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Cationic Synthetic Peptides: Assessment of Their Antimicrobial Potency in Liquid Preserved Boar Semen

机译:阳离子合成肽:液体保存的公猪精液中其抗菌能力的评估。

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摘要

Various semen extender formulas are in use to maintain sperm longevity and quality whilst acting against bacterial contamination in liquid sperm preservation. Aminoglycosides are commonly supplemented to aid in the control of bacteria. As bacterial resistance is increasing worldwide, antimicrobial peptides (AMPs) received lively interest as alternatives to overcome multi-drug resistant bacteria. We investigated, whether synthetic cationic AMPs might be a suitable alternative for conventional antibiotics in liquid boar sperm preservation. The antibacterial activity of two cyclic AMPs (c-WWW, c-WFW) and a helical magainin II amide analog (MK5E) was studied in vitro against two Gram-positive and eleven Gram-negative bacteria. Isolates included ATCC reference strains, multi-resistant E. coli and bacteria cultured from boar semen. Using broth microdilution, minimum inhibitory concentrations were determined for all AMPs. All AMPs revealed activity towards the majority of bacteria but not against Proteus spp. (all AMPs) and Staphylococcus aureus ATCC 29213 (MK5E). We could also demonstrate that c-WWW and c-WFW were effective against bacterial growth in liquid preserved boar semen in situ, especially when combined with a small amount of gentamicin. Our results suggest that albeit not offering a complete alternative to traditional antibiotics, the use of AMPs offers a promising solution to decrease the use of conventional antibiotics and thereby limit the selection of multi-resistant strains.
机译:使用各种精液补充剂配方来维持精子的寿命和质量,同时在液态精子保存中对抗细菌污染。通常补充氨基糖苷以帮助控制细菌。随着全球细菌耐药性的提高,抗菌肽(AMPs)作为克服多药耐药细菌的替代方法引起了人们的浓厚兴趣。我们研究了合成阳离子AMPs是否可以替代常规抗生素来保存液态公猪精子。在体外研究了两种环状AMP(c-WWW,c-WFW)和螺旋型magainin II酰胺类似物(MK5E)对两种革兰氏阳性和11株革兰氏阴性细菌的抗菌活性。分离株包括ATCC参考菌株,多抗性大肠杆菌和从公猪精液培养的细菌。使用肉汤微量稀释,确定所有AMP的最低抑菌浓度。所有AMP均显示出对大多数细菌的活性,但对Proteus spp没有活性。 (所有AMP)和金黄色葡萄球菌ATCC 29213(MK5E)。我们还可以证明c-WWW和c-WFW在原液保存的公猪精液中对细菌生长是有效的,尤其是与少量庆大霉素一起使用时。我们的结果表明,尽管不能提供传统抗生素的完全替代品,但是使用AMPs还是有希望的解决方案,可以减少传统抗生素的使用,从而限制了多重耐药菌株的选择。

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