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首页> 外文期刊>Scientific reports. >Characterization, mechanism of action and optimization of activity of a novel peptide-peptoid hybrid against bacterial pathogens involved in canine skin infections
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Characterization, mechanism of action and optimization of activity of a novel peptide-peptoid hybrid against bacterial pathogens involved in canine skin infections

机译:新型肽-类肽杂交体对犬皮肤感染中细菌病原体的表征,作用机理和活性优化

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Integumentary infections like pyoderma represent the main reason for antimicrobial prescription in dogs. Staphylococcus pseudintermedius and Pseudomonas aeruginosa are frequently identified in these infections, and both bacteria are challenging to combat due to resistance. To avoid use of important human antibiotics for treatment of animal infections there is a pressing need for novel narrow-spectrum antimicrobial agents in veterinary medicine. Herein, we characterize the in vitro activity of the novel peptide-peptoid hybrid B1 against canine isolates of S. pseudintermedius and P. aeruginosa. B1 showed potent minimum inhibitory concentrations (MICs) against canine S. pseudintermedius and P. aeruginosa isolates as well rapid killing kinetics. B1 was found to disrupt the membrane integrity and affect cell-wall synthesis in methicillin-resistant S. pseudintermedius (MRSP). We generated 28 analogues of B1, showing comparable haemolysis and MICs against MRSP and P. aeruginosa. The most active analogues (23, 26) and B1 were tested against a collection of clinical isolates from canine, of which only B1 showed potent activity. Our best compound 26, displayed activity against P. aeruginosa and S. pseudintermedius, but not the closely related S. aureus. This work shows that design of target-specific veterinary antimicrobial agents is possible, even species within a genus, and deserves further exploration.
机译:像脓皮病这样的表皮感染是犬使用抗菌药物处方的主要原因。在这些感染中经常鉴定出金黄色葡萄球菌和铜绿假单胞菌,并且由于耐药性,这两种细菌都具有挑战性。为了避免使用重要的人类抗生素来治疗动物感染,迫切需要兽医学中的新型窄谱抗菌剂。在本文中,我们表征了新型肽-类肽杂合体B1对假单胞菌和铜绿假单胞菌犬分离株的体外活性。 B1对犬假单胞菌和铜绿假单胞菌分离物显示出有效的最小抑菌浓度(MICs),以及快速的杀灭动力学。发现B1破坏了膜的完整性并影响耐甲氧西林的伪中间链霉菌(MRSP)的细胞壁合成。我们生成了B1的28个类似物,显示出与MRSP和铜绿假单胞菌相当的溶血和MIC。对活性最强的类似物(23、26)和B1进行了针对犬科动物临床分离株的测试,其中只有B1显示出有效的活性。我们最好的化合物26对铜绿假单胞菌和伪中间链球菌显示出活性,但对紧密相关的金黄色葡萄球菌没有活性。这项工作表明,即使是属内的物种,也可以设计具有目标特异性的兽用抗菌剂,值得进一步探索。

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