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通过光声显微镜和荧光光学显微镜对纳米金标记细胞进行双模态成像。

The Dual-Mode Imaging of Nanogold-Labeled Cells by Photoacoustic Microscopy and Fluorescence Optical Microscopy.

作者信息

Zhang Yu, Tang Zhilie, Wu Yongbo, Xue Yueju, Jia Jinliang

机构信息

1 School of Electronic Engineering, South China Agricultural University, Guangzhou, China.

2 School of Physics and Telecommunications Engineering, South China Normal University, Guangzhou, China.

出版信息

Technol Cancer Res Treat. 2018 Jan 1;17:1533033818793424. doi: 10.1177/1533033818793424.

Abstract

Photoacoustic microscopy is dominantly sensitive to the endogenous optical absorption, while a fluorescence optical microscopy can detect the fluorescence emission to obtain the image of a sample. To some extent, the physical processes of the 2 methods are opposite, one is absorption and another is emission, but both can be used to image cells. In this article, a simultaneous dual-mode imaging system of photoacoustic microscopy and fluorescence optical microscopy is set up to image tobacco cells. Furthermore, gold nanoparticles, which have a large absorption coefficient and enough fluorescence emission with wavelength of 512 nm, are used to label certain drugs and added to the tobacco cells. Then based on the simultaneous dual-mode microscopy imaging system, the photoacoustic microscopy and fluorescence optical microscopy images of gold nanoparticle-labeled tobacco cells are obtained. The final purpose of this experimental research is to detect if the labeled drugs can enter the cells by the positions of the gold nanoparticles. This will help the experts to deliver organic pesticide more accurately and effectively. The experimental results show that by gold nanoparticle labeling technology, the imaging quality of photoacoustic microscopy and fluorescence optical microscopy can be improved, which indicates that the drugs probably enter the tobacco cells successfully.

摘要

光声显微镜主要对内源性光吸收敏感,而荧光光学显微镜可以检测荧光发射以获得样品图像。在某种程度上,这两种方法的物理过程是相反的,一个是吸收,另一个是发射,但两者都可用于细胞成像。在本文中,建立了光声显微镜和荧光光学显微镜的同步双模式成像系统来对烟草细胞成像。此外,金纳米颗粒具有大的吸收系数且在512nm波长处有足够的荧光发射,被用于标记某些药物并添加到烟草细胞中。然后基于同步双模式显微镜成像系统,获得了金纳米颗粒标记的烟草细胞的光声显微镜和荧光光学显微镜图像。这项实验研究的最终目的是通过金纳米颗粒的位置检测标记的药物是否能进入细胞。这将有助于专家更准确有效地递送有机农药。实验结果表明,通过金纳米颗粒标记技术,可以提高光声显微镜和荧光光学显微镜的成像质量,这表明药物可能已成功进入烟草细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff30/6153544/6929b63cfa96/10.1177_1533033818793424-fig1.jpg

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