Development of gold nanoparticles-aptamer nanocomposite for multiplexed analysis of antibiotics and design of molecular logic gates

费斯特共振能量转移 适体 纳米技术 胶体金 共轭体系 材料科学 多路复用 多路复用 抗生素 毒品检测 纳米颗粒 组合化学 荧光 计算机科学 化学 生物 物理 生物信息学 分子生物学 电信 生物化学 量子力学 复合材料 色谱法 聚合物
作者
Jun Yang,Yali Zhang,Junkai Zhao,Junping Ma,Changqing Yi
出处
期刊:Nanotechnology [IOP Publishing]
卷期号:33 (1): 015501-015501 被引量:1
标识
DOI:10.1088/1361-6528/ac2c41
摘要

The widespread use of antibiotics caused severe problems of antibiotic residues in foodstuffs and water, posing a serious threat to public health and thus urging the development of sensitive, selective, and rapid detection methods for antibiotics. In this study, a fluorescence resonance energy transfer (FRET)-based system is developed for the multiplexed analysis of chloramphenicol (CAP) and streptomycin (Strep) with detection limits of 2.51 and 8.69μg l-1, respectively. The FRET-based system consists of Cy3-tagged anti-CAP aptamer-conjugated gold nanoparticles (AuNPs) (referred to as AuNPs-AptCAP) and Cy5-tagged anti-Strep aptamer-conjugated AuNPs (referred to as AuNPs-AptStrep). In addition, AuNPs-AptCAP and AuNPs-AptStrep have been demonstrated to serve as signal transducers for implementing a series of logic operations such as YES, NOT, INH, OR, (2-4)-Decoder and even more complicated multi-level logic gates (OR-INH). Based on the outputs of logic operations, it could be figured out whether targeted analytes were present or not, thus enabling multiplex sensing and evaluation of pollution status. This proof of concept study might provide a new route for the enhanced sensing performance to distinguish different pollution status as well as the design of molecular mimics of logic elements to demonstrate better applicability.

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