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A SERS-active sensor based on heterogeneous gold nanostar core-silver nanoparticle satellite assemblies for ultrasensitive detection of aflatoxinB1

机译:基于异构黄金SERS-active传感器nanostar core-silver纳米卫星程序集的超灵敏检测

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摘要

A surface-enhanced Raman scattering (SERS) sensor based on gold nanostar (Au NS) core-silver nanoparticle (Ag NP) satellites was fabricated for the first time to detect aflatoxinB1 (AFB1). We constructed the SERS sensor using AFB1 aptamer (DNA1)-modified Ag satellites and a complementary sequence (DNA2)-modified Au NS core. The Raman label (ATP) was modified on the surface of Ag satellites. The SERS signal was enhanced when the satellite NP was attached to the Au core NS. The AFB1 aptamer on the surface of Ag satellites would bind to the targets when AFB1 was present in the system, Ag satellites were then removed and the SERS signal decreased. This SERS sensor showed superior specificity for AFB1 and the linear detection range was from 1 to 1000 pg mL(-1) with the limit of detection (LOD) of 0.48 pg mL(-1). The excellent recovery experiment using peanut milk demonstrated that the sensor could be applied in food and environmental detection.
机译:表面增强喇曼散射(ser)传感器基于黄金nanostar core-silver (Au NS)纳米颗粒(Ag) NP)卫星也是伪造的第一次检测aflatoxinB1 (AFB1)。我们建造ser传感器使用AFB1适体(DNA1)修改Ag)卫星和互补的序列(DNA2)修改非盟NS的核心。标签(ATP)是Ag)的表面改性卫星。卫星NP在非盟的核心NS。AFB1适体表面Ag)卫星当AFB1在场会绑定到目标系统中,Ag)卫星被移除而ser信号降低了。显示优越AFB1和特异性线性检测范围从1到1000 pg毫升(1)检测极限(LOD)为0.48pg毫升(1)。证明了传感器使用花生牛奶可以应用在食品和环境检测。

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