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利用暗场显微光谱和免疫靶向纳米颗粒对活细胞中具有折射率敏感性的表皮生长因子受体进行分子成像。

Molecular imaging of epidermal growth factor receptor in live cells with refractive index sensitivity using dark-field microspectroscopy and immunotargeted nanoparticles.

作者信息

Curry Adam C, Crow Matthew, Wax Adam

机构信息

Duke University, Department of Biomedical Engineering and Fitzpatrick Institute of Photonics, Durham, North Carolina 27708, USA.

出版信息

J Biomed Opt. 2008 Jan-Feb;13(1):014022. doi: 10.1117/1.2837450.

Abstract

We present a study using plasmonic nanoparticles (NPs) to image epidermal growth factor receptor (EGFR) in live cells. Through detailed analysis of the NP scattering spectra, we determine the intracellular refractive index (RI) within attoliter volumes inside of the living cells. Molecular imaging is demonstrated using anti-EGFR labeled gold nanospheres delivered to cancer cells that overexpress EGFR, with targeted binding confirmed by appropriate control experiments. RI determination is achieved by measurement of the bound NPs' scattering spectra, acquired using a precision dark-field microspectroscopy system and through careful characterization of the NP properties throughout the immuno-labeling procedure. To demonstrate the effect of receptor-mediated uptake, the data are compared to similar spectral measurements using antibody-free NPs, taken up by the cells through nonspecific mechanisms. In these experiments, NP aggregation introduces interparticle effects in the scattering spectra, suggesting that EGFR-mediated internalization of NPs may provide an advantage for maintaining NP isolation upon uptake. The results of this study show the potential utility of dark-field microspectroscopy and labeled NPs for live cell imaging. By demonstrating RI sensitivity over nanometer length scales, this study also presents a potential new avenue for assessing the structure and dynamics of live cells.

摘要

我们展示了一项利用等离子体纳米颗粒(NPs)对活细胞中的表皮生长因子受体(EGFR)进行成像的研究。通过对NP散射光谱的详细分析,我们确定了活细胞内飞升体积内的细胞内折射率(RI)。使用递送至过表达EGFR的癌细胞的抗EGFR标记金纳米球进行分子成像,并通过适当的对照实验确认靶向结合。通过使用精密暗场显微光谱系统测量结合NP的散射光谱,并在整个免疫标记过程中仔细表征NP特性来实现RI测定。为了证明受体介导的摄取的效果,将数据与使用无抗体NP的类似光谱测量进行比较,这些NP通过非特异性机制被细胞摄取。在这些实验中,NP聚集在散射光谱中引入了粒子间效应,这表明EGFR介导的NP内化可能为摄取后维持NP隔离提供优势。本研究结果显示了暗场显微光谱和标记NP用于活细胞成像的潜在效用。通过展示纳米长度尺度上的RI敏感性,本研究还提出了一条评估活细胞结构和动力学的潜在新途径。

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