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Amphipathic Peptide Antibiotics with Potent Activity against Multidrug-Resistant Pathogens

机译:两性肽肽抗生素具有抗抗多药病原菌的有效活性

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摘要

The emergence and prevalence of multidrug-resistant (MDR) bacteria have posed a serious threat to public health. Of particular concern are methicillin-resistant Staphylococcus aureus (MRSA) and blaNDM, mcr-1 and tet(X)-positive Gram-negative pathogens. The fact that few new antibiotics have been approved in recent years exacerbates this global crisis, thus, new alternatives are urgently needed. Antimicrobial peptides (AMPs) originated from host defense peptides with a wide range of sources and multiple functions, are less prone to achieve resistance. All these characteristics laid the foundation for AMPs to become potential antibiotic candidates. In this study, we revealed that peptide WW307 displayed potent antibacterial and bactericidal activity against MDR bacteria, including MRSA and Gram-negative bacteria carrying blaNDM-5, mcr-1 or tet(X4). In addition, WW307 exhibited great biofilm inhibition and eradication activity. Safety and stability experiments showed that WW307 had a strong resistance against various physiological conditions and displayed relatively low toxicity. Mechanistic experiments showed that WW307 resulted in membrane damage by selectively targeting bacterial membrane-specific components, including lipopolysaccharide (LPS), phosphatidylglycerol (PG), and cardiolipin (CL). Moreover, WW307 dissipated membrane potential and triggered the production of reactive oxygen species (ROS). Collectively, these results demonstrated that WW307 represents a promising candidate for combating MDR pathogens.
机译:多药抗性(MDR)细菌的出现和患病率为公共卫生构成严重威胁。特别关注的是耐甲氧西林葡萄球菌(MRSA)和共混管,MCR-1和TET(X) - 阳性革兰氏阴性病原体。近年来很少批准新抗生素的事实加剧了这种全球危机,因此,迫切需要新的替代品。抗菌肽肽(AMPs)起源于具有广泛来源和多种功能的宿主防御肽,不太容易达到抗性。所有这些特征都为AMPS成为潜在的抗生素候选者奠定了基础。在这项研究中,我们透露肽WW307针对MDR细菌显示有效的抗菌和杀菌活性,包括携带共混体-5,MCR-1或TET的MRSA和革兰氏阴性细菌(X4)。此外,WW307表现出较大的生物膜抑制和根除活性。安全性和稳定性实验表明,WW307对各种生理条件具有很强的抵抗力,并显示出相对低的毒性。机械实验表明,WW307通过选择性靶向细菌膜特异性组分,包括脂多糖(LPS),磷脂酰甘油(PG)和心磷脂(CL)来导致膜损伤。此外,WW307耗散膜电位并引发了活性氧(ROS)的产生。总的来说,这些结果表明WW307代表了对抗MDR病原体的有希望的候选者。

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