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Dissecting the therapeutic potency of antimicrobial peptides against microbial biofilms.
Current Protein & Peptide Science ( IF 2.8 ) Pub Date : 2021-03-22 , DOI: 10.2174/1389203722666210322145810
Payal Gupta 1 , Purusottam Mishra 1 , Ramasare Prasad 1 , Krishna Mohan Poluri 1
Affiliation  

Microbial resistance to conventional therapeutics has become a significant threat to human society. Biofilms serve as the major virulence factor for the microorganisms by resisting the antibiotics and host innate immune system. Antimicrobial peptides (AMPs) have emerged as a potential alternative to conventional therapeutics due to their exceptional anti-biofilm and broad-spectrum antimicrobial property. Researchers have applied bioinformatics, genetic engineering, tissue culture, and drug delivery approaches to enhance the production and therapeutic efficacy of antimicrobial peptides. This review comprehensively describes the various aspects of AMPs with particular focus on their anti-biofilm potential. Other detailed information highlighted in this review includes different classes of AMPs, their mode of action, and anti-biofilm activity both alone and in synergy with other AMPs or conventional antibiotics. Further, challenges and opportunities of AMPs based drug delivery systems such as nano-formulations, polymeric micelles, and vesicles are also summarized.

中文翻译:

剖析抗微生物肽对微生物生物膜的治疗效力。

微生物对常规疗法的抵抗力已成为对人类社会的重大威胁。生物膜通过抵抗抗生素和宿主先天免疫系统,成为微生物的主要毒力因子。抗菌肽(AMP)由于其卓越的抗生物膜和广谱抗菌特性,已成为传统疗法的潜在替代品。研究人员已经应用生物信息学,基因工程,组织培养和药物递送方法来增强抗菌肽的产生和治疗效果。这篇综述全面地描述了AMPs的各个方面,尤其侧重于其抗生物膜的潜力。本评论中重点介绍的其他详细信息包括不同类型的AMP,它们的作用方式,和单独的抗生物膜活性,以及​​与其他AMP或常规抗生素的协同作用。此外,还总结了基于AMPs的药物递送系统例如纳米制剂,聚合物胶束和囊泡的挑战和机遇。
更新日期:2021-03-22
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