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基于纳秒级超连续谱激光源的多色多光子显微镜。

Multicolor multiphoton microscopy based on a nanosecond supercontinuum laser source.

作者信息

Lefort Claire, O'Connor Rodney P, Blanquet Véronique, Magnol Laetitia, Kano Hideaki, Tombelaine Vincent, Lévêque Philippe, Couderc Vincent, Leproux Philippe

机构信息

Université de Limoges, CNRS UMR 7252, Labex "Sigma-Lim", INRA UMR 1061, F-87000, Limoges, France.

Institute of Applied Physics, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki, 305-8573, Japan.

出版信息

J Biophotonics. 2016 Jul;9(7):709-14. doi: 10.1002/jbio.201500283. Epub 2016 Feb 12.

Abstract

Multicolor multiphoton microscopy is experimentally demonstrated for the first time on a spectral bandwidth of excitation of 300 nm (full width half maximum) thanks to the implementation a nanosecond supercontinuum (SC) source compact and simple with a low repetition rate. The interest of such a wide spectral bandwidth, never demonstrated until now, is highlighted in vivo: images of glioma tumor cells stably expressing eGFP grafted on the brain of a mouse and its blood vessels network labelled with Texas Red(®) are obtained. These two fluorophores have a spectral bandwidth covering the whole 300 nm available. In parallel, a similar image quality is obtained on a sample of mouse muscle in vitro when excited with this nanosecond SC source or with a classical high rate, femtosecond and quasi monochromatic laser. This opens the way for (i) a simple and very complete biological characterization never performed to date with multiphoton processes, (ii) multiple means of contrast in nonlinear imaging allowed by the use of numerous fluorophores and (iii) other multiphoton processes like three-photon ones.

摘要

由于采用了一种紧凑、简单且重复率低的纳秒级超连续谱(SC)源,首次在300纳米(半高全宽)的激发光谱带宽上通过实验证明了多色多光子显微镜技术。如此宽的光谱带宽此前从未得到过证明,其优势在活体实验中得到了凸显:获得了稳定表达eGFP的胶质瘤肿瘤细胞移植到小鼠大脑中的图像以及用德克萨斯红(®)标记的血管网络图像。这两种荧光团的光谱带宽覆盖了整个可用的300纳米。同时,当用这种纳秒级SC源或传统的高重复率飞秒准单色激光激发时,在体外小鼠肌肉样本上获得了类似的图像质量。这为(i)一种迄今从未通过多光子过程实现的简单且非常全面的生物学表征方法、(ii)使用多种荧光团实现非线性成像中的多种对比方式以及(iii)其他多光子过程(如三光子过程)开辟了道路。

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