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混合CuCoO-GO可实现对抗生素的超灵敏检测,并在纳米界面增强激光解吸/电离。

Hybrid CuCoO-GO enables ultrasensitive detection of antibiotics with enhanced laser desorption/ionization at nano-interfaces.

作者信息

Wu Enhui, Feng Kun, Shi Rui, Lv Rui, Ouyang Fuzhong, Li Shawn S C, Zhong Jun, Liu Jian

机构信息

Institute of Functional Nano and Soft Materials (FUNSOM) , Jiangsu Key Laboratory for Carbon-based Functional Materials and Devices , Joint International Research Laboratory of Carbon-based Functional Materials and Devices , Soochow University , Suzhou , Jiangsu Province 215123 , China . Email:

Department of Biochemistry , Western University , London , Ontario N6A 5C1 , Canada.

出版信息

Chem Sci. 2018 Oct 8;10(1):257-267. doi: 10.1039/c8sc03692f. eCollection 2019 Jan 7.

Abstract

The soaring concerns globally on antibiotic overuse have made calls for the development of rapid and sensitive detection methods urgent. Here we report that the hybrid CuCoO-GO matrix allows for sensitive detection of various antibiotics in combination with MALDI TOF MS. The new matrix is composed of few-layered GO nanosheets decorated with CuCoO nanoparticles with an average size of 10 nm, and exhibits excellent aqueous suspensibility. Accurate quantitation of the sulfonamide antibiotics in milk samples have been demonstrated using a CuCoO-GO matrix and a stable isotope (C)-labeled analyte as the internal standard. Our experiments have achieved lower limits of detection (LOD) by several hundred fold for the detection of a panel of representative antibiotics, in comparison with the literature reports. Both intrabacterial and extrabacterial residual antibiotics can be sensitively detected with our method. We have further investigated the molecular mechanism of the enhanced desorption/ionization efficiency by the CuCoO-GO matrix with synchrotron radiation techniques for the first time. This work provides a sensitive matrix enabling MALDI-TOF MS to be applied in small molecular analysis, but also presents a distinct perspective on the mechanism behind the material functions.

摘要

全球对抗生素过度使用的担忧日益加剧,使得开发快速灵敏的检测方法变得迫在眉睫。在此,我们报告一种混合的CuCoO-GO基质,它能与基质辅助激光解吸电离飞行时间质谱(MALDI TOF MS)结合,实现对多种抗生素的灵敏检测。这种新型基质由平均尺寸为10纳米的CuCoO纳米颗粒修饰的几层氧化石墨烯(GO)纳米片组成,并具有出色的水悬浮性。使用CuCoO-GO基质和稳定同位素(C)标记的分析物作为内标,已证明能对牛奶样品中的磺胺类抗生素进行准确定量。与文献报道相比,我们的实验对一组代表性抗生素的检测实现了数百倍的更低检测限。我们的方法能够灵敏地检测细菌内和细菌外的残留抗生素。我们首次利用同步辐射技术进一步研究了CuCoO-GO基质提高解吸/电离效率的分子机制。这项工作不仅提供了一种使MALDI-TOF MS能够应用于小分子分析的灵敏基质,还对材料功能背后的机制提出了独特的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce0f/6333240/e281bb647d6f/c8sc03692f-f1.jpg

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