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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Effects on gram-negative and gram-positive bacteria mediated by 5-aminolevulinic Acid and 5-aminolevulinic acid derivatives.
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Effects on gram-negative and gram-positive bacteria mediated by 5-aminolevulinic Acid and 5-aminolevulinic acid derivatives.

机译:对5-氨基乙酰丙酸和5-氨基乙酰丙酸衍生物介导的革兰氏阴性和革兰氏阳性细菌的影响。

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摘要

Due mainly to the extensive use of antibiotics, the spread of multiresistant bacterial strains is one of the most worrying threats to public health. One strategy that can be used to overcome potential shortcomings might be the inactivation of these microorganisms by 5-aminolevulinic acid (5-ALA) or 5-ALA derivative-mediated photodynamic therapy (PDT). 5-ALA has no photoactive properties, but when it is given exogenously, it acts as a precursor of photosensitive porphyrins predominantly in tissues or organisms that are characterized by a high metabolic turnover, such as tumors, macrophages, and bacteria. However, the weak ability of 5-ALA to cross biological barriers has led to the introduction of more lipophilic derivatives, such as methyl aminolevulinate or hexyl aminolevulinate, which display improved capacities to reach the cytoplasm. Starting from the hypothesis that more lipophilic compounds carrying only a permanent positive charge under physiological conditions may more easily cross the bacterial multilayer barrier, we have tested the efficacies of some 5-ALA n-alkyl esters for the inactivation of bacteria. For this purpose, different bacterial strains were incubated with 5-ALA or its corresponding esters of different lipophilicities. Then, the bacteria were irradiated with light and the numbers of CFU post-PDT were counted and compared to those for the controls, which were kept in the dark. Furthermore, the total amount of accumulated porphyrins was quantified by high-pressure liquid chromatography analysis. In our studies, analysis of the bacterial extracts revealed the presence of all the porphyrins involved in heme biosynthesis, from uroporphyrin to protoporphyin IX. The efficacy of bacterial inactivation was a function of the total amount of porphyrins produced, independently of their nature. The 5-ALA methyl and butyl esters were the most effective compounds with respect to the photodynamic inactivation of bacteria. We observed significant differences in terms of the optimal drug concentration, bactericidal activities, and porphyrin production.
机译:主要由于抗生素的广泛使用,多重耐药菌菌株的传播是对公共卫生最令人担忧的威胁之一。可以用来克服潜在缺点的一种策略可能是通过5-氨基乙酰丙酸(5-ALA)或5-ALA衍生物介导的光动力疗法(PDT)使这些微生物失活。 5-ALA不具有光活性,但是当外源给予时,它可以作为光敏性卟啉的前体,主要存在于以高代谢率为特征的组织或生物体中,例如肿瘤,巨噬细胞和细菌。但是,5-ALA穿越生物屏障的能力较弱,导致引入了更多的亲脂性衍生物,例如氨基乙酰丙酸甲酯或氨基乙酰丙酸己酯,它们具有更强的到达细胞质的能力。从这样的假设开始,即更多的亲脂性化合物在生理条件下仅带有永久性正电荷可能更容易越过细菌多层屏障,我们已经测试了某些5-ALA正烷基酯对细菌灭活的功效。为此,将不同的细菌菌株与5-ALA或其相应的具有不同亲脂性的酯进行孵育。然后,用光照射细菌,计数PDT后的CFU数,并与保持在黑暗中的对照进行比较。此外,通过高压液相色谱分析定量积累的卟啉总量。在我们的研究中,对细菌提取物的分析表明,从尿卟啉到原卟啉IX,所有参与血红素生物合成的卟啉均存在。细菌灭活的功效是所产生的卟啉总量的函数,与它们的性质无关。就细菌的光动力失活而言,5-ALA甲酯和丁酯是最有效的化合物。我们观察到最佳药物浓度,杀菌活性和卟啉生成方面的显着差异。

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