首页> 美国卫生研究院文献>ACS Omega >Enhancement of 5-Aminolevulinic Acid-Mediated Photodynamic Inactivation of Proteus mirabilis Using Phosphoric and Bisaminophosphinic Acids as Permeabilizing Agents
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Enhancement of 5-Aminolevulinic Acid-Mediated Photodynamic Inactivation of Proteus mirabilis Using Phosphoric and Bisaminophosphinic Acids as Permeabilizing Agents

机译:使用磷酸和双氨基膦酸作为透化剂增强 5-氨基乙酰丙酸介导的奇异变形杆菌光动力灭活

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摘要

The purpose of this work was to examine the effect of phosphoric and bisaminophosphinic acids on the effectiveness of photoinactivation of Proteus mirabilis with 5-aminolevulinic acid (5-ALA) as a precursor of protoporphyrin IX. Two diode lasers λ = 404 nm (radiation intensity 26 mW cm–2) and λ = 630 nm (radiation intensity 55 mW cm–2) were used as sources of light. The most effective agent was (R)-(−)-1,1′-binaphthyl-2,2′-diylhydrogen phosphate, and a significant improvement in bactericidal effect of 5-ALA-aPDI was achieved by pretreating P. mirabilis with this compound at nontoxic concentrations of 0.368 mM. It was found that 15 min of blue light illumination was enough to achieve bacterial cell mortality of 99.999%. Photoelimination of this pathogen using red light was less effective, and the required killing effect (at least 99.99%) was not achieved until 45 min of exposure. The mechanism of increased pathogen destruction by the examined acids is multifaceted and includes not only the destabilization of the outer bacterial cell membrane by organophosphates but also an increase in the level of protoporphyrin IX in cells due to chelation of iron ions. Furthermore, a synergistic effect of intracellular photosensitizers and (R)-(−)-1,1′-binaphthyl-2,2′-diylhydrogen phosphate acting as an additional blue/red light-induced photosensitizer cannot be excluded.
机译:这项工作的目的是检查磷酸和双氨基膦酸对以 5-氨基乙酰丙酸 (5-ALA) 作为原卟啉 IX 前体的奇异变形杆菌光灭活效果的影响。两个二极管激光器 λ = 404 nm(辐射强度 26 mW cm–2)和 λ = 630 nm(辐射强度 55 mW cm–2)用作光源。最有效的试剂是 (R)-(-)-1,1'-二氢苯基-2,2'-二基磷酸氢,通过用 0.368 mM 的无毒化合物预处理奇异假单胞菌,实现了 5-ALA-aPDI 杀菌效果的显着改善。结果发现,15 分钟的蓝光照射足以实现 99.999% 的细菌细胞死亡率。使用红光光消除这种病原体的效果较差,直到暴露 45 分钟才达到所需的杀灭效果(至少 99.99%)。所检查的酸增加病原体破坏的机制是多方面的,不仅包括有机磷酸盐对细菌细胞外膜的破坏,还包括由于铁离子的螯合而导致细胞中原卟啉 IX 水平的增加。此外,不能排除细胞内光敏剂和 (R)-(-)-1,1′-二氢苯基-2,2′-磷酸氢二酯作为额外的蓝光/红光诱导光敏剂的协同作用。

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