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Identification of transient radical species in microbial systems using diffuse reflectance laser flash photolysis

机译:漫反射激光闪光光解法鉴定微生物系统中的瞬态自由基

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摘要

Conventional and diffuse reflectance laser ash photolysis are used to study the disulfonated aluminium phthalocyanine radical anion ( AlPcS2-.), both in solution and in a microbial cell environment. The transient absorption of the AlPcS2-. is characterised using model quenchers and the bimolecular quenching rate constants (k(Q)) for several chemical components present in the outer membranes/cell structures of the microbes studied with AlPcS2 are determined. The generation of the AlPcS2-. by the microbial cells is investigated, and the relative quantum yields of this process are calculated, together with the transient lifetime of the AlPcS2 in a microbial cellular environment. Supporting evidence is found for the involvement of type I processes in the overall photodynamic mechanism of AlPcS2 with the microbes studied. Several biological substrates present in the outer cell structures of the microbial cells studied are capable of quenching the AlPcS2 triplet state to generate the AlPcS2 radical anion (AlPcS2-.), which is the reactive species that mediates type I photodynamic mechanisms. The transient absorption band of the AlPcS2 is observed in the triplet minus singlet absorption spectra of AlPcS2 in the presence of each of the microbes. [References: 27]
机译:常规和漫反射激光灰分光解法用于研究溶液和微生物细胞环境中的二磺化铝酞菁自由基阴离子(AlPcS2-。)。 AlPcS2-的瞬态吸收。用模型猝灭剂表征,用AlPcS2研​​究微生物的外膜/细胞结构中存在的几种化学成分的双分子猝灭速率常数(k(Q))。 AlPcS2-的生成。由微生物细胞进行了研究,并计算了该过程的相对量子产率,以及AlPcS2在微生物细胞环境中的瞬时寿命。有证据表明,I型过程参与了所研究的微生物对AlPcS2的整体光动力机制的影响。存在于研究的微生物细胞的外部细胞结构中的几种生物底物能够淬灭AlPcS2三重态以产生AlPcS2自由基阴离子(AlPcS2-。),这是介导I型光动力机制的反应性物种。在存在每种微生物的情况下,在AlPcS2的三重态减去单重态吸收光谱中观察到AlPcS2的瞬态吸收带。 [参考:27]

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