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Plasmonic labeling of subcellular compartments in cancer cells: multiplexing with fine-tuned gold and silver nanoshells

机译:癌细胞亚细胞区的等离子标记:与微调的金和银纳米壳多重

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摘要

Fine-tuned gold and silver nanoshells were produced via an entirely reformulated synthesis. The new method yielded ultramonodisperse samples, with polydispersity indexes (PI) as low as 0.02 and narrow extinction bands suited for multiplex analysis. A library of nanoshell samples with localized surface plasmon resonances (LSPR) spanning across the visible range was synthesized. Hyperspectral analysis revealed that the average scattering spectrum of 100 nanoshells matched closely to the spectrum of a single nanoshell, indicating an unprecedented low level of nanoparticle-to-nanoparticle variation for this type of system. A cell labeling experiment, targeting different subcellular compartments in MCF-7 human breast cancer cells, demonstrated that these monodisperse nanoparticles can be used as a multiplex platform for single cell analysis at the intracellular and extracellular level. Antibody-coated gold nanoshells targeted the plasma membrane, while silver nanoshells coated with a nuclear localization signal (NLS) targeted the nuclear membrane. A fluorescence counterstaining experiment, as well as single cell hyperspectral microscopy showed the excellent selectivity and specificity of each type of nanoparticle for its designed subcellular compartment. A time-lapse photodegradation experiment confirmed the enhanced stability of the nanoshells over fluorescent labeling and their capabilities for long-term live cell imaging.
机译:经过微调的金和银纳米壳是通过完全重新合成的合成方法生产的。新方法产生了超单分散样品,其多分散指数(PI)低至0.02,并且消光带很窄,适合进行多重分析。合成了具有跨越可见范围的局部表面等离子体共振(LSPR)的纳米壳样品库。高光谱分析表明,100个纳米壳的平均散射光谱与单个纳米壳的光谱非常匹配,这表明此类系统的纳米粒子到纳米粒子的变化空前低。针对MCF-7人乳腺癌细胞中不同亚细胞区室的细胞标记实验表明,这些单分散纳米颗粒可用作细胞内和细胞外水平单细胞分析的多重平台。涂有抗体的金纳米壳靶向质膜,而涂有核定位信号(NLS)的银纳米壳靶向核膜。荧光复染色实验以及单细胞高光谱显微镜显示了每种类型的纳米颗粒对其设计的亚细胞区室具有出色的选择性和特异性。延时光降解实验证实,纳米壳具有比荧光标记更高的稳定性,并且具有用于长期活细胞成像的能力。

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