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SERS tags derived from silver nanoparticles and aryl diazonium salts for cell Raman imaging

机译:来自银纳米粒子和ser标签芳基重氮盐细胞拉曼成像

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摘要

The surface functionalization of silver nanoparticles (NPs) by Raman reporters has stimulated a wide interest in recent years for the design of Surface-Enhanced Raman Spectroscopy (SERS) labels. However, silver NPs are prone to oxidation and aggregation, which strongly limits their applications. The design of stable SERS tags based on Ag NPs still represents a major challenge for Raman bioimaging. We address this issue herein by taking advantage of aryl diazonium salt chemistry to obtain stable Ag NPs functionalized by multifunctional polyaryl layers bearing different Raman reporters (-NO2, -CN, -CCH). The resulting SERS-encoded Ag NPs were characterized by UV-vis absorption, transmission electron microscopy (TEM) and SERS. The formation of multilayers at the surface of Ag NPs gives access to new spectrally distinguishable SERS codes thus broadening the library of available Raman tags. Proof-of-concept Raman imaging experiments were performed on cancer cells (HeLa) after NP uptake, highlighting the large potentials of diazonium salt chemistry to design Ag NPs-based SERS labels for Raman bioimaging.
机译:银的表面功能化纳米粒子由拉曼(NPs)记者近年来激发了广泛的兴趣表面增强拉曼光谱的设计(ser)标签。氧化和聚合,这强烈的限制他们的应用程序。基于Ag NPs仍是一个主要的标签为拉曼bioimaging挑战。在此利用芳基问题重氮盐的化学Ag NPs获得稳定功能化的多功能polyaryl层轴承不同的拉曼记者(no2 - cn,-CCH)。紫外可见吸收、传播电子显微镜(TEM)和爵士。多层膜的表面Ag NPs获得新的幽灵似地的爵士可用的代码从而扩大图书馆拉曼标记。实验进行癌细胞(海拉)NP吸收后,突显出大重氮盐的化学设计的潜力Ag NPs-based ser喇曼bioimaging标签。

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