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Alkyne-Modulated Surface-Enhanced Raman Scattering-Palette for Optical Interference-Free and Multiplex Cellular Imaging

机译:炔烃调制的表面增强拉曼散射调色板,用于无光学干扰和多重细胞成像

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摘要

The alkyne tags possess unique interference-free Raman emissions but are still hindered for further application in the field of biochemical labels due to its extremely weak spontaneous Raman scattering. With the aid of computational chemistry, herein, an alkyne-modulated surface-enhanced Raman scattering (SERS) palette is constructed based on rationally designed 4-ethynylbenzenethiol derivatives for spectroscopic signature, Au@Ag core for optical enhancement and an encapsulating polyallylamine shell for protection and conjugation. Even for the pigment rich plant cell (e.g., pollen), the alkyne-coded SERS tag can be highly discerned on two-dimension distribution impervious to strong organic interferences originating from resonance-enhanced Raman scattering or autofluorescence. In addition, the alkynyl-containing Raman reporters contribute especially narrow emission, band shift-tunable (2100-2300 cm(-1)) and tremendously enhanced Raman signals when the alkynyl group locates at para position of mercaptobenzene ring. Depending on only single Raman band, the suggested alkyne-modulated SERS-palette potentially provides a more effective solution for multiplex cellular imaging with vibrant colors, when the hyperspectral and fairly intense optical noises originating from lower wavenumber region (<1800 cm(-1)) are inevitable under complex ambient conditions.
机译:炔烃标记物具有独特的无干扰拉曼辐射,但由于其极弱的自发拉曼散射而仍被限制在生化标签领域的进一步应用。借助计算化学,本文基于合理设计的4-乙炔基苯硫醇衍生物(用于光谱签名),Au @ Ag核(用于光学增强)和包封的聚烯丙胺壳,构建了炔烃调制的表面增强拉曼散射(SERS)调色板。和共轭。即使对于富含色素的植物细胞(例如花粉),也可以在二维分布上高度识别炔烃编码的SERS标签,而二维分布不受共振增强的拉曼散射或自发荧光引起的强有机干扰的影响。此外,当炔基位于巯基苯环的对位时,含炔基的拉曼报告分子贡献特别窄的发射,带移可调(2100-2300 cm(-1))和极大增强的拉曼信号。当高光谱和相当强烈的光学噪声源自较低波数区域(<1800 cm(-1))时,仅依靠单个拉曼光谱带,建议的炔烃调制的SERS调色板可能会为鲜艳的色彩进行多重细胞成像提供更有效的解决方案)在复杂的环境条件下是不可避免的。

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