Keyphrases
Access to Drugs
33%
AcrAB
50%
AcrAB-TolC
60%
AcrAB-TolC Efflux Pump
33%
AcrB
10%
Altered Expression
11%
Antibiotic Combination
11%
Antibiotic Concentration
16%
Antibiotic Resistance
77%
Antibiotic Resistance Mechanisms
33%
Antibiotic Target
33%
Antibiotic-resistant Bacteria
33%
Antibiotics
53%
Antimicrobial Resistance Mechanisms
16%
Bacterial Cells
8%
Bacterial DNA
11%
Bacterial Response
8%
Bacterial Survival
11%
Bactericidal Antibiotics
8%
Cellular Processes
11%
Chlorpromazine
8%
Ciprofloxacin
33%
Clinically Significant
58%
Death Rate
8%
Decreased Susceptibility
11%
Direct Modification
33%
Division System
16%
DNA Gyrase
33%
Drug Target
33%
Efflux
23%
Efflux Activity
11%
Efflux Inhibition
41%
Efflux Pump
50%
Efflux Pump Inhibitors
6%
Efflux System
20%
Enterobacteriaceae
36%
Escherichia Coli
20%
Frequency Analysis
8%
Genetic Inactivation
33%
Global Health Crisis
33%
Global Transcriptional Regulation
16%
Gram-negative Bacteria
50%
Gram-negative Pathogens
16%
Green Fluorescent Protein
6%
Green Fluorescent Protein Reporter
5%
GyrA
33%
GyrA mutant
11%
Inducer
5%
Lon Protease
33%
MDR Efflux Pumps
33%
MDR Salmonella
33%
Molecular Mechanism
33%
Multidrug Efflux Pump
33%
Multidrug Efflux Systems
19%
Multidrug Resistance
69%
Multidrug-resistant
8%
Multidrug-resistant Bacteria
8%
Multiple Levels
16%
Mutant DNA
33%
Mutant Strains
11%
Mutation Frequency
8%
Mutation Rate
8%
N-terminus
5%
No Significant Difference
8%
Overexpression
8%
Oxygen Production
11%
Palindromic Sequence
5%
Parental Strain
8%
Pathogenic Strains
11%
Phenotypic Characterization
10%
Phenotypic mutation
8%
Plethora
8%
Post-transcriptional
16%
Promoter Sequence
5%
Quinolone Resistance
11%
RamA
100%
RamR
41%
Reactive Oxygen Species
27%
Reactive Oxygen Species Production
8%
Recent Advances
41%
Regular Basis
33%
Regulatory Mechanism
8%
Reporter Fusion
5%
Reporter Plasmid
6%
Resistance Mechanisms
33%
Resistance to Antibiotics
47%
Resistance-nodulation-division
16%
Resistance-nodulation-division Family
16%
Resistant Strains
8%
Salmonella
11%
Salmonella Enterica
16%
Salmonella Enterica Serovar Typhimurium (S. Typhimurium)
52%
Selective Advantage
11%
Site-directed mutagenesis
8%
Specific Conditions
11%
Stress Response Pathway
11%
Survival Benefit
8%
Systems Biology Approach
8%
Target Change
33%
TctA
33%
TolC
16%
Topoisomerase
11%
Transcription Factor
5%
Transcriptome
33%
Translational Regulation
16%
Tricarboxylic Acid Cycle (TCA cycle)
33%
Virulence
8%
Whole Genome Sequencing
8%
Whole Transcriptome
8%
Immunology and Microbiology
Agar
16%
Amino Acid
22%
Amino Terminal Sequence
22%
Antibiotic Sensitivity
11%
Antimicrobial Resistance
77%
Arginine
16%
Bacterial Cell
11%
Biocide
16%
Biofilm
11%
Chlorpromazine
38%
Enterobacteriaceae
50%
Escherichia coli
33%
Gram-Negative Bacteria
50%
Infectious Agent
22%
Multidrug Resistance
55%
Mutation Rate
33%
Phenylalanine
16%
Plasmid
44%
Promoter Region
16%
Protein Expression
16%
Protein Processing
16%
Root Nodule
33%
Salmonella
33%
Salmonella enterica
16%
Salmonella Enterica Serovar Typhimurium
66%
Site Directed Mutagenesis
16%
Thioridazine
16%
Transcriptional Activator
16%
Transcriptome
16%
Western Blot
11%
Medicine and Dentistry
Antibiotic Resistance
41%
Antibiotic Resistant Bacteria
16%
Antibiotics
38%
Arginine
5%
Biocide
5%
Carbonyl Cyanide Chlorophenylhydrazone
5%
Chlorpromazine
5%
Division
16%
Effusion
66%
Enterobacteriaceae
38%
Escherichia coli
13%
Gram-Negative Bacteria
8%
Green Fluorescent Protein
11%
Multidrug Resistance
13%
Nodulation
16%
Phenothiazine
5%
Phenylalanine
5%
Piperazine
5%
Plasmid
11%
Promoter Region
5%
Protein Expression
5%
Protein Processing
8%
Psychoactive Drug
5%
Salmonella Enterica Serovar Typhimurium
5%
Salmonella Enterica Subsp. Enterica
8%
Thioridazine
5%
Transcriptional Activator
5%