In this study, three-dimensional materials based on blends of silk fibroin (SF), collagen (Coll), and chitosan (CTS) cross-linked by glyoxal solution were prepared and the properties of the new materials were studied. The structure of the composites and the interactions between scaffold components were studied using FTIR spectroscopy. The microstructure was observed using a scanning electron microscope. The following properties of the materials were measured: density and porosity, moisture content, and swelling degree. Mechanical properties of the 3D materials under compression were studied. Additionally, the metabolic activity of MG-63 osteoblast-like cells on materials was examined. It was found that the materials were characterized by a ...
Regeneration of diseased or damaged skeletal tissues is one of the challenge that needs to be solve...
Natupolymer-based scaffolds can increase cell affinity to biomaterials and improve cell responses. S...
Natupolymer-based scaffolds can increase cell affinity to biomaterials and improve cell responses. S...
In this study, three-dimensional materials based on blends of silk fibroin (SF), collagen (Coll), an...
In this work, the biological properties of three-dimensional scaffolds based on a blend of nanohydro...
Bone tissue engineering has been emerged as an alternative tool to induce bone regeneration through ...
Chitosan (CTS) and collagen (Coll) are natural biomaterials that have been extensively used in tissu...
Novel materials with promising properties can be used to achieve scaffold-based tissue engineering g...
Bone regeneration and natural repair are long-standing processes that can lead to uneven new tissue ...
Bone regeneration and natural repair are long-standing processes that can lead to uneven new tissue ...
Materials based on polyhydroxybutyrate (PHB), chitosan (CHI) and fibroin (SF) are biocompatible ...
Biomaterials Research Lab, Department of Chemistry, D.K.M. College for Women, Vellore-632 001, Tami...
Objective: The three-dimensional biodegradable scaffolds could play an important role in terms of ti...
Silk fibroin is a protein with intrinsic characteristics that make it a good candidate as a scaffold...
Silk fibroin (SF) is the inner component of the silk fiber spun by Bombyx mori silkworm. It is consi...
Regeneration of diseased or damaged skeletal tissues is one of the challenge that needs to be solve...
Natupolymer-based scaffolds can increase cell affinity to biomaterials and improve cell responses. S...
Natupolymer-based scaffolds can increase cell affinity to biomaterials and improve cell responses. S...
In this study, three-dimensional materials based on blends of silk fibroin (SF), collagen (Coll), an...
In this work, the biological properties of three-dimensional scaffolds based on a blend of nanohydro...
Bone tissue engineering has been emerged as an alternative tool to induce bone regeneration through ...
Chitosan (CTS) and collagen (Coll) are natural biomaterials that have been extensively used in tissu...
Novel materials with promising properties can be used to achieve scaffold-based tissue engineering g...
Bone regeneration and natural repair are long-standing processes that can lead to uneven new tissue ...
Bone regeneration and natural repair are long-standing processes that can lead to uneven new tissue ...
Materials based on polyhydroxybutyrate (PHB), chitosan (CHI) and fibroin (SF) are biocompatible ...
Biomaterials Research Lab, Department of Chemistry, D.K.M. College for Women, Vellore-632 001, Tami...
Objective: The three-dimensional biodegradable scaffolds could play an important role in terms of ti...
Silk fibroin is a protein with intrinsic characteristics that make it a good candidate as a scaffold...
Silk fibroin (SF) is the inner component of the silk fiber spun by Bombyx mori silkworm. It is consi...
Regeneration of diseased or damaged skeletal tissues is one of the challenge that needs to be solve...
Natupolymer-based scaffolds can increase cell affinity to biomaterials and improve cell responses. S...
Natupolymer-based scaffolds can increase cell affinity to biomaterials and improve cell responses. S...