Herein we report that peptide dendrimers G3KL and TNS18, which were recently reported to control multidrug-resistant bacteria such as Staphylococcus aureus, Pseudomonas aeruginosa, and Acinetobacter baumannii, strongly inhibit biofilm formation by P. aeruginosa PA14 below their minimum inhibitory concentration (MIC) value, under which conditions they also strongly affect swarming motility. Eradication of preformed biofilms, however, required concentrations above the MIC values. Scanning electron microscopy observation and confocal laser scanning micrographs showed that peptide dendrimers can destroy the biofilm morphological structure and thickness in a dose-dependent manner, even make the biofilm dispersed completely. Membrane potential an...
abstract: Bacteria with antibiotic resistance are becoming a growing concern as the number of infect...
Antimicrobial peptides (AMPs) are one of the most diverse classes of antibiotics. A prominent exampl...
Abstract Microbial biofilms are involved in a number of infections that cannot be cured, as microbes...
New antibiotics are urgently needed to address multidrug-resistant (MDR) bacteria. Herein we report ...
Biofilms cause up to 80 % of infections and are difficult to treat due to their substantial multidru...
New antibiotics are urgently needed to address multidrug-resistant (MDR) bacteria. Herein we report ...
Glycopeptide dendrimers as Pseudomonas aeruginosa biofilm inhibitors. Glycopeptide dendrimers are be...
Biofilms are resistant to antibiotics and are a major source of persistent and recurring infections ...
Microbes are known to colonize surfaces and form biofilms. These biofilms are communities of microbe...
Bacteria form multicellular communities known as biofilms that cause two thirds of all infections an...
Peptide-based antibiotics might help containing the rising tide of antimicrobial resistance. We deve...
In many infections, bacteria form surface-associated communities known as biofilms that are substant...
Bacteria form multicellular communities known as biofilms that cause two thirds of all infections an...
We recently discovered that peptide dendrimers such as G3KL ((KL)8(KKL)4(KKL)2KKL, K = branching l-l...
Pseudomonas aeruginosa is a pathogenic bacterium known to cause serious human infections, especially...
abstract: Bacteria with antibiotic resistance are becoming a growing concern as the number of infect...
Antimicrobial peptides (AMPs) are one of the most diverse classes of antibiotics. A prominent exampl...
Abstract Microbial biofilms are involved in a number of infections that cannot be cured, as microbes...
New antibiotics are urgently needed to address multidrug-resistant (MDR) bacteria. Herein we report ...
Biofilms cause up to 80 % of infections and are difficult to treat due to their substantial multidru...
New antibiotics are urgently needed to address multidrug-resistant (MDR) bacteria. Herein we report ...
Glycopeptide dendrimers as Pseudomonas aeruginosa biofilm inhibitors. Glycopeptide dendrimers are be...
Biofilms are resistant to antibiotics and are a major source of persistent and recurring infections ...
Microbes are known to colonize surfaces and form biofilms. These biofilms are communities of microbe...
Bacteria form multicellular communities known as biofilms that cause two thirds of all infections an...
Peptide-based antibiotics might help containing the rising tide of antimicrobial resistance. We deve...
In many infections, bacteria form surface-associated communities known as biofilms that are substant...
Bacteria form multicellular communities known as biofilms that cause two thirds of all infections an...
We recently discovered that peptide dendrimers such as G3KL ((KL)8(KKL)4(KKL)2KKL, K = branching l-l...
Pseudomonas aeruginosa is a pathogenic bacterium known to cause serious human infections, especially...
abstract: Bacteria with antibiotic resistance are becoming a growing concern as the number of infect...
Antimicrobial peptides (AMPs) are one of the most diverse classes of antibiotics. A prominent exampl...
Abstract Microbial biofilms are involved in a number of infections that cannot be cured, as microbes...