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噬菌体尾样细菌素作为对抗抗菌耐药病原体的生物医学平台。

Phage-tail-like bacteriocins as a biomedical platform to counter anti-microbial resistant pathogens.

作者信息

Bhattacharjee Rahul, Nandi Aditya, Sinha Adrija, Kumar Hrithik, Mitra Disha, Mojumdar Abhik, Patel Paritosh, Jha Ealisha, Mishra Suman, Rout Prabhat Kumar, Panda Pritam Kumar, Suar Mrutyunjay, Verma Suresh K

机构信息

KIIT School of Biotechnology, KIIT University, Bhubaneswar 751024, Odisha, India.

School of Biology, Indian Institute of Science Education and Research (IISER)-Thiruvananthapuram, Kerala 695551, India.

出版信息

Biomed Pharmacother. 2022 Nov;155:113720. doi: 10.1016/j.biopha.2022.113720. Epub 2022 Sep 23.

Abstract

Phage Tail Like bacteriocins (PTLBs) has been an area of interest in the last couple of years owing to their varied application against multi-drug resistant (MDR), anti-microbial resistant (AMR) pathogens and their evolutionary link with the dsDNA virus and bacteriophages. PTLBs are defective phages derived from Myoviridae and Siphoviridae phages, PTLBs are distinguished into R-type (Rigid type) characterized by a non-flexible contractile nanotube resembling Myoviridae phage contractile tails, and F-type (Flexible type) with a flexible non-contractile rod-like structure similar to Siphoviridae phages. In this review, we have discussed the structural association, mechanism, and characterization of PTLBs. Moreover, we have elucidated the symbiotic biological function and application of PTLBs against MDR and XDR pathogens and highlighted the evolutionary role of PTLBs. The difficulties that must be overcome to implement PTLBs clinically are also discussed. It is imperative that these issues be addressed by academics in future studies before being implemented in clinical settings. This article is novel in its way as it will not only provide us with a gateway that acts as a novel strategy for scholars to mitigate and control the uprising issue of AMR pathogens but also promote the development of clinical studies for PTLBs.

摘要

类噬菌体尾细菌素(PTLBs)在过去几年中一直是一个备受关注的领域,这是由于它们在对抗多重耐药(MDR)、抗微生物耐药(AMR)病原体方面具有多种应用,以及它们与双链DNA病毒和噬菌体的进化联系。PTLBs是源自肌尾噬菌体科和长尾噬菌体科噬菌体的缺陷噬菌体,PTLBs可分为R型(刚性型),其特征是具有类似于肌尾噬菌体科噬菌体收缩尾的非柔性收缩纳米管,以及F型(柔性型),具有类似于长尾噬菌体科噬菌体的柔性非收缩杆状结构。在这篇综述中,我们讨论了PTLBs的结构关联、作用机制和特性。此外,我们阐明了PTLBs对MDR和XDR病原体的共生生物学功能及应用,并强调了PTLBs的进化作用。还讨论了在临床应用PTLBs时必须克服的困难。在临床应用之前,学者们在未来的研究中必须解决这些问题。本文具有新颖性,因为它不仅将为我们提供一种途径,作为学者减轻和控制AMR病原体这一日益严重问题的新策略,还将促进PTLBs临床研究的发展。

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