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基于光纤束的体内双光子荧光寿命成像显微内窥镜检查

In vivo two-photon fluorescence lifetime imaging microendoscopy based on fiber-bundle.

作者信息

Lin Fangrui, Zhang Chenshuang, Zhao Yihua, Shen Binglin, Hu Rui, Liu Liwei, Qu Junle

出版信息

Opt Lett. 2022 May 1;47(9):2137-2140. doi: 10.1364/OL.453102.

Abstract

Fluorescence lifetime imaging microendoscopy (FLIME) has been reported to investigate the physicochemical microenvironment in biological tissue. In this work, we designed a two-photon (TP) FLIME system based on a fiber-bundle glued with an achromatic mini-objective with 1.4-mm diameter, which was coupled to a standard TP microscope containing a dispersion precompensation module in the laser source. With 840 nm excitation, the field of view and lateral resolution of our system are 390 µm and 1.55 µm, respectively. To examine the capability of imaging in vivo, we obtained Z-stack (0-130 µm) TP-FLIME images from the intestine's surface of a mouse injected with squaraine dye. Further, we utilized the TP-FLIME system to image the kidney, liver, and xenografted tumor at 100-µm depth in vivo with cellular resolution, which features the distribution of cells and tissue structures with better contrast than intensity images. These results demonstrated that the proposed system is capable of measuring fluorescence lifetime in situ and provides a powerful tool to research the deep tissue microenvironment naturally.

摘要

据报道,荧光寿命成像显微内窥镜(FLIME)可用于研究生物组织中的物理化学微环境。在这项工作中,我们设计了一种基于光纤束的双光子(TP)FLIME系统,该光纤束与一个直径为1.4毫米的消色差微型物镜粘合在一起,并与一个在激光源中包含色散预补偿模块的标准TP显微镜耦合。在840纳米激发下,我们系统的视野和横向分辨率分别为390微米和1.55微米。为了检测体内成像能力,我们从小鼠肠道表面获得了注射方酸染料后的Z-stack(0-130微米)TP-FLIME图像。此外,我们利用TP-FLIME系统在体内以细胞分辨率对100微米深度的肾脏、肝脏和异种移植肿瘤进行成像,其特点是细胞和组织结构的分布比强度图像具有更好的对比度。这些结果表明,所提出的系统能够原位测量荧光寿命,并为自然研究深部组织微环境提供了一个强大的工具。

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