The biocide agent LAE (ethyl αN-lauroyl l-arginate chloride) was coupled with poly(γ-glutamic acid) (PGGA) to form stable ionic complexes with LAE:PGGA ratios of 1 and 0.5. The nanostructure adopted by these complexes and its response to thermal changes were examined in detail by Differential scanning calorimetry (DSC) and X-ray diffraction (XRD) using synchrotron radiation in real time. A layered biphasic structure with LAE filling the space between the polypeptidic sheets was adopted in these complexes. The complexes were stable up to above 250 °C, non-water soluble, and were able to form consistent transparent films. The release of LAE from the complexes upon incubation in aqueous buffer was examined and found to depend on both pH and co...
Due to the presence of cationic units interpolyelectrolyte complexes (IPECs) can be used as a univer...
Using solvent casting and melt compounding methods, we realized antibacterial and antifungal poly(la...
Estimated more than 60% of bacterial infections currently treated in hospitals are caused by bacteri...
The biocide agent LAE (ethyl αN-lauroyl l-arginate chloride) was coupled with poly(γ-glutamic acid) ...
© 2017 by the author. The biocide agent LAE (ethyl aN-lauroyl l-arginate chloride) was coupled with ...
Ethyl alpha-N-lauroyl L-arginate hydrochloride (LAE) was coupled with hyaluronic acid (HyA) 2 to for...
The realization of antimicrobial films through the incorporation of active agents into a polymer mat...
The aim of this work is to investigate possible solutions to realize antimicrobial-incorporated biod...
A series of ionic complexes with a comb-like architecture and a nearly stoichiometric composition we...
Widespread use of plastics poses a serious environmental hazard to our planet and should be substitu...
© 2021 by the authors.The inhibitory and bactericidal capacity of Listex P100 bacteriophage has been...
Here we describe a stoichiometric ion-complex of archaeal poly-γ-l-glutamate (l-PGA) and hexadecylpy...
Pseudomonas aeruginosa (P. aeruginosa) is a life-threatening pathogen associated with multiantibioti...
A series of new polymeric materials consisting of polylactide (PLA), polyethylene glycol (PEG) and b...
[EN] The aim of this work was to characterize, as packaging materials, antimicrobial films based on ...
Due to the presence of cationic units interpolyelectrolyte complexes (IPECs) can be used as a univer...
Using solvent casting and melt compounding methods, we realized antibacterial and antifungal poly(la...
Estimated more than 60% of bacterial infections currently treated in hospitals are caused by bacteri...
The biocide agent LAE (ethyl αN-lauroyl l-arginate chloride) was coupled with poly(γ-glutamic acid) ...
© 2017 by the author. The biocide agent LAE (ethyl aN-lauroyl l-arginate chloride) was coupled with ...
Ethyl alpha-N-lauroyl L-arginate hydrochloride (LAE) was coupled with hyaluronic acid (HyA) 2 to for...
The realization of antimicrobial films through the incorporation of active agents into a polymer mat...
The aim of this work is to investigate possible solutions to realize antimicrobial-incorporated biod...
A series of ionic complexes with a comb-like architecture and a nearly stoichiometric composition we...
Widespread use of plastics poses a serious environmental hazard to our planet and should be substitu...
© 2021 by the authors.The inhibitory and bactericidal capacity of Listex P100 bacteriophage has been...
Here we describe a stoichiometric ion-complex of archaeal poly-γ-l-glutamate (l-PGA) and hexadecylpy...
Pseudomonas aeruginosa (P. aeruginosa) is a life-threatening pathogen associated with multiantibioti...
A series of new polymeric materials consisting of polylactide (PLA), polyethylene glycol (PEG) and b...
[EN] The aim of this work was to characterize, as packaging materials, antimicrobial films based on ...
Due to the presence of cationic units interpolyelectrolyte complexes (IPECs) can be used as a univer...
Using solvent casting and melt compounding methods, we realized antibacterial and antifungal poly(la...
Estimated more than 60% of bacterial infections currently treated in hospitals are caused by bacteri...