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一种用于富集和检测双酚 A 的微流控电化学适体传感器。

A microfluidic electrochemical aptasensor for enrichment and detection of bisphenol A.

机构信息

Department of Mechanical Engineering, Yonsei University, Seodaemun-gu, Seoul 120-749, Republic of Korea.

Nano-bio Application Team, National Nanofab Center(NNFC), Daejeon 34141, Republic of Korea.

出版信息

Biosens Bioelectron. 2018 Oct 15;117:457-463. doi: 10.1016/j.bios.2018.06.036. Epub 2018 Jun 23.

Abstract

Bisphenol A (BPA) is an organic monomer used to make common consumer goods such as plastic containers, sports equipment, and cosmetics which are heavily produced worldwide. A growing interest has been drawn to general public as BPA is one of the major endocrine disrupting chemicals threating human health. To date, numerous BPA sensors have been attempted to be developed but important challenges still remained such as limited linearity range, easy to use, and long term response time. To address the present issues, a microfluidic channel should be integrated into an electrochemical aptasensor and it is called Geometrically Activated Surface Interaction (GASI) chip. The vigorous generation of the micro-vortex in the GASI fluidic chamber provides the high collision chances between BPA and anti-BPA aptamer (BPAPT) and consequently more BPA molecules can be captured on the aptasensor surface, which finally results in high sensitivity of the aptasensor. To construct the integrated aptasensor, a miniaturized gold electrode is fabricated using shadow mask and e-beam evaporation process. Afterward, BPAPT is immobilized on a nanostructured gold electrode via thiol chemistry, and other terminus of the aptamer is labeled with a ferrocene (Fc) redox probe. Then, the microfluidic channel is mounted over the miniaturized gold electrode to introduce and enrich BPA to the aptasensor. Upon the specific interaction between BPA and its aptamer, configuration of aptamer is changed so that Fc tag approaches to the electrode surface and direct oxidation signal of Fc and BPA are followed as analytical signals. The unique microfluidic integrated electrochemical aptasensor delivers a wide linear dynamic range over 5 × 10 to 1 × 10 M, with a limit of detection 2 × 10 M. This aptasensor provides a precise platform for simple, selective and more importantly rapid detection of BPA. Such kind of sensing platforms can serve as a fertile ground for designing miniaturized portable sensors.

摘要

双酚 A(BPA)是一种用于制造常见消费品的有机单体,如塑料容器、运动器材和化妆品,这些产品在全球范围内大量生产。由于 BPA 是威胁人类健康的主要内分泌干扰化学物质之一,因此越来越受到公众的关注。迄今为止,已经尝试开发了许多 BPA 传感器,但仍存在重要挑战,例如线性范围有限、易于使用和长期响应时间。为了解决当前的问题,应该将微流道集成到电化学适体传感器中,这被称为几何激活表面相互作用(GASI)芯片。在 GASI 流体腔中剧烈产生的微涡流提供了 BPA 和抗 BPA 适体(BPAPT)之间高碰撞机会,因此更多的 BPA 分子可以被捕获在适体传感器表面上,这最终导致适体传感器具有高灵敏度。为了构建集成的适体传感器,使用阴影掩模和电子束蒸发工艺制造小型化的金电极。之后,通过硫醇化学将 BPAPT 固定在纳米结构的金电极上,并且适体的另一个末端用一个二茂铁(Fc)氧化还原探针标记。然后,将微流道安装在小型化的金电极上,将 BPA 引入并富集到适体传感器上。在 BPA 和其适体之间的特异性相互作用之后,适体的构象发生变化,使得 Fc 标记物接近电极表面,并且可以跟踪 Fc 和 BPA 的直接氧化信号作为分析信号。独特的微流控集成电化学适体传感器在 5×10 到 1×10 M 的宽线性动态范围内提供了检测限为 2×10 M 的检测限。这种适体传感器为 BPA 的简单、选择性和更重要的快速检测提供了精确的平台。这种传感平台可以作为设计小型化便携式传感器的肥沃土壤。

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