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通过磷光寿命对细胞内氧浓度进行高分辨率成像。

High resolution imaging of intracellular oxygen concentration by phosphorescence lifetime.

作者信息

Kurokawa Hiromi, Ito Hidehiro, Inoue Mai, Tabata Kenji, Sato Yoshifumi, Yamagata Kazuya, Kizaka-Kondoh Shinae, Kadonosono Tetsuya, Yano Shigenobu, Inoue Masahiro, Kamachi Toshiaki

机构信息

Department of Bioengineering, Graduated School of Bioscience and Biotechnology, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8550, Japan.

Education Academy of Computational Life Sciences, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8550, Japan.

出版信息

Sci Rep. 2015 Jun 12;5:10657. doi: 10.1038/srep10657.

Abstract

Optical methods using phosphorescence quenching by oxygen are suitable for sequential monitoring and non-invasive measurements for oxygen concentration (OC) imaging within cells. Phosphorescence intensity measurement is widely used with phosphorescent dyes. These dyes are ubiquitously but heterogeneously distributed inside the whole cell. The distribution of phosphorescent dye is a major disadvantage in phosphorescence intensity measurement. We established OC imaging system for a single cell using phosphorescence lifetime and a laser scanning confocal microscope. This system had improved spatial resolution and reduced the measurement time with the high repetition rate of the laser. By the combination of ubiquitously distributed phosphorescent dye with this lifetime imaging microscope, we can visualize the OC inside the whole cell and spheroid. This system uses reversible phosphorescence quenching by oxygen, so it can measure successive OC changes from normoxia to anoxia. Lower regions of OC inside the cell colocalized with mitochondria. The time-dependent OC change in an insulin-producing cell line MIN6 by the glucose stimulation was successfully visualized. Assessing the detailed distribution and dynamics of OC inside cells achieved by the presented system will be useful to understanding a physiological and pathological oxygen metabolism.

摘要

利用氧对磷光的猝灭作用的光学方法适用于细胞内氧浓度(OC)成像的连续监测和非侵入性测量。磷光强度测量广泛应用于磷光染料。这些染料在整个细胞内普遍存在但分布不均。磷光染料的分布是磷光强度测量中的一个主要缺点。我们使用磷光寿命和激光扫描共聚焦显微镜建立了单细胞OC成像系统。该系统提高了空间分辨率,并通过激光的高重复率缩短了测量时间。通过将普遍分布的磷光染料与这种寿命成像显微镜相结合,我们可以可视化整个细胞和球体内部的OC。该系统利用氧对磷光的可逆猝灭作用,因此可以测量从常氧到缺氧的连续OC变化。细胞内较低的OC区域与线粒体共定位。通过葡萄糖刺激成功地可视化了胰岛素分泌细胞系MIN6中随时间变化的OC变化。评估所提出的系统实现的细胞内OC的详细分布和动态变化将有助于理解生理和病理状态下的氧代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0cc/4464287/b88a5ce634e6/srep10657-f3.jpg

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