Contains fulltext : 88733.pdf (Publisher’s version ) (Closed access)The aim of this study was to evaluate and compare the biocompatibility of computer-assisted designed (CAD) synthetic hydroxyapatite (HA) and tricalciumphosphate (TCP) blocks and natural bovine hydroxyapatite blocks for augmentations and endocultivation by supporting and promoting the proliferation of human periosteal cells. Human periosteum cells were cultured using an osteogenic medium consisting of Dulbecco's modified Eagle medium supplemented with fetal calf serum, Penicillin, Streptomycin and ascorbic acid at 37 degrees C with 5% CO(2). Three scaffolds were tested: 3D-printed HA, 3D-printed TCP and bovine HA. Cell vitality was assessed by Fluorescein D...
In terms of bone physiology, the periosteum plays critical roles in both bone formation and defect h...
Background: This study used a tissue-engineering approach, which combined autologous periosteal cell...
As part of our clinical tests on bone regeneration using cultured periosteal sheets, here, we prepar...
The aim of this study was to evaluate and compare the biocompatibility of computer-assisted designed...
Contains fulltext : 81119.pdf (publisher's version ) (Closed access)OBJECTIVES: Th...
Contains fulltext : 89707.pdf (publisher's version ) (Closed access)OBJECTIVES: Pl...
Current knowledge suggests that the periosteum, a fibrous tissue which covers the surface of all bon...
Contains fulltext : 80767.pdf (publisher's version ) (Closed access)The aim of thi...
Contains fulltext : 79508.pdf (Publisher’s version ) (Closed access)Poly-lactic-gl...
Bone tissue engineering requires a well-designed scaffold that can be biodegradable, biocompatible, ...
The periosteum plays a critical role in bone homeostasis and regeneration. It contains a vascular co...
Contains fulltext : 154663.pdf (publisher's version ) (Open Access)The aim of this...
Biomaterial, an essential component of tissue engineering, serves as a scaffold for cell attachment,...
Copyright © 2015 John Michel et al. This is an open access article distributed under the Creative Co...
The specific aim of this study was to gain insight into the influence of scaffold pore size, pore sh...
In terms of bone physiology, the periosteum plays critical roles in both bone formation and defect h...
Background: This study used a tissue-engineering approach, which combined autologous periosteal cell...
As part of our clinical tests on bone regeneration using cultured periosteal sheets, here, we prepar...
The aim of this study was to evaluate and compare the biocompatibility of computer-assisted designed...
Contains fulltext : 81119.pdf (publisher's version ) (Closed access)OBJECTIVES: Th...
Contains fulltext : 89707.pdf (publisher's version ) (Closed access)OBJECTIVES: Pl...
Current knowledge suggests that the periosteum, a fibrous tissue which covers the surface of all bon...
Contains fulltext : 80767.pdf (publisher's version ) (Closed access)The aim of thi...
Contains fulltext : 79508.pdf (Publisher’s version ) (Closed access)Poly-lactic-gl...
Bone tissue engineering requires a well-designed scaffold that can be biodegradable, biocompatible, ...
The periosteum plays a critical role in bone homeostasis and regeneration. It contains a vascular co...
Contains fulltext : 154663.pdf (publisher's version ) (Open Access)The aim of this...
Biomaterial, an essential component of tissue engineering, serves as a scaffold for cell attachment,...
Copyright © 2015 John Michel et al. This is an open access article distributed under the Creative Co...
The specific aim of this study was to gain insight into the influence of scaffold pore size, pore sh...
In terms of bone physiology, the periosteum plays critical roles in both bone formation and defect h...
Background: This study used a tissue-engineering approach, which combined autologous periosteal cell...
As part of our clinical tests on bone regeneration using cultured periosteal sheets, here, we prepar...