New antibiotics are urgently needed to address multidrug-resistant (MDR) bacteria. Herein we report that second-generation (G2) peptide dendrimers bearing a fatty acid chain at the dendrimer core efficiently kill Gram-negative bacteria including Pseudomonas aeruginosa and Acinetobacter baumannii, two of the most problematic MDR bacteria worldwide. Our most active dendrimer TNS18 is also active against Gram-positive methicillin-resistant Staphylococcus aureus. Based on circular dichroism and molecular dynamics studies, we hypothesize that TNS18 adopts a hydrophobically collapsed conformation in water with the fatty acid chain backfolded onto the peptide dendrimer branches and that the dendrimer unfolds in contact with the membrane to expose ...
AbstractThe novel antimicrobial peptide with a dimeric dendrimer scaffold, SB056, was empirically op...
Microbial infections are a major public health concern. Antimicrobial peptides (AMPs) have been demo...
The alarming increase in antimicrobial resistance, based on the built-in abilities of bacteria to nu...
New antibiotics are urgently needed to address multidrug-resistant (MDR) bacteria. Herein we report ...
Herein we report that peptide dendrimers G3KL and TNS18, which were recently reported to control mul...
There is considerable interest in the development of antimicrobial polymers including dendrimers due...
Peptide-based antibiotics might help containing the rising tide of antimicrobial resistance. We deve...
We used nearest-neighbor searches in chemical space to improve the activity of the antimicrobial pep...
International audienceThe alarming and prevailing antimicrobial resistance (AMR) calls urgently for ...
Evolution-derived natural compounds have been inspirational for design of numerous pharmaceuticals, ...
The novel antimicrobial peptide with a dimeric dendrimer scaffold, SB056, was empirically optimized ...
Antimicrobial drug resistance is a major human health threat. Among the many attempts to tackle this...
We recently reported the discovery of antimicrobial peptide dendrimers (AMPDs) acting by a membrane‐...
Multidrug-resistant opportunistic bacteria, such as Pseudomonas aeruginosa, represent a major public...
We used nearest‐neighbor searches in chemical space to improve the activity of the antimicrobial pep...
AbstractThe novel antimicrobial peptide with a dimeric dendrimer scaffold, SB056, was empirically op...
Microbial infections are a major public health concern. Antimicrobial peptides (AMPs) have been demo...
The alarming increase in antimicrobial resistance, based on the built-in abilities of bacteria to nu...
New antibiotics are urgently needed to address multidrug-resistant (MDR) bacteria. Herein we report ...
Herein we report that peptide dendrimers G3KL and TNS18, which were recently reported to control mul...
There is considerable interest in the development of antimicrobial polymers including dendrimers due...
Peptide-based antibiotics might help containing the rising tide of antimicrobial resistance. We deve...
We used nearest-neighbor searches in chemical space to improve the activity of the antimicrobial pep...
International audienceThe alarming and prevailing antimicrobial resistance (AMR) calls urgently for ...
Evolution-derived natural compounds have been inspirational for design of numerous pharmaceuticals, ...
The novel antimicrobial peptide with a dimeric dendrimer scaffold, SB056, was empirically optimized ...
Antimicrobial drug resistance is a major human health threat. Among the many attempts to tackle this...
We recently reported the discovery of antimicrobial peptide dendrimers (AMPDs) acting by a membrane‐...
Multidrug-resistant opportunistic bacteria, such as Pseudomonas aeruginosa, represent a major public...
We used nearest‐neighbor searches in chemical space to improve the activity of the antimicrobial pep...
AbstractThe novel antimicrobial peptide with a dimeric dendrimer scaffold, SB056, was empirically op...
Microbial infections are a major public health concern. Antimicrobial peptides (AMPs) have been demo...
The alarming increase in antimicrobial resistance, based on the built-in abilities of bacteria to nu...