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Antimicrobial activities of chicken β-defensin (4 and 10) peptides against pathogenic bacteria and fungi

机译:鸡β-防御素(4和10)肽对病原菌和真菌的抗菌活性

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摘要

Host Defense Peptides (HDPs) are small cationic peptides found in several organisms. They play a vital role in innate immunity response and immunomodulatory stimulation. This investigation was designed to study the antimicrobial activities of β-defensin peptide-4 (sAvBD-4) and 10 (sAvBD-4) derived from chickens against pathogenic organisms including bacteria and fungi. Ten bacterial strains and three fungal species were used in investigation. The results showed that the sAvBD-10 displayed a higher bactericidal potency against all the tested bacterial strains than that of sAvBD-4. The exhibited bactericidal activity was significant against almost the different bacterial strains at different peptide concentrations except for that of Pseudomonas aeruginosa (P. aeruginosa) and Streptococcus bovis (Str. bovis) strains where a moderate effect was noted. Both peptides were effective in the inactivation of fungal species tested yielding a killing rate of up to 95%. The results revealed that the synthetic peptides were resistant to salt at a concentration of 50 mM NaCl. However, they lost antimicrobial potency when applied in the presence of high salt concentrations. Based on blood hemolysis studies, a little hemolytic effect was showed in the case of both peptides even when applied at high concentrations. The data obtained from this study indicated that synthetic avian peptides exhibit strong antibacterial and antifungal activity. In conclusion, future work and research should be tailored to a better understanding of the mechanisms of action of those peptides and their potential use in the pharmaceutical industry to help reduce the incidence and impact of infectious agent and be marketed as a naturally occurring antibiotic.
机译:宿主防御肽(HDP)是在几种生物中发现的小型阳离子肽。它们在先天免疫应答和免疫调节刺激中起着至关重要的作用。这项研究旨在研究衍生自鸡的β-防御素肽4(sAvBD-4)和10(sAvBD-4)对包括细菌和真菌在内的病原生物的抗菌活性。研究中使用了10个细菌菌株和3个真菌物种。结果表明,sAvBD-10对所有测试细菌菌株的杀菌力均高于sAvBD-4。除铜绿假单胞菌(P. aeruginosa)和牛链球菌(Str。bovis)菌株表现出中度的作用外,在不同的肽浓度下,几乎所有的细菌菌株都表现出明显的杀菌活性。两种肽均能有效灭活所测试的真菌,杀死率高达95%。结果表明,合成肽在50 mM NaCl浓度下对盐具有抗性。但是,当在高盐浓度下使用时,它们失去了抗菌效力。根据血液溶血研究,即使以高浓度使用,两种肽的溶血作用也很小。从这项研究中获得的数据表明,合成的禽类肽具有很强的抗菌和抗真菌活性。总之,应针对未来的工作和研究进行量身定制,以更好地了解这些肽的作用机理及其在制药行业中的潜在用途,以帮助减少传染病的发生和影响,并应作为天然抗生素销售。

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