Scholz Marek, Dědic Roman, Valenta Jan, Breitenbach Thomas, Hála Jan
Charles University in Prague, Faculty of Mathematics and Physics, Department of Chemical Physics and Optics, Ke Karlovu 3, 121 16 Praha 2, The Czech Republic.
Photochem Photobiol Sci. 2014 Aug;13(8):1203-12. doi: 10.1039/c4pp00121d.
A new setup for direct microspectroscopic monitoring of singlet oxygen ((1)O2) has been developed in our laboratory using a novel near-infrared sensitive InGaAs 2D-array detector. An imaging spectrograph has been inserted in front of the 2D-array detector, which allows us to acquire spectral images where one dimension is spatial and the other is spectral. The work presents a detailed examination of sensitivity and noise characteristics of the setup and its ability to detect (1)O2. The (1)O2 phosphorescence-based images and near-infrared luminescence spectral images recorded from single TMPyP-containing fibroblast cells reflecting spectral changes during irradiation are demonstrated. The introduction of spectral images addresses the issue of a potential spectral overlap of (1)O2 phosphorescence with near-infrared-extended luminescence of the photosensitizer and provides a powerful tool for distinguishing and separating them, which can be applied to any photosensitizer manifesting near-infrared luminescence.
我们实验室开发了一种新装置,用于使用新型近红外敏感铟镓砷二维阵列探测器直接对单线态氧((1)O2)进行显微光谱监测。在二维阵列探测器前插入了一台成像光谱仪,这使我们能够获取光谱图像,其中一个维度是空间维度,另一个是光谱维度。这项工作详细研究了该装置的灵敏度和噪声特性及其检测(1)O2的能力。展示了从单个含四-(N-甲基吡啶基)卟啉(TMPyP)的成纤维细胞记录的基于(1)O2磷光的图像和近红外发光光谱图像,这些图像反映了辐照期间的光谱变化。光谱图像的引入解决了(1)O2磷光与光敏剂近红外延伸发光可能存在光谱重叠的问题,并提供了一种区分和分离它们的强大工具,该工具可应用于任何表现出近红外发光的光敏剂。