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噬菌体作为减轻医院感染生物膜的替代疗法效果如何。

How Good are Bacteriophages as an Alternative Therapy to Mitigate Biofilms of Nosocomial Infections.

作者信息

Singh Aditi, Padmesh Sudhakar, Dwivedi Manish, Kostova Irena

机构信息

Amity Institute of Biotechnology, Amity University Uttar Pradesh, Lucknow Campus, Lucknow, 226028, India.

Department of Chemistry, Faculty of Pharmacy, Medical University, Sofia, 1000, Bulgaria.

出版信息

Infect Drug Resist. 2022 Feb 17;15:503-532. doi: 10.2147/IDR.S348700. eCollection 2022.

Abstract

Bacteria survive on any surface through the generation of biofilms that provide a protective environment to grow as well as making them drug resistant. Extracellular polymeric matrix is a crucial component in biofilm formation. The presence of biofilms consisting of common opportunistic and nosocomial, drug-resistant pathogens has been reported on medical devices like catheters and prosthetics, leading to many complications. Several approaches are under investigation to combat drug-resistant bacteria. Deployment of bacteriophages is one of the promising approaches to invade biofilm that may expose bacteria to the conditions adverse for their growth. Penetration into these biofilms and their destruction by bacteriophages is brought about due to their small size and ability of their progeny to diffuse through the bacterial cell wall. The other mechanisms employed by phages to infect biofilms may include their relocation through water channels to embedded host cells, replication at local sites followed by infection to the neighboring cells and production of depolymerizing enzymes to decompose viscous biofilm matrix, etc. Various research groups are investigating intricacies involved in phage therapy to mitigate the bacterial infection and biofilm formation. Thus, bacteriophages represent a good control over different biofilms and further understanding of phage-biofilm interaction at molecular level may overcome the clinical challenges in phage therapy. The present review summarizes the comprehensive details on dynamic interaction of phages with bacterial biofilms and the role of phage-derived enzymes - endolysin and depolymerases in extenuating biofilms of clinical and medical concern. The methodology employed was an extensive literature search, using several keywords in important scientific databases, such as Scopus, Web of Science, PubMed, ScienceDirect, etc. The keywords were also used with Boolean operator "And". More than 250 relevant and recent articles were selected and reviewed to discuss the evidence-based data on the application of phage therapy with recent updates, and related potential challenges.

摘要

细菌通过形成生物膜在任何表面存活,生物膜为细菌生长提供了一个保护环境,同时使它们产生耐药性。细胞外聚合物基质是生物膜形成的关键组成部分。据报道,在导管和假肢等医疗设备上存在由常见的机会致病菌和医院耐药病原菌组成的生物膜,这会导致许多并发症。目前正在研究几种对抗耐药细菌的方法。部署噬菌体是侵入生物膜的一种有前景的方法,这可能使细菌暴露于不利于其生长的条件下。噬菌体能够穿透这些生物膜并将其破坏,这是由于它们体积小以及其后代能够扩散穿过细菌细胞壁。噬菌体感染生物膜所采用的其他机制可能包括通过水通道迁移到嵌入的宿主细胞、在局部位点复制随后感染邻近细胞以及产生解聚酶来分解粘性生物膜基质等。各个研究小组正在研究噬菌体疗法中涉及的复杂机制,以减轻细菌感染和生物膜形成。因此,噬菌体对不同生物膜具有良好的控制作用,进一步在分子水平上理解噬菌体 - 生物膜相互作用可能会克服噬菌体疗法中的临床挑战。本综述总结了噬菌体与细菌生物膜动态相互作用的全面细节,以及噬菌体衍生的酶——内溶素和解聚酶在减轻临床和医学关注的生物膜方面的作用。所采用的方法是进行广泛的文献检索,在重要的科学数据库如Scopus、Web of Science、PubMed、ScienceDirect等中使用了几个关键词。这些关键词还与布尔运算符“And”一起使用。挑选并审查了250多篇相关的近期文章,以讨论基于证据的数据,内容涉及噬菌体疗法应用的最新进展以及相关的潜在挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b0/8860455/8d8bcae46ea0/IDR-15-503-g0001.jpg

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