Purpose. This study evaluated the efficacy of a regenerative approach using mesenchymal stem cells (MSCs) and CAD-CAM customized pure and porous hydroxyapatite (HA) scaffolds to replace the temporomandibular joint (TMJ) condyle. Methods. Pure HA scaffolds with a 70% total porosity volume were prototyped using CAD-CAM technology to replace the two temporomandibular condyles (left and right) of the same animal. MSCs were derived from the aspirated iliac crest bone marrow, and platelets were obtained from the venous blood of the sheep. Custom-made surgical guides were created by direct metal laser sintering and were used to export the virtual planning of the bone cut lines into the surgical environment. Sheep were sacrificed 4 months postopera...
Reconstruction of bone defects represents a serious issue for orthopaedic and maxillofacial surgeons...
Bone loss is still a major problem in orthopedics. The purpose of this experimental study is to eval...
Adding stem cells to biodegradable scaffolds to enhance bone regeneration is a valuable option. Diff...
Purpose. This study evaluated the efficacy of a regenerative approach using mesenchymal stem cells (...
Copyright © 2013 L. Ciocca et al.This is an open access article distributed under the Creative Commo...
In this study, rapid CAD-CAM prototyping of pure hydroxyapatite to replace temporomandibular joint c...
The development of an osteogenic bone graft substitute has important practical and cost implications...
Introduction Tissue engineering provides an alternative modality allowing for decreased morbidity o...
Aims: Minimally manipulated cells, such as autologous bone marrow concentrates (BMC), have been inve...
BACKGROUND: We reviewed the biological and mechanical properties of porous hydroxyapatite (HA) compa...
Background: An entire articular condyle engineered from stem cells may provide an alternative therap...
Reconstruction of lost or damaged cartilaginous structures of the temporomandibular joint (TMJ) pres...
AbstractMandibular destruction resulting from tumours, trauma, congenital, ankylosis and other reaso...
Regeneration of large, 'critical-size' bone defects remains a clinical challenge. Bone tissue engine...
Large bone defects are still a challenge to orthopedic surgeons. In this study, a massive bone defec...
Reconstruction of bone defects represents a serious issue for orthopaedic and maxillofacial surgeons...
Bone loss is still a major problem in orthopedics. The purpose of this experimental study is to eval...
Adding stem cells to biodegradable scaffolds to enhance bone regeneration is a valuable option. Diff...
Purpose. This study evaluated the efficacy of a regenerative approach using mesenchymal stem cells (...
Copyright © 2013 L. Ciocca et al.This is an open access article distributed under the Creative Commo...
In this study, rapid CAD-CAM prototyping of pure hydroxyapatite to replace temporomandibular joint c...
The development of an osteogenic bone graft substitute has important practical and cost implications...
Introduction Tissue engineering provides an alternative modality allowing for decreased morbidity o...
Aims: Minimally manipulated cells, such as autologous bone marrow concentrates (BMC), have been inve...
BACKGROUND: We reviewed the biological and mechanical properties of porous hydroxyapatite (HA) compa...
Background: An entire articular condyle engineered from stem cells may provide an alternative therap...
Reconstruction of lost or damaged cartilaginous structures of the temporomandibular joint (TMJ) pres...
AbstractMandibular destruction resulting from tumours, trauma, congenital, ankylosis and other reaso...
Regeneration of large, 'critical-size' bone defects remains a clinical challenge. Bone tissue engine...
Large bone defects are still a challenge to orthopedic surgeons. In this study, a massive bone defec...
Reconstruction of bone defects represents a serious issue for orthopaedic and maxillofacial surgeons...
Bone loss is still a major problem in orthopedics. The purpose of this experimental study is to eval...
Adding stem cells to biodegradable scaffolds to enhance bone regeneration is a valuable option. Diff...