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Laccase biosensor based on screen-printed electrode modified with thionine-carbon black nanocomposite, for Bisphenol A detection

机译:基于用硫氨酸-炭黑纳米复合材料修饰的丝网印刷电极的漆酶生物传感器,用于双酚A检测

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摘要

The relevance of Bisphenol A (BPA) in human health is well-known. For this reason we designed and developed a biosensor based on a bionanocomposite (laccase-thionine-carbon black)-modified screen-printed electrode. Thionine, a commercially available dye, was used as electrochemical mediator coupled with a nanostructured carbon black. By means of cyclic voltammetry, the interaction of thionine adsorbed on modified screen printed electrode with laccase/BPA reaction products has been studied. In addition, the immobilization of laccase by physical adsorption on the surface of thionine-carbon black modified screen printed electrodes was investigated. The response of the biosensor has been optimized in terms of enzyme loading, pH and applied potential reaching a linear concentration range of 0.5-50 μM, a sensitivity of 5.0 ± 0.1 nA/μM and a limit-of-detection (LOD) of 0.2 μM. The developed biosensor has been also challenged in tomato juice samples contained in metallic cans where release of BPA due to the epoxy resin coating can be assumed. A satisfactory recovery value comprised between 92% and 120% was obtained.
机译:双酚A(BPA)与人类健康的相关性是众所周知的。因此,我们设计并开发了一种基于生物纳米复合材料(漆酶-硫氨酸-炭黑)修饰的丝网印刷电极的生物传感器。硫氨酸,一种可商购的染料,被用作与纳米结构炭黑偶联的电化学介体。通过循环伏安法研究了修饰丝网印刷电极上的硫氨酸与漆酶/ BPA反应产物的相互作用。另外,研究了通过物理吸附将漆酶固定在硫氨酸-炭黑改性丝网印刷电极的表面上。生物传感器的响应已在酶负载,pH和施加电势达到0.5-50μM的线性浓度范围,5.0±0.1 nA /μM的灵敏度和0.2的检测限(LOD)方面进行了优化微米在金属罐中的番茄汁样品中,开发的生物传感器也受到了挑战,在这些罐中,可以假定由于环氧树脂涂层而导致BPA释放。获得令人满意的回收值,介于92%至120%之间。

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