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The large scale antibacterial, antifungal and anti-phage efficiency of Petamcin-A: new multicomponent preparation for skin diseases treatment

机译:Petamcin-A的大规模抗菌,抗真菌和噬菌体功效:一种用于治疗皮肤疾病的新型多组分制剂

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Background Human and animal skin diseases of bacterial, fungal and viral nature and their complications are widespread and globally cause a serious trouble. Their prevalence is increasing mainly due to drug resistance. Consequently, demand has increased for new effective antimicrobial drugs, which also should be less toxic, possess a wider spectrum of action and be economically more beneficial. The goal was to investigate antibacterial, antifungal and anti-phage activity of Petamcin-A-a new multicomponent preparation. It contains acetic acid and hexamethylenetetramine as main active antimicrobial components, as well as phosphatidylcholine, tocopheryl acetate and glycerol as excipients. Methods Bacteriostatic activity and minimal inhibitory concentrations of the preparation against various test-organisms were determined by agar well diffusion assay. Antifungal activity was tested by agar dilution assay. To explore anti-phage activity double agar overlay plaque assay was used. Nystatin, chlorhexidine and acetic acid were used as control agents for comparative analysis. Statistical analysis was done with GraphPad Prism 5.03 or R 3.1.0 software. Results The results showed a higher activity of Petamcin-A against all bacterial and fungal test strains compared with its components or control agents. The preparation was more effective against tested gram-positive bacteria than gram-negative ones. Petamcin-A expressed bactericidal activity against almost all test strains. In addition, the preparation demonstrated high activity against T4 phage of Escherichia coli C-T4 completely inhibiting its growth. 5-fold diluted Petamcin-A also exhibited considerable activity reducing phage concentration by 2.6 Log10. Conclusions Petamcin-A has a high antimicrobial activity against all tested strains of bacteria, yeasts and moulds. The preparation also exhibited high anti-phage activity. Moreover, taking into account that Petamcin-A has no observable toxicity on skin and its components are not expensive, it can be advantageous for management of various skin medical conditions.
机译:背景技术具有细菌,真菌和病毒性质的人类和动物皮肤疾病及其并发症广泛存在并且在全球范围内引起严重的麻烦。它们的患病率增加主要是由于耐药性。因此,对新的有效抗微生物药物的需求增加了,该药物也应具有较低的毒性,作用范围更广并且在经济上更有利。目的是研究Petamcin-A(一种新的多组分制剂)的抗菌,抗真菌和抗噬菌体活性。它包含乙酸和六亚甲基四胺作为主要的活性抗菌成分,以及磷脂酰胆碱,乙酸生育酚乙酸酯和甘油作为赋形剂。方法采用琼脂孔扩散法测定制剂的抑菌活性和最低抑菌浓度。通过琼脂稀释测定法测试抗真菌活性。为了探索抗噬菌体活性,使用双琼脂覆盖噬菌斑测定。制霉菌素,洗必太和乙酸用作对照剂用于比较分析。使用GraphPad Prism 5.03或R 3.1.0软件进行统计分析。结果结果表明,与其成分或对照剂相比,Petamcin-A对所有细菌和真菌测试菌株的活性更高。该制剂对测试的革兰氏阳性菌比革兰氏阴性菌更有效。 Petamcin-A对几乎所有测试菌株均具有杀菌活性。另外,该制剂表现出针对大肠杆菌C-T4的T4噬菌体的高活性,从而完全抑制了其生长。 5倍稀释的Petamcin-A也表现出相当大的活​​性,可将噬菌体浓度降低2.6 Log 10 。结论Petamcin-A对所有测试的细菌,酵母和霉菌菌株均具有很高的抗菌活性。该制剂还显示出高的抗噬菌体活性。此外,考虑到帕他霉素-A对皮肤没有可观察到的毒性并且其成分不昂贵,因此对于管理各种皮肤医学状况可能是有利的。

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