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一种用于假单胞菌感染噬菌体治疗的临床前评估的综合方法。

A proposed integrated approach for the preclinical evaluation of phage therapy in Pseudomonas infections.

机构信息

Department of Pathogen Biology and Immunology, Institute of Genetics and Microbiology, University of Wroclaw, Wroclaw, Poland.

Laboratory of Gene Technology, KULeuven, Leuven, Belgium.

出版信息

Sci Rep. 2016 Jun 15;6:28115. doi: 10.1038/srep28115.

Abstract

Bacteriophage therapy is currently resurging as a potential complement/alternative to antibiotic treatment. However, preclinical evaluation lacks streamlined approaches. We here focus on preclinical approaches which have been implemented to assess bacteriophage efficacy against Pseudomonas biofilms and infections. Laser interferometry and profilometry were applied to measure biofilm matrix permeability and surface geometry changes, respectively. These biophysical approaches were combined with an advanced Airway Surface Liquid infection model, which mimics in vitro the normal and CF lung environments, and an in vivo Galleria larvae model. These assays have been implemented to analyze KTN4 (279,593 bp dsDNA genome), a type-IV pili dependent, giant phage resembling phiKZ. Upon contact, KTN4 immediately disrupts the P. aeruginosa PAO1 biofilm and reduces pyocyanin and siderophore production. The gentamicin exclusion assay on NuLi-1 and CuFi-1 cell lines revealed the decrease of extracellular bacterial load between 4 and 7 logs and successfully prevents wild-type Pseudomonas internalization into CF epithelial cells. These properties and the significant rescue of Galleria larvae indicate that giant KTN4 phage is a suitable candidate for in vivo phage therapy evaluation for lung infection applications.

摘要

噬菌体疗法作为抗生素治疗的潜在补充或替代方法,目前正在复兴。然而,临床前评估缺乏简化的方法。我们在这里关注已被用于评估噬菌体针对铜绿假单胞菌生物膜和感染的疗效的临床前方法。激光干涉测量法和轮廓测量法分别用于测量生物膜基质的通透性和表面几何形状变化。这些生物物理方法与先进的气道表面液体感染模型相结合,该模型模拟了体外正常和 CF 肺环境,以及体内家蚕幼虫模型。这些检测方法已被用于分析 KTN4(279,593 bp dsDNA 基因组),一种类似于 phiKZ 的依赖于 IV 型菌毛的巨型噬菌体。接触后,KTN4 立即破坏铜绿假单胞菌 PAO1 生物膜并减少绿脓菌素和铁载体的产生。在 NuLi-1 和 CuFi-1 细胞系上进行的庆大霉素排除试验表明,细胞外细菌负荷减少了 4 到 7 个对数级,并成功阻止了野生型铜绿假单胞菌进入 CF 上皮细胞。这些特性和家蚕幼虫的显著拯救表明,巨型 KTN4 噬菌体是用于肺部感染应用的体内噬菌体治疗评估的合适候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65f8/4908380/f288ebabd914/srep28115-f1.jpg

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