首页> 美国卫生研究院文献>Biosensors >Development of a Polyphenol Oxidase Biosensor from Jenipapo Fruit Extract (Genipa americana L.) and Determination of Phenolic Compounds in Textile Industrial Effluents
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Development of a Polyphenol Oxidase Biosensor from Jenipapo Fruit Extract (Genipa americana L.) and Determination of Phenolic Compounds in Textile Industrial Effluents

机译:珍妮花(Jenipapo)果实提取物(Genipa americana L.)中多酚氧化酶生物传感器的开发及纺织工业废水中酚类化合物的测定

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摘要

In this work, an innovative polyphenol oxidase biosensor was developed from Jenipapo (Genipa americana L.) fruit and used to assess phenolic compounds in industrial effluent samples obtained from a textile industry located in Jaraguá-GO, Brasil. The biosensor was prepared and optimized according to: the proportion of crude vegetal extract, pH and overall voltammetric parameters for differential pulse voltammetry. The calibration curve presented a linear interval from 10 to 310 µM (r2 = 0.9982) and a limit of detection of 7 µM. Biosensor stability was evaluated throughout 15 days, and it exhibited 88.22% of the initial response. The amount of catechol standard recovered post analysis varied between 87.50% and 96.00%. Moreover, the biosensor was able to detect phenolic compounds in a real sample, and the results were in accordance with standard spectrophotometric assays. Therefore, the innovatively-designed biosensor hereby proposed is a promising tool for phenolic compound detection and quantification when environmental contaminants are concerned.
机译:在这项工作中,从Jenipapo(美国产Genipa L.)果实开发了一种创新的多酚氧化酶生物传感器,并用于评估从巴西Jaraguá-GO的一家纺织工业获得的工业废水样品中的酚类化合物。根据以下条件制备和优化生物传感器:粗植物提取物的比例,pH和用于差分脉冲伏安法的总伏安参数。校正曲线的线性区间为10到310 µM(r 2 = 0.9982),检出限为7 µM。在整个15天中评估了生物传感器的稳定性,它表现出初始响应的88.22%。分析后回收的儿茶酚标准量介于87.50%和96.00%之间。此外,该生物传感器能够检测真实样品中的酚类化合物,其结果与标准分光光度法一致。因此,当涉及环境污染物时,由此提出的创新设计的生物传感器是用于酚类化合物检测和定量的有前途的工具。

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