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DYNAMIC MOLECULAR IMAGING USING NANOPARTICLE PLASMON RESONANCE COUPLING

机译:纳米粒子等离子体共振耦合的动态分子成像

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Distance dependant coupling of plasmon resonances between closely spaced metal nanoparticles offers an attractive alternative for the imaging of molecular interactions. Here we analyzed interactions between molecular specific gold nanoparticles and live cells using a combination of dark-field reflectance and hyperspectral imaging. The results of optical imaging were correlated with transmittance electron microscopy of cell slices and theoretical simulations of optical properties of gold aggregates. We showed that nanoparticles targeted to epidermal growth factor receptor (EGFR) form closely spaced assemblies in the presence of the target molecule. Our experiments with living cells showed that receptor mediated assembly and plasmon coupling of gold bioconjugates result in a spectral shift of more than 100 nm in plasmon resonance frequency of the nanoparticles giving a very bright red signal. We demonstrated that plasmon coupling can be used for imaging of EGFR activation and trafficking as formation of EGFR dimers and further intracellular uptake in early and late endosomes is associated with progressive color changes from green to red, respectively, with each stage of EGFR cycle being associated with a distinct color of EGFR bound nanoparticles. This approach can allow imaging of molecular interactions ranging from protein pairs to multi-protein complexes with sensitivity and SNR that cannot be currently achieved with any other method.
机译:紧密间隔的金属纳米粒子之间的等离激元共振的距离相关耦合为分子相互作用的成像提供了一种有吸引力的替代方法。在这里,我们结合使用暗场反射率和高光谱成像分析了分子特异性金纳米颗粒与活细胞之间的相互作用。光学成像的结果与细胞切片的透射电子显微镜和金聚集体的光学性质的理论模拟相关。我们显示,靶向表皮生长因子受体(EGFR)的纳米粒子在目标分子的存在下形成了紧密排列的组件。我们用活细胞进行的实验表明,金生物共轭物的受体介导的组装和等离激元耦合导致纳米粒子的等离激元共振频率发生超过100 nm的光谱偏移,从而产生非常明亮的红色信号。我们证明等离激元偶联可用于EGFR激活和运输的成像,因为EGFR二聚体的形成以及早期和晚期内体中进一步的细胞内摄取分别与从绿色到红色的进行性颜色变化相关,而EGFR周期的每个阶段都相关具有与EGFR结合的纳米颗粒不同的颜色。这种方法可以使分子相互作用的成像从蛋白质对到具有敏感度和SNR的多蛋白质复合物,而这是目前任何其他方法都无法实现的。

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