The aim of this study is the analysis and characterization of a hydrolyzed keratin-based biomaterial and its processing using electrospinning technology to develop in vitro tissue models. This biomaterial, extracted from poultry feathers, was mixed with type A porcine gelatin and cross-linked with γ-glycidyloxy-propyl-trimethoxy-silane (GPTMS) to be casted initially in the form of film and characterized in terms of swelling, contact angle, mechanical properties, and surface charge density. After these chemical-physical characterizations, electrospun nanofibers structures were manufactured and their mechanical properties were evaluated. Finally, cell response was analyzed by testing the efficacy of keratin-based structures in sustaining cell...
Polyhydroxyoctanoate, as a biocompatible and biodegradable biopolymer, represents an ideal candidate...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Polyhydroxyoctanoate, as a biocompatible and biodegradable biopolymer, represents an ideal candidate...
The aim of this study is the analysis and characterization of a hydrolyzed keratin-based biomaterial...
The aim of this study is the analysis and characterization of a hydrolyzed keratin-based biomaterial...
Keratin emerges as an attractive protein of human origin to be used as a template for tissue regener...
Skin is an important organ in the human body. It serves several functions but mainly, protecting th...
Keratins are naturally derived proteins that can be fabricated into several biomaterials morphologie...
Polyhydroxyoctanoate, as a biocompatible and biodegradable biopolymer, represents an ideal candidate...
In this study new electrospun silk fibroin (SF) based scaffolds were developed and their material an...
Natural extracellular Matrix (ECM) creates a unique cellular microenvironment. It acts as a support ...
Introduction: Gelatin is a natural polymer commonly used in biomedical applications in combination w...
In this study, composite nanofibrous scaffolds were obtained by electrospinning a trifluoroacetic ac...
Mechanotransduction is defined as the ability of cells to sense mechanical stimuli from their surrou...
The natural composite assembly of wool, made of cortical cells embedded in a highly crosslinked, sul...
Polyhydroxyoctanoate, as a biocompatible and biodegradable biopolymer, represents an ideal candidate...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Polyhydroxyoctanoate, as a biocompatible and biodegradable biopolymer, represents an ideal candidate...
The aim of this study is the analysis and characterization of a hydrolyzed keratin-based biomaterial...
The aim of this study is the analysis and characterization of a hydrolyzed keratin-based biomaterial...
Keratin emerges as an attractive protein of human origin to be used as a template for tissue regener...
Skin is an important organ in the human body. It serves several functions but mainly, protecting th...
Keratins are naturally derived proteins that can be fabricated into several biomaterials morphologie...
Polyhydroxyoctanoate, as a biocompatible and biodegradable biopolymer, represents an ideal candidate...
In this study new electrospun silk fibroin (SF) based scaffolds were developed and their material an...
Natural extracellular Matrix (ECM) creates a unique cellular microenvironment. It acts as a support ...
Introduction: Gelatin is a natural polymer commonly used in biomedical applications in combination w...
In this study, composite nanofibrous scaffolds were obtained by electrospinning a trifluoroacetic ac...
Mechanotransduction is defined as the ability of cells to sense mechanical stimuli from their surrou...
The natural composite assembly of wool, made of cortical cells embedded in a highly crosslinked, sul...
Polyhydroxyoctanoate, as a biocompatible and biodegradable biopolymer, represents an ideal candidate...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Polyhydroxyoctanoate, as a biocompatible and biodegradable biopolymer, represents an ideal candidate...