Polymeric films based on polylactide (PLA) with the addition of poly(ethylene glycol) (PEG) and a chloroformic extract of propolis were obtained. In the case of the studied films, polylactide (PLA) played the role of polymeric matrix and poly(ethylene glycol) was used as a plasticizer, while the extract of propolis was incorporated as a compound that could significantly affect the properties of the obtained materials, especially the water vapour permeation rate and the stability of the food products. Moreover, changes in structure, morphology, mechanical and storage properties as well as differences in colour, thickness and transparency after introducing propolis into the PLA–PEG system were determined. Based on the obtained results, it was...
The design of biopolymeric matrices for the delivery of bioactive compounds constitutes a useful str...
Biodegradable active packaging films based on a cellulose acetate and poly(caprolactone diol) blend ...
The performance characteristics of polylactic acid (PLA) as an active food packaging film can be hig...
Polymeric films based on polylactide (PLA) with the addition of poly(ethylene glycol) (PEG) and a ch...
A major research gap is the lack of packaging materials that can provide the release of active compo...
abstract This study investigated the development and characterized the physicochemical properties of...
Green propolis is an attractive natural source of antioxidant and antimicrobial compounds. In this p...
The development of new materials environmentally friendly has become an important market niche for t...
This study focused on the recovery of antioxidant compounds from lemon and tomato by-products for us...
The physical, thermal, mechanical, optical, microstructural, and barrier properties of low-density p...
In situ film forming systems are an alternative to the conventional dosage forms for topical applica...
The growing global awareness for environmental protection has inspired the exploration on producing ...
Biodegradable active packaging films based on a cellulose acetate and poly(caprolactone diol) blend ...
The aim of this study was the development of novel polysaccharide based films intended to be used as...
The use of propolis as an active compound, successfully exploited primarily in the pharmaceutical fi...
The design of biopolymeric matrices for the delivery of bioactive compounds constitutes a useful str...
Biodegradable active packaging films based on a cellulose acetate and poly(caprolactone diol) blend ...
The performance characteristics of polylactic acid (PLA) as an active food packaging film can be hig...
Polymeric films based on polylactide (PLA) with the addition of poly(ethylene glycol) (PEG) and a ch...
A major research gap is the lack of packaging materials that can provide the release of active compo...
abstract This study investigated the development and characterized the physicochemical properties of...
Green propolis is an attractive natural source of antioxidant and antimicrobial compounds. In this p...
The development of new materials environmentally friendly has become an important market niche for t...
This study focused on the recovery of antioxidant compounds from lemon and tomato by-products for us...
The physical, thermal, mechanical, optical, microstructural, and barrier properties of low-density p...
In situ film forming systems are an alternative to the conventional dosage forms for topical applica...
The growing global awareness for environmental protection has inspired the exploration on producing ...
Biodegradable active packaging films based on a cellulose acetate and poly(caprolactone diol) blend ...
The aim of this study was the development of novel polysaccharide based films intended to be used as...
The use of propolis as an active compound, successfully exploited primarily in the pharmaceutical fi...
The design of biopolymeric matrices for the delivery of bioactive compounds constitutes a useful str...
Biodegradable active packaging films based on a cellulose acetate and poly(caprolactone diol) blend ...
The performance characteristics of polylactic acid (PLA) as an active food packaging film can be hig...