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P238 Host-pathogen interactions in the era of antimicrobial resistance
R. La Rosa
DTU Microbes Initiative
Infection Microbiology
Novo Nordisk Foundation Center for Biosustainability
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Keyphrases
Host-pathogen Interactions
100%
Antimicrobial Resistance
100%
Pathogenicity
66%
Immune Escape
66%
Type 3 Secretion System (T3SS)
66%
Airway Epithelium
66%
Metabolic Specialization
66%
Treatment Strategy
33%
Central Carbon Metabolism
33%
Virulence
33%
Pseudomonas Aeruginosa (P. aeruginosa)
33%
Cystic Fibrosis
33%
Infection Model
33%
Immune System
33%
Protein Expression
33%
Bacterial Virulence
33%
Reduced Virulence
33%
Mechanistic Explanation
33%
Effective Treatment
33%
Bacterial Pathogens
33%
Air-liquid Interface
33%
Public Health Risk
33%
Ribosomal Protein
33%
Macrolide Antibiotics
33%
High-level Resistance
33%
Global Burden
33%
Single-cell Proteomics
33%
Dehydrogenase Enzyme
33%
Pyruvate Dehydrogenase
33%
Global Public Health
33%
Epithelial Layer
33%
Prolonged Infection
33%
Reduced Immunogenicity
33%
Antibiotic Resistance mutations
33%
Air-liquid Interface Culture
33%
Interface Infection
33%
Immunology and Microbiology
Antimicrobial Resistance
100%
Host-Pathogen Interaction
100%
Infectious Agent
50%
Pathogenicity
50%
Immunogenicity
25%
Immune Escape
25%
Pseudomonas aeruginosa
25%
Immune System
25%
Carbon Metabolism
25%
Protein Expression
25%
Pyruvate Dehydrogenase
25%
Whole Cell
25%
Bacterial Virulence
25%
Type Three Secretion System
25%