Photodynamic Inactivation as a Promising Method of Combating Resistant Strains of Staphylococci

D. Kvashnina, I. Shirokova, N. Belyanina, O. V. Ivanova, N. V. Stifeev, O. Kovalishena, S. A. Syrbu, N. Lebedeva
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Abstract

Relevance. The development of antimicrobial drugs and alternative methods, technologies and means of prevention, diagnosis and treatment of human infectious diseases caused by antibiotic-resistant microorganisms is one of the priorities of ensuring the biological safety of the country. Aims. To evaluate the bactericidal activity of tetrapyrrole macroheterocycles (porphyrins) at different light irradiation durations in relation to staphylococci, in vitro. Materials and methods. Studied strains of microorganisms: museum strains of microorganisms – S. aureus ATCC 29213, S. epidermidis ATCC 14990 and antibiotic-resistant strains of bacteria of the genus Staphylococcus (n=18) isolated from clinical biomaterial and from environmental objects in a medical organization. The studied chemical compounds are three different compounds of water-soluble asymmetrically substituted porphyrins containing heterocyclic fragments on the periphery of the porphyrin cycle (residues of benzoxazole, N-methylbenzimidazole and benzothiazole). Results. The activity of all three porphyrin compounds in relation to museum strains of staphylococcus and 77.8% of clinical antibiotic-resistant strains (n=14; 95% CI 20.1-97.5) turned out to be maximal (complete lysis) after 10 minutes of irradiation. Conclusions. The tested tetrapyrrole macroheterocycles (porphyrins) exhibit bactericidal activity against museum and clinical strains of staphylococcus, with different levels of antibiotic resistance, which determines Keywords: antibiotic resistance, water-soluble porphyrin, photodynamic inactivation, photosensitizer, photochemistry, staphylococci No conflict of interest to declare.
光动力灭活是一种很有前景的抗葡萄球菌方法
相关性。开发抗菌药物和替代方法、技术和手段,以预防、诊断和治疗由抗生素耐药微生物引起的人类传染病,是确保国家生物安全的优先事项之一。目的评估四吡咯大杂环(卟啉)在不同光照时间下对葡萄球菌的体外杀菌活性。材料和方法研究的微生物菌株:博物馆微生物菌株--金黄色葡萄球菌 ATCC 29213、表皮葡萄球菌 ATCC 14990 和耐抗生素的葡萄球菌属细菌菌株(n=18),这些菌株是从一家医疗机构的临床生物材料和环境物体中分离出来的。所研究的化合物是三种不同的水溶性不对称取代卟啉化合物,含有卟啉循环外围的杂环片段(苯并恶唑、N-甲基苯并咪唑和苯并噻唑的残基)。结果。所有三种卟啉化合物对葡萄球菌博物馆菌株和 77.8% 的临床抗生素耐药菌株(n=14;95% CI 20.1-97.5)的活性在照射 10 分钟后达到最大值(完全溶解)。结论关键词:抗生素耐药性;水溶性卟啉;光动力灭活;光敏剂;光化学;葡萄球菌 无利益冲突声明。
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