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Time-delayed fluorescence imaging of a porphycene derivative

机译:卟啉衍生物的时间延迟荧光成像

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Porphycenes are currently under investigation for use in Photodynamic therapy, which is a promising treatment for cancer. These materials, which display preferential uptake in cancerous cells, also exhibit high fluorescence yields, and can be used for tumour detection. Problems with steady-state fluorescence techniques such as background autofluorescence can be eliminated by the use of time-resolved techniques. Improved contrast can be obtained with time-resolved techniques because of the differing fluorescence lifetimes between autofluorescence and longer-living exogenous photosensitisers. An imaging system was constructed using a fast (200 ps) gated CCD camera and a pulsed 635nm laser diode. A tissue phantom composed of polymethyl methacrylate (PMMA) with thirty-six wells of varying diameter and depth (10 mm to 1 mm) was assembled to test the system. The system was used to record images of a porphycene derivative within the wells at differing concentrations in an organic solvent. A tissue imitator was placed on top of the PMMA block at varying thickness. 10~(-4) M zinc phthalocyanine tetrasulfonate was also placed on top of the block to mimic autofluorescence. The results indicate that the time-gated imaging system can prevent background excitation scatter and fluorescence from a shorter-lived fluorophore from distorting the fluorescence signal from a longer-lived photosensitiser.
机译:斑岩目前正在研究光动力学治疗,这是癌症的有希望的治疗方法。这些材料显示在癌细胞中的优先摄取,也表现出高荧光产率,并且可用于肿瘤检测。通过使用时间分辨技术,可以消除稳态荧光技术的问题,例如背景自发荧光。由于自发荧光和长生物的外源性光敏蛋白之间的不同荧光寿命,可以通过时间分辨技术获得改进的对比度。使用快速(200ps)门控CCD相机和脉冲635nm激光二极管构造成像系统。组装了由三十六个不同直径和深度(10mm至1mm)组成的聚甲基丙烯酸甲酯(PMMA)组成的组织幻影,以测试该系统。该系统用于在有机溶剂中的不同浓度下记录孔内的卟啉衍生物的图像。将组织模拟器以不同的厚度置于PMMA块的顶部。 10〜(4)米锌酞菁四磺酸盐也置于嵌段顶部以模拟自发荧光。结果表明,时间门控成像系统可以防止从较短荧光团的背景激发散射和荧光从扭曲来自更长寿命的光囊炎的荧光信号。

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