Natural bone consists of cortical and trabecular morphologies, the latter having variable pore sizes. This study aims at engineering different bone-like structures using scaffolds with small pores (112-224 µm) in diameter on one side and large pores (400-500 µm) on the other, while keeping scaffold porosities constant among groups. We hypothesized that tissue engineered bone-like structure resulting from silk fibroin (SF) implants is pre-determined by the scaffolds' geometry. To test this hypothesis, SF scaffolds with different pore diameters were prepared and seeded with human mesenchymal stem cells (hMSC). As compared to static seeding, dynamic cell seeding in spinner flasks resulted in equal cell viability and proliferation, and better c...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Porous biodegradable silk scaffolds and human bone marrow derived mesenchymal stem cells (hMSCs) wer...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
How scaffold porosity, pore diameter and geometry influence cellular behavior is-although heavily re...
How scaffold porosity, pore diameter and geometry influence cellular behavior is-although heavily re...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Implant design for bone regeneration is expected to be optimized when implant structures resemble th...
Porous biodegradable silk scaffolds and human bone marrow derived mesenchymal stem cells (hMSCs) wer...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
How scaffold porosity, pore diameter and geometry influence cellular behavior is-although heavily re...
How scaffold porosity, pore diameter and geometry influence cellular behavior is-although heavily re...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...