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Direct phosphorescent detection of primary event of photodynamic action

机译:光动力动作主要事件的直接磷光检测

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Highly phosphorescent photosensitizer Pd-tetra (o-methoxy-p-sulfo)phenyl porphyrin (Pd-MSPP) was used to follow primary events of photodynamic therapy (PDT). The sensitizer forms complexes with proteins in solutions and biosystems showing remarkable hypsochromic shifts of band and an increase of the quantum yield and life time of phosphorescence at the binding to proteins. It was found the life time of phosphorescence depends mostly on the energy of the lower triplet state of the sensitizer. Therefore photo-chemical quenching of the triplets by cell components is negligible. The quenching of the sensitizer triplets is observed in the presence of free oxygen in biosystems. The degree of quenching varies in dependence on the kind and state of the system and is governed by oxygen concentration and viscosity of the media. It was concluded that the singlet oxygen mechanism of photosensitization is operative only at the primary step of the process.
机译:使用高磷光光敏剂PD-Tetra(O-甲氧基-P-磺磺酸)苯基卟啉(PD-MSPP)遵循光动力治疗的主要事件(PDT)。敏化剂与溶液中的蛋白质和生物系统中的蛋白质形成复合物,其显示带有卓越的低温变化以及与蛋白质结合时磷光的量子产率和终生物的寿命增加。发现磷光的寿命主要取决于敏感剂的下三重态状态的能量。因此,细胞组分的三胞胎的光学化学淬火可忽略不计。在生物系统中的游离氧存在下观察到敏化剂三元组的猝灭。淬火程度根据系统的种类和状态而变化,并且通过氧气浓度和介质的粘度来控制。得出结论是,光敏的单线氧机构仅在该方法的主要步骤中进行操作。

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