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A3,一种源自蝎子毒液的肽类似物,具有抗微生物和潜在抗多药耐药革兰阳性菌生物膜活性。

A3, a Scorpion Venom Derived Peptide Analogue with Potent Antimicrobial and Potential Antibiofilm Activity against Clinical Isolates of Multi-Drug Resistant Gram Positive Bacteria.

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmacy, Jordan University of Science and Technology, Irbid 2110, Jordan.

Department of Applied Biological Sciences, Faculty of Science and Arts, Jordan University of Science and Technology, Irbid 2110, Jordan.

出版信息

Molecules. 2018 Jul 2;23(7):1603. doi: 10.3390/molecules23071603.

Abstract

Current research in the field of antimicrobials is focused on developing novel antimicrobial agents to counteract the huge dilemma that the human population is mainly facing in regards to the rise of bacterial resistance and biofilm infections. Host defense peptides (HDPs) are a promising group of molecules for antimicrobial development as they display several attractive features suitable for antimicrobial activity, including their broad spectrum of activity and potency against bacteria. AamAP1 is a novel HDP that belongs to the venom of the North African scorpion . In vitro antimicrobial assays revealed that the peptide displays moderate activity against Gram-positive and Gram-negative bacteria. Additionally, the peptide proved to be highly hemolytic and displayed significantly high toxicity against mammalian cells. In our study, a novel synthetic peptide analogue named A3 was synthetically modified from AamAP1 in order to enhance its activity and toxicity profile. The design strategy depended on modifying the amino acid sequence of AamAP1 in order to alter its net positive charge, percentage helicity and modify other parameters that are involved theoretically in HDPs activity. Accordingly, A3 was evaluated for its in vitro antimicrobial and anti-biofilm activity individually and in combination with four different types of conventional antibiotics against clinical isolates of multi-drug resistant (MDR) Gram-positive bacteria. A3 was also evaluated for its cytotoxicity against mammalian cells. A3 managed to selectively inhibit the growth of a wide range of resistant strains of Gram-positive bacteria. Our results also showed that combining A3 with conventional antibiotics caused a synergistic antimicrobial behavior that resulted in decreasing the MIC value for A3 peptide as low as 0.125 µM. At the concentrations needed to inhibit bacterial growth, A3 displayed minimal mammalian cell toxicity. In conclusion, A3 exhibits enhanced activity and selectivity when compared with the parent natural scorpion venom peptide. The combination of A3 with conventional antibiotics could provide researchers in the antimicrobial drug development field with a potential alternative for conventional antibiotics against MDR bacteria.

摘要

目前,抗微生物领域的研究集中在开发新型抗微生物剂,以应对人类主要面临的细菌耐药性和生物膜感染问题。宿主防御肽 (HDP) 是一种很有前途的抗微生物开发分子,因为它们具有多种适合抗微生物活性的吸引人的特性,包括广谱活性和对细菌的效力。AamAP1 是一种新型 HDP,属于北非蝎子的毒液。体外抗菌测定表明,该肽对革兰氏阳性菌和革兰氏阴性菌均具有中等活性。此外,该肽具有高度溶血作用,对哺乳动物细胞显示出显著的高毒性。在我们的研究中,从 AamAP1 中合成了一种新型合成肽类似物,命名为 A3,以增强其活性和毒性特征。设计策略依赖于修饰 AamAP1 的氨基酸序列,以改变其净正电荷、螺旋百分比,并修改其他理论上涉及 HDP 活性的参数。因此,单独评估了 A3 及其与四种不同类型的常规抗生素联合用于体外抗微生物和抗生物膜活性,以对抗临床分离的多药耐药 (MDR) 革兰氏阳性菌。还评估了 A3 对哺乳动物细胞的细胞毒性。A3 成功地选择性抑制了广泛耐药的革兰氏阳性菌的生长。我们的结果还表明,将 A3 与常规抗生素联合使用会导致协同的抗菌行为,从而将 A3 肽的 MIC 值降低至低至 0.125 µM。在抑制细菌生长所需的浓度下,A3 对哺乳动物细胞的毒性最小。总之,与母体天然蝎毒液肽相比,A3 表现出增强的活性和选择性。将 A3 与常规抗生素联合使用可为抗微生物药物开发领域的研究人员提供一种替代常规抗生素治疗 MDR 细菌的潜在方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b89/6100099/0640cb033852/molecules-23-01603-g001.jpg

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