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基于多酚的等离子体纳米载体的纳米尺度表面增强拉曼光谱研究

Nanoscale Surface-Enhanced Raman Spectroscopy Investigation of a Polyphenol-Based Plasmonic Nanovector.

作者信息

Nisini Giacomo, Scroccarello Annalisa, Ripanti Francesca, Fasolato Claudia, Cappelluti Francesco, Capocefalo Angela, Della Pelle Flavio, Compagnone Dario, Postorino Paolo

机构信息

Physics Department, Sapienza University, P.le A. Moro 5, 00185 Rome, Italy.

Department of Bioscience and Technology for Food, Agriculture and Environment, University of Teramo, via R. Balzarini 1, 64100 Teramo, Italy.

出版信息

Nanomaterials (Basel). 2023 Jan 17;13(3):377. doi: 10.3390/nano13030377.

Abstract

The demand for next-generation multifunctional nanovectors, combining therapeutic effects with specific cellular targeting, has significantly grown during the last few years, pursuing less invasive therapy strategies. Polyphenol-conjugated silver nanoparticles (AgNPs) appear as potential multifunctional nanovectors, integrating the biorecognition capability and the antioxidant power of polyphenols, the antimicrobial activity of silver, and the drug delivery capability of NPs. We present a spectroscopic and microscopic investigation on polyphenol-synthesized AgNPs, selecting caffeic acid (CA) and catechol (CT) as model polyphenols and using them as reducing agents for the AgNP green synthesis, both in the presence and in the absence of a capping agent. We exploit the plasmonic properties of AgNPs to collect Surface-Enhanced Raman Scattering (SERS) spectra from the nanosized region next to the Ag surface and to characterize the molecular environment in the proximity of the NP, assessing the orientation and tunable deprotonation level of CA, depending on the synthesis conditions. Our results suggest that the SERS investigation of such nanovectors can provide crucial information for their perspective biomedical application.

摘要

在过去几年中,对于将治疗效果与特定细胞靶向相结合的下一代多功能纳米载体的需求显著增长,人们追求侵入性更小的治疗策略。多酚共轭银纳米颗粒(AgNPs)似乎是潜在的多功能纳米载体,它整合了多酚的生物识别能力和抗氧化能力、银的抗菌活性以及纳米颗粒的药物递送能力。我们对多酚合成的AgNPs进行了光谱和显微镜研究,选择咖啡酸(CA)和儿茶酚(CT)作为模型多酚,并在有和没有封端剂的情况下将它们用作AgNP绿色合成的还原剂。我们利用AgNPs的等离子体特性从Ag表面附近的纳米区域收集表面增强拉曼散射(SERS)光谱,并表征NP附近的分子环境,评估CA的取向和可调质子去耦水平,这取决于合成条件。我们的结果表明,对此类纳米载体的SERS研究可为其未来的生物医学应用提供关键信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83f0/9921702/fe62cd44d1e2/nanomaterials-13-00377-g001.jpg

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