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Antimicrobial photodynamic inactivation: a bright new technique to kill resistant microbes

机译:抗菌光动力灭活:杀死耐药微生物的一项崭新技术

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Photodynamic therapy (PDT) uses photosensitizers (non-toxic dyes) that are activated by absorption of visible light to form reactive oxygen species (including singlet oxygen) that can oxidize biomolecules and destroy cells. Antimicrobial photodynamic inactivation (aPDI) can treat localized infections. aPDI neither causes any resistance to develop in microbes, nor is affected by existing drug resistance status. We discuss some recent developments in aPDI. New photosensitizers including polycationic conjugates, stable synthetic bacteriochlorins and functionalized fullerenes are described. The microbial killing by aPDI can be synergistically potentiated (several logs) by harmless inorganic salts via photochemistry. Genetically engineered bioluminescent microbial cells allow PDT to treat infections in animal models. Photoantimicrobials have a promising future in the face of the unrelenting increase in antibiotic resistance.
机译:光动力疗法(PDT)使用光敏剂(无毒染料),这些光敏剂通过吸收可见光而活化,从而形成可氧化生物分子并破坏细胞的活性氧(包括单线态氧)。抗菌光动力灭活(aPDI)可以治疗局部感染。 aPDI既不会导致微生物产生任何耐药性,也不会受到现有耐药性状态的影响。我们讨论aPDI的一些最新发展。描述了新的光敏剂,包括聚阳离子共轭物,稳定的合成菌绿素和功能化的富勒烯。通过光化学,无害的无机盐可以协同增强(几个对数)被aPDI杀死的微生物。基因工程改造的生物发光微生物细胞使PDT可以治疗动物模型中的感染。面对抗生素耐药性的持续增长,光抗菌剂的前景广阔。

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