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肽PEW300对……的抗生物膜特性及多种作用

Antibiofilm property and multiple action of peptide PEW300 against .

作者信息

Wang Meng, Deng Zifeng, Li Yanmei, Xu Keyong, Ma Yi, Yang Shang-Tian, Wang Jufang

机构信息

School of Biology and Biological Engineering, South China University of Technology, Guangzhou, China.

Kaiping Healthwise Health Food Co., Ltd, Kaiping, China.

出版信息

Front Microbiol. 2022 Jul 29;13:963292. doi: 10.3389/fmicb.2022.963292. eCollection 2022.

Abstract

(), an opportunistic pathogen, is often associated with difficulties in treating hospital-acquired infections. Biofilms formed by significantly improve its resistance to antimicrobial agents, thereby, posing a great challenge to the combat of infection. Antimicrobial peptides (AMPs) have recently emerged as promising antibiofilm agents and increasingly attracting the attention of scientists worldwide. However, current knowledge of their antibiofilm behavior is limited and their underlying mechanism remains unclear. In this study, a novel AMP, named PEW300, with three-point mutations (E9H, D17K, and T33A) from Cecropin A was used to investigate its antibiofilm property and antibiofilm pathway against . PEW300 displayed strong antibacterial and antibiofilm activity against with no significant hemolysis or cytotoxicity to mouse erythrocyte and human embryonic kidney 293 cells. Besides, the antibiofilm pathway results showed that PEW300 preferentially dispersed the mature biofilm, leading to the biofilm-encapsulated bacteria exposure and death. Meanwhile, we also found that the extracellular DNA was a critical target of PEW300 against the mature biofilm of . In addition, multiple actions of PEW300 including destroying the cell membrane integrity, inducing high levels of intracellular reactive oxygen species, and interacting with genomic DNA were adopted to exert its antibacterial activity. Moreover, PEW300 could dramatically reduce the virulence of . Taken together, PEW300 might be served as a promising antibiofilm candidate to combat biofilms.

摘要

()是一种机会致病菌,常与医院获得性感染的治疗困难相关。由其形成的生物膜显著提高了其对抗菌剂的抗性,从而给感染防治带来巨大挑战。抗菌肽(AMPs)最近作为有前景的抗生物膜剂出现,并越来越吸引全球科学家的关注。然而,目前对其抗生物膜行为的了解有限,其潜在机制仍不清楚。在本研究中,一种来自天蚕素A的具有三点突变(E9H、D17K和T33A)的新型抗菌肽PEW300被用于研究其对()的抗生物膜特性和抗生物膜途径。PEW300对()表现出强大的抗菌和抗生物膜活性,对小鼠红细胞和人胚肾293细胞无明显溶血或细胞毒性。此外,抗生物膜途径结果表明,PEW300优先分散成熟生物膜,导致被生物膜包裹的细菌暴露并死亡。同时,我们还发现细胞外DNA是PEW300对抗()成熟生物膜的关键靶点。此外,PEW300通过破坏细胞膜完整性、诱导高水平的细胞内活性氧以及与基因组DNA相互作用等多种作用来发挥其抗菌活性。而且,PEW300可显著降低()的毒力。综上所述,PEW300可能是对抗()生物膜的一种有前景的抗生物膜候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ba/9372277/0428895b43df/fmicb-13-963292-g001.jpg

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