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噬菌体及其应用:综述。

Bacteriophages and its applications: an overview.

作者信息

Sharma Sonika, Chatterjee Soumya, Datta Sibnarayan, Prasad Rishika, Dubey Dharmendra, Prasad Rajesh Kumar, Vairale Mohan G

机构信息

Defence Research Laboratory, DRDO, Tezpur, Assam, 784001, India.

School of Biomedical Engineering, Cornell University, Ithaca, NY, 14850, USA.

出版信息

Folia Microbiol (Praha). 2017 Jan;62(1):17-55. doi: 10.1007/s12223-016-0471-x. Epub 2016 Oct 8.

Abstract

Bacteriophages (or phages), the most abundant viral entity of the planet, are omni-present in all the ecosystems. On the basis of their unique characteristics and anti-bacterial property, phages are being freshly evaluated taxonomically. Phages replicate inside the host either by lytic or lysogenic mode after infecting and using the cellular machinery of a bacterium. Since their discovery by Twort and d'Herelle in the early 1900s, phage became an important agent for combating pathogenic bacteria in clinical treatments and its related research gained momentum. However, due to recent emergence of bacterial resistance on antibiotics, applications of phage (phage therapy) become an inevitable option of research. Phage particles become popular as a biotechnological tool and treatment of pathogenic bacteria in a range of applied areas. However, there are few concerns over the application of phage-based solutions. This review deals with the updated phage taxonomy (ICTV 2015 Release and subsequent revision) and phage biology and the recent development of its application in the areas of biotechnology, biosensor, therapeutic medicine, food preservation, aquaculture diseases, pollution remediation, and wastewater treatment and issues related with limitations of phage-based remedy.

摘要

噬菌体是地球上数量最多的病毒实体,在所有生态系统中无处不在。基于其独特的特性和抗菌性能,噬菌体正在重新进行分类学评估。噬菌体在感染并利用细菌的细胞机制后,通过裂解或溶源模式在宿主细胞内进行复制。自20世纪初被Twort和d'Herelle发现以来,噬菌体在临床治疗中成为对抗病原菌的重要手段,其相关研究也蓬勃发展。然而,由于近期细菌对抗生素产生耐药性,噬菌体疗法(噬菌体的应用)成为必然的研究选择。噬菌体颗粒作为一种生物技术工具,在一系列应用领域中用于治疗病原菌,广受欢迎。然而,基于噬菌体的解决方案的应用也存在一些问题。本文综述了最新的噬菌体分类学(国际病毒分类委员会2015年发布及后续修订)、噬菌体生物学及其在生物技术、生物传感器、治疗医学食品保鲜、水产养殖疾病、污染修复和废水处理等领域应用的最新进展,以及与基于噬菌体疗法局限性相关的问题。

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