Suppr超能文献

脓肿分枝杆菌的噬菌体疗法及改善治疗效果的策略

Phage Therapy for Mycobacterium Abscessus and Strategies to Improve Outcomes.

作者信息

Hashemi Shahraki Abdolrazagh, Mirsaeidi Mehdi

机构信息

Division of Pulmonary and Critical Care, Sleep and Allergy, Miller School of Medicine, University of Miami, Miami, FL 33101, USA.

出版信息

Microorganisms. 2021 Mar 14;9(3):596. doi: 10.3390/microorganisms9030596.

Abstract

Members of complex are known for causing severe, chronic infections. Members of are a new "antibiotic nightmare" as one of the most resistant organisms to chemotherapeutic agents. Treatment of these infections is challenging due to the either intrinsic or acquired resistance of the complex to the available antibiotics. Recently, successful phage therapy with a cocktail of three phages (one natural lytic phage and two engineered phages) every 12 h for at least 32 weeks has been reported against a severe case of the disseminated subsp. infection, which underlines the high value of phages against drug-resistant superbugs. This report also highlighted the limitations of phage therapy, such as the absence of lytic phages with a broad host-range against all strains and subspecies of the complex and also the risk of phage resistant bacteria over treatment. Cutting-edge genomic technologies have facilitated the development of engineered phages for therapeutic purposes by introducing new desirable properties, changing host-range and arming the phages with additional killing genes. Here, we review the available literature and suggest new potential solutions based on the progress in phage engineering that can help to overcome the present limitations of treatment.

摘要

某复合体的成员以引发严重的慢性感染而闻名。某属是一种新的“抗生素噩梦”,是对化疗药物耐药性最强的生物体之一。由于该复合体对现有抗生素具有固有或获得性耐药性,这些感染的治疗具有挑战性。最近,有报道称,针对一例严重的播散性某亚种感染,每12小时使用三种噬菌体(一种天然裂解噬菌体和两种工程噬菌体)的鸡尾酒疗法进行至少32周的治疗取得了成功,这凸显了噬菌体对抗耐药超级细菌的高价值。该报告还强调了噬菌体疗法的局限性,例如缺乏对该复合体所有菌株和亚种具有广泛宿主范围的裂解噬菌体,以及治疗过程中出现噬菌体抗性细菌的风险。前沿的基因组技术通过引入新的理想特性、改变宿主范围以及为噬菌体配备额外的杀伤基因,促进了用于治疗目的的工程噬菌体的开发。在此,我们回顾现有文献,并基于噬菌体工程的进展提出新的潜在解决方案,以帮助克服目前某治疗的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7edc/7999966/8f84d2b4c676/microorganisms-09-00596-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验