In this study, thin chitosan-gelatin biofilms cross-linked with dialdehyde cellulose nanocrystals for dressing materials were received. Two types of dialdehyde cellulose nanocrystals from fiber (DNCL) and microcrystalline cellulose (DAMC) were obtained by periodate oxidation. An ATR-FTIR analysis confirmed the selective oxidation of cellulose nanocrystals with the creation of a carbonyl group at 1724 cm−1. A higher degree of cross-linking was obtained in chitosan-gelatin biofilms with DNCL than with DAMC. An increasing amount of added cross-linkers resulted in a decrease in the apparent density value. The chitosan-gelatin biofilms cross-linked with DNCL exhibited a higher value of roughness parameters and antioxidant activity compared with ...
Wound care is a major biomedical field that is challenging due to the delayed wound healing process....
Chitosan/bacterial cellulose composite films containing diamond nanoparticles (NDs) with potential a...
Gelatin has many superior biological properties and can absorb a large volume of water to form hydro...
Marine polysaccharides are believed to be promising wound-dressing nanomaterials because of their bi...
The present work envisages a simple approach to synthesize a new wound dressing based on chitosan-di...
This study is designed to extract crystalline cellulose from cotton and reinforcing gelatin film for...
In this study, we incorporated 2,3-dialdehyde nanocrystalline cellulose (DANC) into chitosan as a re...
Cellulose nanofibers (CNFs), chitosan, and silver nanoparticles (AgNPs) are widely used to enhance t...
Wound dressings designed with simultaneously adequate antibacterial, sorption, and antioxidant prope...
To find renewable and sustainable alternatives to reduce the severe environmental impact of single-u...
This thesis describes the effects of ionic solutions on biopolymer films and the development of a 3D...
Dressing biomaterials play a key role in wound management keeping a moisture medium and protecting a...
The primary goal of this study is to prepare chitosan nanoparticles (CSNPs) by the ionic gelation me...
Chitosan/gelatin and chitosan/gelatin/zeolite films prepared by solvent casting method were impregna...
Cellulose and chitosan are natural polymers that have been used as biocomposite. The aim of this res...
Wound care is a major biomedical field that is challenging due to the delayed wound healing process....
Chitosan/bacterial cellulose composite films containing diamond nanoparticles (NDs) with potential a...
Gelatin has many superior biological properties and can absorb a large volume of water to form hydro...
Marine polysaccharides are believed to be promising wound-dressing nanomaterials because of their bi...
The present work envisages a simple approach to synthesize a new wound dressing based on chitosan-di...
This study is designed to extract crystalline cellulose from cotton and reinforcing gelatin film for...
In this study, we incorporated 2,3-dialdehyde nanocrystalline cellulose (DANC) into chitosan as a re...
Cellulose nanofibers (CNFs), chitosan, and silver nanoparticles (AgNPs) are widely used to enhance t...
Wound dressings designed with simultaneously adequate antibacterial, sorption, and antioxidant prope...
To find renewable and sustainable alternatives to reduce the severe environmental impact of single-u...
This thesis describes the effects of ionic solutions on biopolymer films and the development of a 3D...
Dressing biomaterials play a key role in wound management keeping a moisture medium and protecting a...
The primary goal of this study is to prepare chitosan nanoparticles (CSNPs) by the ionic gelation me...
Chitosan/gelatin and chitosan/gelatin/zeolite films prepared by solvent casting method were impregna...
Cellulose and chitosan are natural polymers that have been used as biocomposite. The aim of this res...
Wound care is a major biomedical field that is challenging due to the delayed wound healing process....
Chitosan/bacterial cellulose composite films containing diamond nanoparticles (NDs) with potential a...
Gelatin has many superior biological properties and can absorb a large volume of water to form hydro...