首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >3D metal-organic framework as highly efficient biosensing platform for ultrasensitive and rapid detection of bisphenol A
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3D metal-organic framework as highly efficient biosensing platform for ultrasensitive and rapid detection of bisphenol A

机译:3D金属有机框架可作为高效生物传感平台,用于超灵敏和快速检测双酚A

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As is well known, bisphenol A (BPA), usually exists in daily plastic products, is one of the most important endocrine disrupting chemicals. In this work, copper-centered metal-organic framework (Cu-MOF) was synthesized, which was characterized by SEM, TEM, XRD, FTIR and electrochemical method. The resultant Cu-MOF was explored as a robust electrochemical biosensing platform by choosing tyrosinase (Tyr) as a model enzyme for ultrasensitive and rapid detection of BPA. The Cu-MOF provided a 3D structure with a large specific surface area, which was beneficial for enzyme and BPA absorption, and thus improved the sensitivity of the biosensor. Furthermore, Cu-MOF as a novel sorbent could increase the available BPA concentration to react with tyrosinase through pi-pi. stacking interactions between BPA and Cu-MOF. The Tyr biosensor exhibited a high sensitivity of 0.2242 A M-1 for BPA, a wide linear range from 5.0 x 10(-8) to 3.0 x 10-6 mol L-1, and a low detection limit of 13 nmol L-1. The response time for detection of BPA is less than 11 s. The proposed method was successfully applied to rapid and selective detection of BPA in plastic products with satisfactory results. The recoveries are in the range of 94.0-101.6% for practical applications. With those remarkable advantages, MOFs-based 3D structures show great prospect as robust biosensing platform for ultrasensitive and rapid detection of BPA. Crown Copyright (C) 2014 Published by Elsevier B.V. All rights reserved.
机译:众所周知,双酚A(BPA)通常存在于日常塑料制品中,是最重要的破坏内分泌的化学物质之一。本文通过SEM,TEM,XRD,FTIR和电化学方法表征了以铜为中心的金属有机骨架(Cu-MOF)。通过选择酪氨酸酶(Tyr)作为超灵敏和快速检测BPA的模型酶,将所得的Cu-MOF用作稳健的电化学生物传感平台。 Cu-MOF提供了具有大比表面积的3D结构,这有利于酶和BPA的吸收,因此提高了生物传感器的灵敏度。此外,Cu-MOF作为新型吸附剂可以增加可利用的BPA浓度,使其通过pi-pi与酪氨酸酶反应。 BPA和Cu-MOF之间的堆积相互作用。 Tyr生物传感器对BPA的灵敏度为0.2242 A M-1,线性范围从5.0 x 10(-8)到3.0 x 10-6 mol L-1,检测限很低,为13 nmol L-1 。检测BPA的响应时间少于11 s。该方法成功地应用于塑料产品中双酚A的快速,选择性检测,结果令人满意。对于实际应用,回收率在94.0-101.6%的范围内。凭借这些显着的优势,基于MOF的3D结构作为用于BPA超灵敏和快速检测的强大生物传感平台具有广阔的前景。官方版权(C)2014,Elsevier B.V.保留所有权利。

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