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A combination therapy of Phages and Antibiotics: Two is better than one
A combination therapy of Phages and Antibiotics: Two is better than one

A continuous evolution system for contracting the host range of  bacteriophage T7 | Scientific Reports
A continuous evolution system for contracting the host range of bacteriophage T7 | Scientific Reports

Molecular anatomy of the receptor binding module of a bacteriophage long  tail fiber | PLOS Pathogens
Molecular anatomy of the receptor binding module of a bacteriophage long tail fiber | PLOS Pathogens

Not a barrier but a key: How bacteriophages exploit host's O‐antigen as an  essential receptor to initiate infection - Broeker - 2017 - Molecular  Microbiology - Wiley Online Library
Not a barrier but a key: How bacteriophages exploit host's O‐antigen as an essential receptor to initiate infection - Broeker - 2017 - Molecular Microbiology - Wiley Online Library

Frontiers | Evaluating Phage Tail Fiber Receptor-Binding Proteins Using a  Luminescent Flow-Through 96-Well Plate Assay
Frontiers | Evaluating Phage Tail Fiber Receptor-Binding Proteins Using a Luminescent Flow-Through 96-Well Plate Assay

Systematic Discovery of Salmonella Phage-Host Interactions via  High-Throughput Genome-Wide Screens | bioRxiv
Systematic Discovery of Salmonella Phage-Host Interactions via High-Throughput Genome-Wide Screens | bioRxiv

Frontiers | Modeling the Architecture of Depolymerase-Containing Receptor  Binding Proteins in Klebsiella Phages
Frontiers | Modeling the Architecture of Depolymerase-Containing Receptor Binding Proteins in Klebsiella Phages

Exploitation of a Klebsiella Bacteriophage Receptor-Binding Protein as a  Superior Biorecognition Molecule | ACS Infectious Diseases
Exploitation of a Klebsiella Bacteriophage Receptor-Binding Protein as a Superior Biorecognition Molecule | ACS Infectious Diseases

Interactions of bacteriophage T4 adhesin with selected lipopolysaccharides  studied using atomic force microscopy | Scientific Reports
Interactions of bacteriophage T4 adhesin with selected lipopolysaccharides studied using atomic force microscopy | Scientific Reports

More than Rotating Flagella: Lipopolysaccharide as a Secondary Receptor for  Flagellotropic Phage 7-7-1 | Journal of Bacteriology
More than Rotating Flagella: Lipopolysaccharide as a Secondary Receptor for Flagellotropic Phage 7-7-1 | Journal of Bacteriology

High-throughput LPS profiling as a tool for revealing of bacteriophage  infection strategies | Scientific Reports
High-throughput LPS profiling as a tool for revealing of bacteriophage infection strategies | Scientific Reports

Viruses | Free Full-Text | Understanding and Exploiting Phage–Host  Interactions
Viruses | Free Full-Text | Understanding and Exploiting Phage–Host Interactions

Receptor Diversity and Host Interaction of Bacteriophages Infecting  Salmonella enterica Serovar Typhimurium | PLOS ONE
Receptor Diversity and Host Interaction of Bacteriophages Infecting Salmonella enterica Serovar Typhimurium | PLOS ONE

Pseudotyping Bacteriophage P2 Tail Fibers to Extend the Host Range for  Biomedical Applications | ACS Synthetic Biology
Pseudotyping Bacteriophage P2 Tail Fibers to Extend the Host Range for Biomedical Applications | ACS Synthetic Biology

A lipopolysaccharide-dependent phage infects a pseudomonad phytopathogen  and can evolve to evade phage resistance | bioRxiv
A lipopolysaccharide-dependent phage infects a pseudomonad phytopathogen and can evolve to evade phage resistance | bioRxiv

Pseudotyping Bacteriophage P2 Tail Fibers to Extend the Host Range for  Biomedical Applications | ACS Synthetic Biology
Pseudotyping Bacteriophage P2 Tail Fibers to Extend the Host Range for Biomedical Applications | ACS Synthetic Biology

Biological foundations of successful bacteriophage therapy | EMBO Molecular  Medicine
Biological foundations of successful bacteriophage therapy | EMBO Molecular Medicine

Host receptors of SPN phages. F, F-I, F-II, B, and L marked in the... |  Download Scientific Diagram
Host receptors of SPN phages. F, F-I, F-II, B, and L marked in the... | Download Scientific Diagram

Novel Host Recognition Mechanism of the K1 Capsule-Specific Phage of  Escherichia coli: Capsular Polysaccharide as the First Receptor and  Lipopolysaccharide as the Secondary Receptor | Journal of Virology
Novel Host Recognition Mechanism of the K1 Capsule-Specific Phage of Escherichia coli: Capsular Polysaccharide as the First Receptor and Lipopolysaccharide as the Secondary Receptor | Journal of Virology

High-throughput discovery of phage receptors using transposon insertion  sequencing of bacteria | PNAS
High-throughput discovery of phage receptors using transposon insertion sequencing of bacteria | PNAS

A combination therapy of Phages and Antibiotics: Two is better than one
A combination therapy of Phages and Antibiotics: Two is better than one

Characterization of the interactions between Escherichia coli receptors, LPS  and OmpC, and bacteriophage T4 long tail fibers - Washizaki - 2016 -  MicrobiologyOpen - Wiley Online Library
Characterization of the interactions between Escherichia coli receptors, LPS and OmpC, and bacteriophage T4 long tail fibers - Washizaki - 2016 - MicrobiologyOpen - Wiley Online Library

Beyond antibacterials – exploring bacteriophages as antivirulence agents -  ScienceDirect
Beyond antibacterials – exploring bacteriophages as antivirulence agents - ScienceDirect

Systematic exploration of Escherichia coli phage-host interactions with the  BASEL phage collection | bioRxiv
Systematic exploration of Escherichia coli phage-host interactions with the BASEL phage collection | bioRxiv

Viruses | Free Full-Text | In Vitro Studies of Lipopolysaccharide-Mediated  DNA Release of Podovirus HK620
Viruses | Free Full-Text | In Vitro Studies of Lipopolysaccharide-Mediated DNA Release of Podovirus HK620

Fitness Trade-Offs Resulting from Bacteriophage Resistance Potentiate  Synergistic Antibacterial Strategies
Fitness Trade-Offs Resulting from Bacteriophage Resistance Potentiate Synergistic Antibacterial Strategies

Degradation of host lipopolysaccharides during virus entry ~ ViralZone
Degradation of host lipopolysaccharides during virus entry ~ ViralZone

Pleiotropy complicates a trade-off between phage resistance and antibiotic  resistance | PNAS
Pleiotropy complicates a trade-off between phage resistance and antibiotic resistance | PNAS

Novel Host Recognition Mechanism of the K1 Capsule-Specific Phage of  Escherichia coli: Capsular Polysaccharide as the First Receptor and  Lipopolysaccharide as the Secondary Receptor | Journal of Virology
Novel Host Recognition Mechanism of the K1 Capsule-Specific Phage of Escherichia coli: Capsular Polysaccharide as the First Receptor and Lipopolysaccharide as the Secondary Receptor | Journal of Virology