Comparative genomics of Acinetobacter baumannii and therapeutic bacteriophages from a patient undergoing phage therapy

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作者
Mei Liu
Adriana Hernandez-Morales
James Clark
Tram Le
Biswajit Biswas
Kimberly A. Bishop-Lilly
Matthew Henry
Javier Quinones
Logan J. Voegtly
Regina Z. Cer
Theron Hamilton
Robert T. Schooley
Scott Salka
Ry Young
Jason J. Gill
机构
[1] Texas A&M University,Center for Phage Technology
[2] Texas A&M University,Department of Biochemistry and Biophysics
[3] Naval Medical Research Center,Biological Defense Research Directorate
[4] The Geneva Foundation,Department of Medicine
[5] Leidos,Department of Animal Science
[6] Naval Air Station,undefined
[7] University of California,undefined
[8] San Diego,undefined
[9] AmpliPhi Biosciences (now Armata Pharmaceuticals),undefined
[10] Texas A&M University,undefined
[11] MilliporeSigma,undefined
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In 2016, a 68-year-old patient with a disseminated multidrug-resistant Acinetobacter baumannii infection was successfully treated using lytic bacteriophages. Here we report the genomes of the nine phages used for treatment and three strains of A. baumannii isolated prior to and during treatment. The phages used in the initial treatment are related, T4-like myophages. Analysis of 19 A. baumannii isolates collected before and during phage treatment shows that resistance to the T4-like phages appeared two days following the start of treatment. We generate complete genomic sequences for three A. baumannii strains (TP1, TP2 and TP3) collected before and during treatment, supporting a clonal relationship. Furthermore, we use strain TP1 to select for increased resistance to five of the phages in vitro, and identify mutations that are also found in phage-insensitive isolates TP2 and TP3 (which evolved in vivo during phage treatment). These results support that in vitro investigations can produce results that are relevant to the in vivo environment.
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