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黑皮蠹()来源抗菌肽对一系列人体病原体的评估。

Evaluation of Antimicrobial Peptides from the Black Soldier Fly () against a Selection of Human Pathogens.

机构信息

Laboratory for Microbiology, Parasitology and Hygiene (LMPH), Faculty of Pharmaceutical, Biomedical and Veterinary Sciences, University of Antwerpgrid.5284.b, Antwerp, Belgium.

Department of Microbial and Molecular Systems (M2S), Research Group for Insect Production and Processing, KU Leuven, Geel, Belgium.

出版信息

Microbiol Spectr. 2022 Feb 23;10(1):e0166421. doi: 10.1128/spectrum.01664-21. Epub 2022 Jan 5.

Abstract

Antimicrobial peptides (AMPs) are being explored as alternatives to traditional antibiotics to combat the rising antimicrobial resistance. Insects have proven to be a valuable source of new, potent AMPs with large structural diversity. For example, the black soldier fly has one of the largest AMP repertoires ever recorded in insects. Currently, however, this AMP collection has not yet undergone antimicrobial evaluation or in-depth characterization. This study evaluated the activity of a library of 36 black soldier fly AMPs against a panel of human pathogens (Staphylococcus aureus, Escherichia coli, Pseudomonas aeruginosa, Candida albicans, and Aspergillus fumigatus) and a human cell line (MRC5-SV2). The activity profile of two cecropins (Hill-Cec1 and Hill-Cec10) with potent Gram-negative activity, was further explored by characterizing their hemolysis, time-to-kill kinetics, membrane-permeabilization properties, and anti-biofilm activity. Hill-Cec1 and Hill-Cec10 also showed high activity against other bacterial species, including Klebsiella pneumoniae and multi-drug resistant P. aeruginosa. Both AMPs are bactericidal and have a rapid onset of action with membrane-permeabilizing effects. Hill-Cec1 and Hill-Cec10 were also able to prevent P. aeruginosa biofilm formation, but no relevant effect was seen on biofilm eradication. Overall, Hill-Cec1 and Hill-Cec10 are promising leads for new antimicrobial development to treat critical infections caused by Gram-negative pathogens such as P. aeruginosa. With the ever growing antimicrobial resistance, finding new candidates for antimicrobial drug development is indispensable. Antimicrobial peptides have steadily gained attention as alternatives for conventional antibiotics, due to some highly desirable characteristics, such as their low propensity for resistance development. With this article, we aim to upgrade the knowledge on the activity of black soldier fly antimicrobial peptides and their potential as future therapeutics. To achieve this, we have evaluated for the first time a library of 36 synthetically produced peptides from the black soldier fly against a range of human pathogens and a human cell line. Two selected peptides have undergone additional testing to characterize their antimicrobial profile against P. aeruginosa, a clinically important Gram-negative pathogen with a high established resistance. Overall, this research has contributed to the search for new peptide drug leads to combat the rising antimicrobial resistance.

摘要

抗菌肽 (AMPs) 作为传统抗生素的替代品正在被探索,以对抗不断上升的抗菌耐药性。昆虫已被证明是新的、强效 AMP 的有价值来源,具有很大的结构多样性。例如,黑皮蠹拥有昆虫中记录的最大 AMP 库之一。然而,目前,这个 AMP 集合尚未经过抗菌评估或深入表征。本研究评估了 36 种黑皮蠹 AMP 文库对一系列人类病原体(金黄色葡萄球菌、大肠杆菌、铜绿假单胞菌、白色念珠菌和烟曲霉)和人类细胞系(MRC5-SV2)的活性。通过表征它们的溶血、杀菌动力学、膜通透性特性和抗生物膜活性,进一步探索了两种具有强大革兰氏阴性活性的抗菌肽(Hill-Cec1 和 Hill-Cec10)的活性谱。Hill-Cec1 和 Hill-Cec10 对其他细菌物种(包括肺炎克雷伯菌和多药耐药铜绿假单胞菌)也表现出高活性。这两种 AMP 均具有杀菌作用,作用迅速,具有膜通透性作用。Hill-Cec1 和 Hill-Cec10 还能够阻止铜绿假单胞菌生物膜的形成,但对生物膜的清除没有相关作用。总体而言,Hill-Cec1 和 Hill-Cec10 是开发新抗菌药物治疗由革兰氏阴性病原体(如铜绿假单胞菌)引起的严重感染的有前途的先导化合物。随着抗菌耐药性的不断增长,寻找新的抗菌药物开发候选物是必不可少的。抗菌肽由于具有一些理想的特性,如耐药性发展的倾向较低,因此逐渐受到关注,作为传统抗生素的替代品。通过本文,我们旨在提高对黑皮蠹抗菌肽活性及其作为未来治疗剂的潜力的认识。为此,我们首次评估了来自黑皮蠹的 36 种合成肽文库对一系列人类病原体和人类细胞系的活性。两种选定的肽已进行了额外的测试,以表征它们对铜绿假单胞菌的抗菌特性,铜绿假单胞菌是一种具有高度既定耐药性的临床重要革兰氏阴性病原体。总体而言,这项研究有助于寻找新的肽类药物先导物来对抗不断上升的抗菌耐药性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bb1/8729770/b073384b9095/spectrum.01664-21-f001.jpg

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