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上转换荧光-表面增强拉曼散射双模标记用于细胞和活体成像。

Upconversion fluorescence-SERS dual-mode tags for cellular and in vivo imaging.

机构信息

School of Pharmacy, Yantai University , Yantai 264005, China.

出版信息

ACS Appl Mater Interfaces. 2014 Apr 9;6(7):5152-60. doi: 10.1021/am500411m. Epub 2014 Mar 19.

Abstract

Fluorescent-surface enhanced Raman scattering (F-SERS) dual mode tags showed great potential for bioimaging due to the combined advantages of intuitive, fast imaging of fluorescence and multiplex capability of SERS technique. In previously reported F-SERS tags, organic fluorescent dyes or quantum dots were generally selected to generate fluorescence signal. Herein, we reported the first proof-of-concept upconversion fluorescence (UCF)-SERS dual mode tags based on near infrared (NIR) laser (980 nm) excited upconversion nanoparticles (UCNPs) for live-cell and in vivo imaging. Three components involved in this tag: NaYF4:Yb,Er UCNPs@SiO2 serving as the fluorescent core of the tag; silver nanoparticles in situ grown on the surface of UCNPs@SiO2 for generating characteristic Raman signal; and denatured BSA coating rendering the tag's stability and biocompatibility. The UCF-SERS tags integrated the NIR imaging capability of both fluorescent UCNPs and plasmonic SERS nanoprobe, which facilitated dual mode bioimaging investigation, especially for living animals. Ex vivo experiments revealed that with 980 nm and 785 nm NIR laser irradiations, the UCF and SERS signals of the tags could be detected from 3 and 7 mm deep pork tissues, respectively. Furthermore, the in vivo imaging capabilities of UCF-SERS tags were successfully demonstrated on living mice. The developed dual modality tags held great potential for medical diagnostics and therapy.

摘要

荧光表面增强拉曼散射(F-SERS)双模标签由于荧光直观、快速成像和 SERS 技术的多路复用能力的结合优势,在生物成像中具有很大的潜力。在以前报道的 F-SERS 标签中,通常选择有机荧光染料或量子点来产生荧光信号。在此,我们报道了第一个基于近红外(NIR)激光(980nm)激发上转换纳米粒子(UCNPs)的上转换荧光(UCF)-SERS 双模标签的概念验证,用于活细胞和体内成像。该标签涉及三个组件:NaYF4:Yb,Er UCNPs@SiO2 作为标签的荧光核;在 UCNPs@SiO2 表面原位生长的银纳米粒子用于产生特征拉曼信号;以及变性 BSA 涂层赋予标签的稳定性和生物相容性。UCF-SERS 标签集成了荧光 UCNPs 和等离子体 SERS 纳米探针的近红外成像能力,这有利于双模生物成像研究,特别是对活体动物。离体实验表明,用 980nm 和 785nm 的 NIR 激光照射,标签的 UCF 和 SERS 信号可以分别从 3mm 和 7mm 深的猪肉组织中检测到。此外,UCF-SERS 标签的体内成像能力在活体小鼠上得到了成功验证。开发的双模标签在医学诊断和治疗方面具有很大的潜力。

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