AbstractThe effects of varying the cationic sequence of oligotryptophan-tagged antimicrobial peptides were investigated in terms of peptide adsorption to model lipid membranes, liposome leakage induction, and antibacterial potency. Heptamers of lysine (K7) and arginine (R7) were lytic against Escherichia coli bacteria at low ionic strength. In parallel, both peptides adsorbed on to bilayers formed by E. coli phospholipids, and caused leakage in the corresponding liposomes. K7 was the more potent of the two peptides in causing liposome leakage, although the adsorption of this peptide on E. coli membranes was lower than that of R7. The bactericidal effect, liposome lysis, and membrane adsorption were all substantially reduced at physiological...
Cationic antimicrobial peptides (CAMPs) are novel candidates for drug development. Here we describe ...
The activity of antimicrobial peptides stems from their interaction with bacterial membranes, which ...
The effect of peptide hydrophobicity and charge on peptide interaction with model lipid bilayers was...
The effects of varying the cationic sequence of oligotryptophan-tagged antimicrobial peptides were i...
AbstractThe effects of varying the cationic sequence of oligotryptophan-tagged antimicrobial peptide...
AbstractA pronounced membrane selectivity is demonstrated for short, hydrophilic, and highly charged...
A pronounced membrane selectivity is demonstrated for short, hydrophilic, and highly charged antimic...
Antimicrobial peptides (AMPs) have been an area of great interest, due to the high selectivity of th...
Due to increasing problems with bacterial resistance development, there is a growing need for identi...
Antimicrobial cationic peptides are ubiquitous in nature and are thought to be a component of the f...
Antimicrobial peptides (AMPs) can combat drug-resistant bacteria with their unique membrane-disrupti...
Cationic antimicrobial peptides (CAMPs) are a promising alternative to treat multidrug-resistant bac...
AbstractWe investigated the mechanisms of two tryptophan-rich antibacterial peptides (KT2 and RT2) o...
Linear cationic antimicrobial peptides are a diverse class of molecules that interact with a wide ra...
AbstractThe effect of peptide hydrophobicity and charge on peptide interaction with model lipid bila...
Cationic antimicrobial peptides (CAMPs) are novel candidates for drug development. Here we describe ...
The activity of antimicrobial peptides stems from their interaction with bacterial membranes, which ...
The effect of peptide hydrophobicity and charge on peptide interaction with model lipid bilayers was...
The effects of varying the cationic sequence of oligotryptophan-tagged antimicrobial peptides were i...
AbstractThe effects of varying the cationic sequence of oligotryptophan-tagged antimicrobial peptide...
AbstractA pronounced membrane selectivity is demonstrated for short, hydrophilic, and highly charged...
A pronounced membrane selectivity is demonstrated for short, hydrophilic, and highly charged antimic...
Antimicrobial peptides (AMPs) have been an area of great interest, due to the high selectivity of th...
Due to increasing problems with bacterial resistance development, there is a growing need for identi...
Antimicrobial cationic peptides are ubiquitous in nature and are thought to be a component of the f...
Antimicrobial peptides (AMPs) can combat drug-resistant bacteria with their unique membrane-disrupti...
Cationic antimicrobial peptides (CAMPs) are a promising alternative to treat multidrug-resistant bac...
AbstractWe investigated the mechanisms of two tryptophan-rich antibacterial peptides (KT2 and RT2) o...
Linear cationic antimicrobial peptides are a diverse class of molecules that interact with a wide ra...
AbstractThe effect of peptide hydrophobicity and charge on peptide interaction with model lipid bila...
Cationic antimicrobial peptides (CAMPs) are novel candidates for drug development. Here we describe ...
The activity of antimicrobial peptides stems from their interaction with bacterial membranes, which ...
The effect of peptide hydrophobicity and charge on peptide interaction with model lipid bilayers was...