Antimicrobial peptides (AMPs) have recently gained attention for their potential to treat diseases related to bacterial and viral infections, as many traditional antimicrobial drugs have reduced efficacy in treating these infections due to the increased prevalence of drug-resistant pathogens. PLG0206, an engineered cationic antibiotic peptide that is 24 residues long, has been designed to address some limitations of other natural AMPs, such as toxicity and limited activity due to pH and ion concentrations. Nonclinical studies have shown that PLG0206 is highly selective for targeting bacterial cells and is not toxic to human blood cells. Antibiofilm experiments demonstrated that PLG0206 is effective at reducing both biotic and abiotic biofil...
Emergence of multidrug-resistant (MDR) bacteria is becoming a major health concern worldwide as pati...
Biofilms cause up to 80 % of infections and are difficult to treat due to their substantial multidru...
Bacteria form multicellular communities known as biofilms that cause two thirds of all infections an...
The rapid emergence of antibiotic-resistant microbes worldwide and the urgent need of new antimicrob...
Here, we demonstrate that antimicrobial peptides (AMPs) are an effective antibiofilm treatment when ...
Here, we demonstrate that antimicrobial peptides (AMPs) are an effective antibiofilm treatment when ...
Alarming data about increasing resistance to conventional antibiotics are reported, while at the sam...
The formation of surface-attached cellular agglomerates, the so-called biofilms, contributes signifi...
Introduction: Biofilms are complex bacterial communities living attached to biotic or abiotic surfac...
Hospital associated infection remains a major problem which is responsible for ~100,000 deaths and o...
Antimicrobial peptides (AMPs) are an abundant and varied group of molecules recognized as the most a...
Pseudomonas aeruginosa is involved in a variety of difficult-to-treat infections frequently due to b...
Cationic antimicrobial peptides (AMPs) are short linear amino acid sequences, which display antimicr...
Abstract Antibiotics are unable to remove biofilms from surgical implants. This high antibiotic tole...
It is widely recognized that many chronic infections of the human body have a polymicrobial etiology...
Emergence of multidrug-resistant (MDR) bacteria is becoming a major health concern worldwide as pati...
Biofilms cause up to 80 % of infections and are difficult to treat due to their substantial multidru...
Bacteria form multicellular communities known as biofilms that cause two thirds of all infections an...
The rapid emergence of antibiotic-resistant microbes worldwide and the urgent need of new antimicrob...
Here, we demonstrate that antimicrobial peptides (AMPs) are an effective antibiofilm treatment when ...
Here, we demonstrate that antimicrobial peptides (AMPs) are an effective antibiofilm treatment when ...
Alarming data about increasing resistance to conventional antibiotics are reported, while at the sam...
The formation of surface-attached cellular agglomerates, the so-called biofilms, contributes signifi...
Introduction: Biofilms are complex bacterial communities living attached to biotic or abiotic surfac...
Hospital associated infection remains a major problem which is responsible for ~100,000 deaths and o...
Antimicrobial peptides (AMPs) are an abundant and varied group of molecules recognized as the most a...
Pseudomonas aeruginosa is involved in a variety of difficult-to-treat infections frequently due to b...
Cationic antimicrobial peptides (AMPs) are short linear amino acid sequences, which display antimicr...
Abstract Antibiotics are unable to remove biofilms from surgical implants. This high antibiotic tole...
It is widely recognized that many chronic infections of the human body have a polymicrobial etiology...
Emergence of multidrug-resistant (MDR) bacteria is becoming a major health concern worldwide as pati...
Biofilms cause up to 80 % of infections and are difficult to treat due to their substantial multidru...
Bacteria form multicellular communities known as biofilms that cause two thirds of all infections an...