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Thiocyanate potentiates antimicrobial photodynamic therapy: In situ generation of the sulfur trioxide radical anion by singlet oxygen

机译:硫氰酸盐增强抗微生物光动力疗法:单线态氧原位产生三氧化硫自由基阴离子

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摘要

Antimicrobial photodynamic therapy (PDT) is used for the eradication of pathogenic microbial cells and involves the light excitation of dyes in the presence of O2, yielding reactive oxygen species including the hydroxyl radical (OH) and singlet oxygen (1O2). In order to chemically enhance PDT by the formation of longer-lived radical species, we asked whether thiocyanate (SCN) could potentiate the methylene blue (MB) and light-mediated killing of the gram-positive Staphylococcus aureus and the gram-negative Escherichia coli. SCN enhanced PDT (10 μM MB, 5J/cm2 660 nm hv) killing in a concentration-dependent manner of S. aureus by 2.5 log10 to a maximum of 4.2 log10 at 10 mM (P < 0.001) and increased killing of E. coli by 3.6 log10 to a maximum of 5.0 log10 at 10 mM (P < 0.01). We determined that SCN rapidly depleted O2 from an irradiated MB system, reacting exclusively with 1O2, without quenching the MB excited triplet state. SCN reacted with 1O2, producing a sulfur trioxide radical anion (a sulfur-centered radical demonstrated by EPR spin trapping). We found that MB-PDT of SCN in solution produced both sulfite and cyanide anions, and that addition of each of these salts separately enhanced MB-PDT killing of bacteria. We were unable to detect EPR signals of OH, which, together with kinetic data, strongly suggests that MB, known to produce OH and 1O2, may, under the conditions used, preferentially form 1O2.
机译:抗菌光动力疗法(PDT)用于消灭病原性微生物细胞,涉及在O2存在下对染料的光激发,产生包括羟基( OH)和单线态氧的活性氧( 1 O2)。为了通过形成更长寿的自由基物种化学增强PDT,我们询问硫氰酸盐(SCN -)是否能增强亚甲基蓝(MB)和光介导的对革兰氏阳性葡萄球菌的杀灭作用金黄色葡萄球菌和革兰氏阴性大肠杆菌。 SCN -增强的PDT(10μMMB,5J / cm 2 660 nm hv)以浓度依赖的方式杀死金黄色葡萄球菌2.5 log10至最大值4.2 log10在10 mM时(P <0.001),对大肠杆菌的杀死增加3.6 log10,在10 mM时最大杀伤力为5.0 log10(P <0.01)。我们确定SCN -从辐照过的MB系统中快速消耗了O2,仅与 1 O2反应,而没有淬灭MB激发的三重态。 SCN - 1 O2反应,生成三氧化硫自由基阴离子(EPR自旋捕获显示出以硫为中心的自由基)。我们发现溶液中SCN -的MB-PDT会同时生成亚硫酸根阴离子和氰化物阴离子,并且添加这些盐分别会增强MB-PDT对细菌的杀灭作用。我们无法检测到 OH的EPR信号,它与动力学数据一起强烈表明已知产生 OH和 1 O2在所使用的条件下可以优先形成 1 O2。

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