Herewith waste collagen was processed using a deep eutectic solvent (DES) obtained by the complexation between choline chloride (ChCl) and ethylene glycol 1:2 (ChCl:2EG) to form a material with properties similar to leather. The material generated using the waste tanned collagen processed with ChCl:2EG followed by mechanical extrusion was found to show characteristics similar to the one obtained from the material using animal hide powder. However, the tensile strength of extruded collagen was substantially higher (7.56 MPa vs. 0.23 MPa). The improved strength and structure may be due in part to traces of iron imparted into the material during extrusion of the acidic collagen sample. Nevertheless, the material thus generated was found to hav...
Collagen fibers from leather-making solid wastes were successfully dissolved in 1-allyl-3-methylimid...
In recent years, the development of partially or totally biodegradable materials based on natural bi...
The aim of the present work is to generate by in vitro technology at laboratory scale a biomaterial ...
Herewith waste collagen was processed using a deep eutectic solvent (DES) obtained by the complexati...
Processing of leather has an historical reputation as a chemically and energetically intensive proce...
Processing of leather has an historical reputation as a chemically and energetically intensive proce...
Abstract Collagen, the most abundant extracellular matrix protein in animal kingdom belongs to a fam...
Natural deep eutectic solvents (NADES) have previously shown antibacterial properties alone or in co...
Leather processing is a significant source of aqueous waste particularly in LEDCs. Most of the waste...
Use of collagen in food production is limited by its low nutritive value and deficient essential ami...
The biomedical properties of a porous bio-collagenic polymer extracted from leather industrial waste...
Water in the wet processes of leather manufacture acts as a solvent, transportation medium, support ...
The aim of the present work is to develop a prototype to produce a new collagenous material by dehyd...
The leather industry generates waste either in solid or liquid form. Fleshing, which is integral par...
Collagen is the most abundant protein in out body, due to its excellent biocompatibility, collagen h...
Collagen fibers from leather-making solid wastes were successfully dissolved in 1-allyl-3-methylimid...
In recent years, the development of partially or totally biodegradable materials based on natural bi...
The aim of the present work is to generate by in vitro technology at laboratory scale a biomaterial ...
Herewith waste collagen was processed using a deep eutectic solvent (DES) obtained by the complexati...
Processing of leather has an historical reputation as a chemically and energetically intensive proce...
Processing of leather has an historical reputation as a chemically and energetically intensive proce...
Abstract Collagen, the most abundant extracellular matrix protein in animal kingdom belongs to a fam...
Natural deep eutectic solvents (NADES) have previously shown antibacterial properties alone or in co...
Leather processing is a significant source of aqueous waste particularly in LEDCs. Most of the waste...
Use of collagen in food production is limited by its low nutritive value and deficient essential ami...
The biomedical properties of a porous bio-collagenic polymer extracted from leather industrial waste...
Water in the wet processes of leather manufacture acts as a solvent, transportation medium, support ...
The aim of the present work is to develop a prototype to produce a new collagenous material by dehyd...
The leather industry generates waste either in solid or liquid form. Fleshing, which is integral par...
Collagen is the most abundant protein in out body, due to its excellent biocompatibility, collagen h...
Collagen fibers from leather-making solid wastes were successfully dissolved in 1-allyl-3-methylimid...
In recent years, the development of partially or totally biodegradable materials based on natural bi...
The aim of the present work is to generate by in vitro technology at laboratory scale a biomaterial ...