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结合微滴内LAMP技术用于病原体表面增强拉曼光谱检测的多功能金纳米颗粒

Multifuntional Gold Nanoparticles for the SERS Detection of Pathogens Combined with a LAMP-in-Microdroplets Approach.

作者信息

Teixeira Alexandra, Paris Juan L, Roumani Foteini, Diéguez Lorena, Prado Marta, Espiña Begoña, Abalde-Cela Sara, Garrido-Maestu Alejandro, Rodriguez-Lorenzo Laura

机构信息

International Iberian Nanotechnology Laboratory (INL), Avda Mestre José Veiga, 4715-310 Braga, Portugal.

出版信息

Materials (Basel). 2020 Apr 20;13(8):1934. doi: 10.3390/ma13081934.

Abstract

We developed a droplet-based optofluidic system for the detection of foodborne pathogens. Specifically, the loop-mediated isothermal amplification (LAMP) technique was combined with surface-enhanced Raman scattering (SERS), which offers an excellent method for DNA ultradetection. However, the direct SERS detection of DNA compromises the simplicity of data interpretation due to the variability of its SERS fingerprints. Therefore, we designed an indirect SERS detection method using multifunctional gold nanoparticles (AuNPs) based on the formation of pyrophosphate generated during the DNA amplification by LAMP. Towards this goal, we prepared multifunctional AuNPs involving three components with key roles: (1) thiolated poly(ethylene glycol) as stabilizing agent, (2) 1-naphthalenethiol as Raman reporter, and (3) glutathione as a bioinspired chelating agent of magnesium (II) ions. Thus, the variation in the SERS signal of 1-naphthalenethiol was controlled by the aggregation of AuNPs triggered by the complexation of pyrophosphate and glutathione with free magnesium ions. Using this strategy, we detected , not only in buffer, but also in a food matrix (i.e., ultra-high temperaturemilk) enabled by the massive production of hotspots as a result of the self-assemblies that enhanced the SERS signal. This allowed the development of a microdroplet-LAMP-SERS platform with isothermal amplification and real-time identification capabilities.

摘要

我们开发了一种基于液滴的光流体系统用于检测食源性病原体。具体而言,将环介导等温扩增(LAMP)技术与表面增强拉曼散射(SERS)相结合,后者为DNA超检测提供了一种出色的方法。然而,DNA的直接SERS检测因其SERS指纹图谱的变异性而影响了数据解读的简易性。因此,我们基于LAMP DNA扩增过程中产生的焦磷酸的形成,设计了一种使用多功能金纳米颗粒(AuNP)的间接SERS检测方法。为实现这一目标,我们制备了包含三种起关键作用成分的多功能AuNP:(1)硫醇化聚乙二醇作为稳定剂,(2)1-萘硫醇作为拉曼报告分子,(3)谷胱甘肽作为镁(II)离子的仿生螯合剂。因此,1-萘硫醇的SERS信号变化由焦磷酸和谷胱甘肽与游离镁离子络合引发的AuNP聚集所控制。使用该策略,我们不仅在缓冲液中,而且在食品基质(即超高温灭菌牛奶)中检测到了,这得益于自组装产生大量热点从而增强了SERS信号。这使得开发具有等温扩增和实时鉴定能力的微滴-LAMP-SERS平台成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69af/7215531/846358e41546/materials-13-01934-g001.jpg

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