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A Supramolecular Sensing Platform for Phosphate Anions and an Anthrax Biomarker in a Microfluidic Device

机译:在微流控设备中的磷酸阴离子和炭疽生物标记物的超分子传感平台。

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摘要

A supramolecular platform based on self-assembled monolayers (SAMs) has been implemented in a microfluidic device. The system has been applied for the sensing of two different analyte types: biologically relevant phosphate anions and aromatic carboxylic acids, which are important for anthrax detection. A Eu(III)-EDTA complex was bound to β-cyclodextrin monolayers via orthogonal supramolecular host-guest interactions. The self-assembly of the Eu(III)-EDTA conjugate and naphthalene β-diketone as an antenna resulted in the formation of a highly luminescent lanthanide complex on the microchannel surface. Detection of different phosphate anions and aromatic carboxylic acids was demonstrated by monitoring the decrease in red emission following displacement of the antenna by the analyte. Among these analytes, adenosine triphosphate (ATP) and pyrophosphate, as well as dipicolinic acid (DPA) which is a biomarker for anthrax, showed a strong response. Parallel fabrication of five sensing SAMs in a single multichannel chip was performed, as a first demonstration of phosphate and carboxylic acid screening in a multiplexed format that allows a general detection platform for both analyte systems in a single test run with μM and nM detection sensitivity for ATP and DPA, respectively.
机译:在微流体装置中已经实现了基于自组装单分子层(SAMs)的超分子平台。该系统已应用于两种不同分析物类型的传感:生物学相关的磷酸根阴离子和芳香族羧酸,这对于炭疽检测非常重要。 Eu(III)-EDTA复合物通过正交的超分子宿主-客体相互作用与β-环糊精单层结合。 Eu(III)-EDTA共轭物和萘β-二酮作为天线的自组装导致在微通道表面上形成高度发光的镧系元素络合物。通过监测分析物置换天线后红色发射的减少,证明了对不同磷酸根阴离子和芳族羧酸的检测。在这些分析物中,三磷酸腺苷(ATP)和焦磷酸以及作为炭疽生物标志物的二吡啶甲酸(DPA)表现出强烈的响应。在一个多通道芯片中并行制造了五个传感SAM,这是对磷酸盐和羧酸进行多重筛选的第一个演示,它允许在一次测试中对两个分析物系统使用通用检测平台,μM和nM的检测灵敏度为ATP和DPA分别。

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