Pseudomonas aeruginosa is intrinsically resistant to many antibiotics due to the impermeability of its outer membrane and to the constitutive expression of efflux pumps. Here, we show that the polyaminoisoprenyl compound NV716 at sub-MIC concentrations re-sensitizes P. aeruginosa to abandoned antibiotics by binding to the lipopolysaccharides (LPS) of the outer membrane, permeabilizing this membrane and increasing antibiotic accumulation inside the bacteria. It also prevents selection of resistance to antibiotics and increases their activity against biofilms. No stable resistance could be selected to NV716-itself after serial passages with subinhibitory concentrations, but the transcriptome of the resulting daughter cells shows an upregulati...
Active efflux confers intrinsic resistance to multiple antibiotics in , including old disused molecu...
Traditional treatment of infectious diseases is based on compounds that kill or inhibit growth of ba...
International audienceCertain Pseudomonas aeruginosa strains produce a homolog of colicin M, named P...
International audienceAbstract Pseudomonas aeruginosa is intrinsically resistant to many antibiotics...
Gram-negative ESKAPE pathogens are responsible for increases in multidrug-resistant infections world...
International audiencePotentiators can improve antibiotic activity against difficult-to-treat Gram-n...
Potentiators can improve antibiotic activity against difficult-to-treat Gram-negative bacteria like ...
The spread of antibiotic resistance is an urgent threat to global health that requires new therapeut...
International audienceActive efflux confers intrinsic resistance to multiple antibiotics in Pseudomo...
International audienceAminoglycosides are among the most potent antimicrobials to eradicate Pseudomo...
International audienceMultidrug resistant bacteria have been a worldwide concern for decades. Though...
Multidrug resistant bacteria have been a worldwide concern for decades. Though new molecules that ef...
Aminoglycosides are among the most potent antimicrobials to eradicate Pseudomonas aeruginosa. Howeve...
<div><p>Multidrug resistant bacteria have been a worldwide concern for decades. Though new molecules...
Increasing rates of antibiotic resistance among Gram-negative pathogens such as Pseudomonas aerugino...
Active efflux confers intrinsic resistance to multiple antibiotics in , including old disused molecu...
Traditional treatment of infectious diseases is based on compounds that kill or inhibit growth of ba...
International audienceCertain Pseudomonas aeruginosa strains produce a homolog of colicin M, named P...
International audienceAbstract Pseudomonas aeruginosa is intrinsically resistant to many antibiotics...
Gram-negative ESKAPE pathogens are responsible for increases in multidrug-resistant infections world...
International audiencePotentiators can improve antibiotic activity against difficult-to-treat Gram-n...
Potentiators can improve antibiotic activity against difficult-to-treat Gram-negative bacteria like ...
The spread of antibiotic resistance is an urgent threat to global health that requires new therapeut...
International audienceActive efflux confers intrinsic resistance to multiple antibiotics in Pseudomo...
International audienceAminoglycosides are among the most potent antimicrobials to eradicate Pseudomo...
International audienceMultidrug resistant bacteria have been a worldwide concern for decades. Though...
Multidrug resistant bacteria have been a worldwide concern for decades. Though new molecules that ef...
Aminoglycosides are among the most potent antimicrobials to eradicate Pseudomonas aeruginosa. Howeve...
<div><p>Multidrug resistant bacteria have been a worldwide concern for decades. Though new molecules...
Increasing rates of antibiotic resistance among Gram-negative pathogens such as Pseudomonas aerugino...
Active efflux confers intrinsic resistance to multiple antibiotics in , including old disused molecu...
Traditional treatment of infectious diseases is based on compounds that kill or inhibit growth of ba...
International audienceCertain Pseudomonas aeruginosa strains produce a homolog of colicin M, named P...