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首页> 外文期刊>Analytical chemistry >Rapid Intracellular Growth of Gold Nanostructures Assisted by Functionalized Graphene Oxide and Its Application for Surface-Enhanced Raman Spectroscopy
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Rapid Intracellular Growth of Gold Nanostructures Assisted by Functionalized Graphene Oxide and Its Application for Surface-Enhanced Raman Spectroscopy

机译:功能化氧化石墨烯辅助金纳米结构的快速细胞内生长及其在表面增强拉曼光谱中的应用

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摘要

Hybridization of metal nanoparticles with graphene oxide for high performance surface-enhanced Raman scattering (SERS) has attracted overwhelming attention in recent years. Herein, a one-pot green route for intracellular synthesis of gold nanostructures assisted by poly(vinylpyrrolidone) (PVP)-functionalized graphene oxide (GO) was proposed. The hybrids obtained [GO/PVP/intracellularly grown gold nanoparticles (IGAuNs)] randomly scattered throughout the cell. Compared with the IGAuNs, the growth of GO/PVP/IGAuNs was remarkably accelerated, which could be attributed to the coordination of PVP enriched on GO. GO/PVP/IGAuNs could serve as excellent SERS probes for ultrasensitive detection of cellular components of cancer cells located in the cytoplasm, nucleoplasm, and nucleolus. The random intracellular distribution of GO/PVP/IGAuNs facilitated the effective Raman characterization of cellular components, which was confirmed by the uniform distribution of SERS signals in the Raman image. The SERS signals induced by GO/PVP/IGAuNs could be collected as early as 15 h, which allowed rapid detection of tumor cells. In conclusion, this facile and green strategy for fast intracellular growth of GO/PVP/IGAuNs offered great potential for biomedical applications.
机译:近年来,金属纳米粒子与氧化石墨烯的杂交以实现高性能的表面增强拉曼散射(SERS)引起了极大的关注。在此,提出了一种一锅绿色路线,用于在聚乙烯吡咯烷酮(PVP)-功能化的氧化石墨烯(GO)辅助下胞内合成金纳米结构。获得的杂种[GO / PVP /细胞内生长的金纳米颗粒(IGAuNs)]随机散布在整个细胞中。与IGAuNs相比,GO / PVP / IGAuNs的生长明显加快,这可以归因于GO中富集的PVP的协同作用。 GO / PVP / IGAuNs可以作为出色的SERS探针,用于超灵敏地检测位于细胞质,核质和核仁中的癌细胞的细胞成分。 GO / PVP / IGAuNs的随机胞内分布促进了细胞成分的有效拉曼表征,这通过拉曼图像中SERS信号的均匀分布得以证实。 GO / PVP / IGAuNs诱导的SERS信号最早可在15 h收集,从而可以快速检测肿瘤细胞。总之,这种简便,绿色的GO / PVP / IGAuNs快速细胞内生长策略为生物医学应用提供了巨大潜力。

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