Chemistry, Spectroscopy, Electrochemistry, Thermodynamics, Chemical Engineering, Textile Engineering, Materials, Ceramics, Metallurgy, Geochemistry, Environmental Chemistry, History of and Education in Chemistry.
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