The development of film materials that can control the release of drugs is needed to create a smart drug delivery system. This paper reports the properties and kinetic studies of film models made of chitosan and nanosilica. Nanosilica was directly incorporated into the chitosan solution to modify and enhance the properties of the composites as potential drug carriers. Fourier transform infrared spectroscopy results acknowledge the successful fabrication of chitosan/nanosilica composite films. Wettability tests showed that the inclusion of nanosilica could make the film more hydrophilic by incorporating up to 5 wt%. The effective diffusion coefficients obtained by mathematical modeling were in the range of 10-6 cm2/min. Based on th...
In the present paper the Authors analyse the experimental results of a model drug (ibuprofen) releas...
Purpose: To develop citrate crosslinked chitosan films using chitosan of different molecular weights...
Nanoadditives for polymers have many valuable features: e.g. the ability to change the properties of...
Composite films made from chitosan, plasticizer, and incorporated silica nanoparticles were evaluate...
A novel spherical nanosilica matrix (SNM) together with chitosan (CTS) encapsulated SNM (CTS-SNM) wa...
Abstract Organic-inorganic hybrid films were fabricated from cellulose nanofibrils (CNF) and nanosi...
Recently, development of film materials is focused on finding the films with high chemical and physi...
The use of by-products from the food industry for the development of bioplastics represents an outst...
cited By 91International audienceThis paper reports the preparation and characterization of nanocomp...
The purpose of this study was to fabricate a triple-component nanocomposite system consisting of chi...
Chitosan is a promising biopolymer for drug delivery systems. Because of its beneficial properties,...
Nowadays, there is a growing interest to develop biodegradable functional composite materials for fo...
The sol-gel treatment of equal amounts of chitosan and partially hydrolyzed aminopropylsiloxane (APS...
Nowadays, there is a growing interest to develop biodegradable functional composite materials for fo...
This study was designed to investigate functionality of tetracycline‐loaded chitosan‐halloysite nano...
In the present paper the Authors analyse the experimental results of a model drug (ibuprofen) releas...
Purpose: To develop citrate crosslinked chitosan films using chitosan of different molecular weights...
Nanoadditives for polymers have many valuable features: e.g. the ability to change the properties of...
Composite films made from chitosan, plasticizer, and incorporated silica nanoparticles were evaluate...
A novel spherical nanosilica matrix (SNM) together with chitosan (CTS) encapsulated SNM (CTS-SNM) wa...
Abstract Organic-inorganic hybrid films were fabricated from cellulose nanofibrils (CNF) and nanosi...
Recently, development of film materials is focused on finding the films with high chemical and physi...
The use of by-products from the food industry for the development of bioplastics represents an outst...
cited By 91International audienceThis paper reports the preparation and characterization of nanocomp...
The purpose of this study was to fabricate a triple-component nanocomposite system consisting of chi...
Chitosan is a promising biopolymer for drug delivery systems. Because of its beneficial properties,...
Nowadays, there is a growing interest to develop biodegradable functional composite materials for fo...
The sol-gel treatment of equal amounts of chitosan and partially hydrolyzed aminopropylsiloxane (APS...
Nowadays, there is a growing interest to develop biodegradable functional composite materials for fo...
This study was designed to investigate functionality of tetracycline‐loaded chitosan‐halloysite nano...
In the present paper the Authors analyse the experimental results of a model drug (ibuprofen) releas...
Purpose: To develop citrate crosslinked chitosan films using chitosan of different molecular weights...
Nanoadditives for polymers have many valuable features: e.g. the ability to change the properties of...