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Universal surface-enhanced Raman tags : individual nanorods for measurements from the visible to the infrared (514 – 1064 nm)

机译:通用表面增强拉曼标签:单个纳米棒,用于从可见光到红外(514 – 1064 nm)的测量

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摘要

Surface-enhanced Raman scattering (SERS) is a promising imaging modality for use in a variety of multiplexed tracking and sensing applications in biological environments. However, the uniform production of SERS nanoparticle tags with high yield and brightness still remains a significant challenge. Here, we describe an approach based on the controlled co-adsorption of multiple dye species onto gold nanorods to create tags that can be detected across a much wider range of excitation wavelengths (514 – 1064 nm) compared to conventional approaches that typically focus on a single wavelength. This was achieved without the added complexity of nanoparticle aggregation or growing surrounding metallic shells to further enhance the surface-enhanced resonance Raman scattering (SERRS) signal. Correlated Raman and scanning electron microscopy mapping measurements of individual tags were used to clearly demonstrate that strong and reproducible SERRS signals at high particle yields (>92 %) were readily achievable. The polyelectrolyte-wrapped nanorod-dye conjugates were also found to be highly stable as well as non-cytotoxic. To demonstrate the use of these universal tags for the multimodal optical imaging of biological specimens, confocal Raman and fluorescence maps of stained immune cells following nanoparticle uptake were acquired at several excitation wavelengths and compared with dark-field images. The ability to colocalize and track individual optically encoded nanoparticles across a wide range of wavelengths simultaneously will enable the use of SERS alongside other imaging techniques for the real-time monitoring of cell-nanoparticle interactions.
机译:表面增强拉曼散射(SERS)是一种有前途的成像方式,可用于生物环境中的各种多路复用跟踪和传感应用。然而,具有高产量和高亮度的SERS纳米颗粒标签的均匀生产仍然是一个重大挑战。在这里,我们描述一种基于多种染料物种在金纳米棒上的共吸附的可控方法,以创建与常规方法相比通常可以在更大范围的激发波长范围(514 – 1064 nm)上检测到的标签。单波长。无需增加纳米粒子聚集的复杂性或生长周围的金属壳来进一步增强表面增强共振拉曼散射(SERRS)信号即可实现这一点。各个标签的相关拉曼光谱和扫描电子显微镜作图测量结果清楚地表明,可以容易地获得高产量(> 92%)的强且可再现的SERRS信号。还发现聚电解质包裹的纳米棒-染料缀合物是高度稳定的并且无细胞毒性。为了证明将这些通用标签用于生物标本的多峰光学成像,在几个激发波长下获取了纳米粒子摄取后染色免疫细胞的共聚焦拉曼光谱和荧光图,并与暗场图像进行了比较。同时在广泛的波长范围内共定位和跟踪单个光学编码的纳米粒子的能力将使SERS与其他成像技术一起用于细胞-纳米粒子相互作用的实时监测。

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