Amniotic multipotential tissue matrix (AmnioMTM) is a membrane material derived from placental tissues and rich in growth factors that have been reported to have potential in healing bone. This study hypothesized that demineralized bone matrix (DBM) supplemented with AmnioMTM would accelerate healing and bone formation as compared with DBM alone in a critical size (10 mm) rat calvarial bone defect model. Five DBM grafts and 5 DBM supplemented with AmnioMTM grafts were implanted in a 10-mm critical sized defect in 10 rats (1 implant per rat). After 4 weeks, animals were euthanized and defects evaluated by microCT and histology. There were no statistical differences in microCT data for mineral density, percent bone fill, or bone surface to vo...
This thesis investigated hybrid biomaterial systems with controlled strategies for bone morphogeneti...
International audienceAllogenic demineralized bone matrix has been developed as a reliable alternati...
Mohammad H Samandari1, Shahriar Adibi2, Ahad Khoshzaban3, Sara Aghazadeh5, Parviz Dihimi4, Siamak S ...
The aim of this investigation was to evaluate the osteoinductive property of autogenous demineralize...
International audienceDue to its biological properties, human amniotic membrane (hAM) is widely stud...
International audienceObjective: The purpose of this study was to investigate the effect of fresh hu...
International audienceThanks to their biological properties, amniotic membrane (AM), and its derivat...
Aim: To evaluate bone regeneration using two novel alloplastic biomaterials in a “critical” size, ra...
This study aimed to determine the effects of bovine amniotic fluid combined with bone graft in treat...
Introduction : The purpose of this study was to evaluate the possibility of the acellular dermal mat...
Repair of large bone defects represents a challenge to orthopedic surgery since autogenous graft is ...
Background: The repair of long bone segmental defects is one of the most challenging problems in ort...
Periodontitis is a prevalent disease characterized by the loss of periodontal supporting tissues, bo...
OBJECTIVE: The objective of this study was to evaluate healing patterns of critical-size calvarial b...
Background: The study evaluates the osteogenic properties and biocompatibility of growth factor-rich...
This thesis investigated hybrid biomaterial systems with controlled strategies for bone morphogeneti...
International audienceAllogenic demineralized bone matrix has been developed as a reliable alternati...
Mohammad H Samandari1, Shahriar Adibi2, Ahad Khoshzaban3, Sara Aghazadeh5, Parviz Dihimi4, Siamak S ...
The aim of this investigation was to evaluate the osteoinductive property of autogenous demineralize...
International audienceDue to its biological properties, human amniotic membrane (hAM) is widely stud...
International audienceObjective: The purpose of this study was to investigate the effect of fresh hu...
International audienceThanks to their biological properties, amniotic membrane (AM), and its derivat...
Aim: To evaluate bone regeneration using two novel alloplastic biomaterials in a “critical” size, ra...
This study aimed to determine the effects of bovine amniotic fluid combined with bone graft in treat...
Introduction : The purpose of this study was to evaluate the possibility of the acellular dermal mat...
Repair of large bone defects represents a challenge to orthopedic surgery since autogenous graft is ...
Background: The repair of long bone segmental defects is one of the most challenging problems in ort...
Periodontitis is a prevalent disease characterized by the loss of periodontal supporting tissues, bo...
OBJECTIVE: The objective of this study was to evaluate healing patterns of critical-size calvarial b...
Background: The study evaluates the osteogenic properties and biocompatibility of growth factor-rich...
This thesis investigated hybrid biomaterial systems with controlled strategies for bone morphogeneti...
International audienceAllogenic demineralized bone matrix has been developed as a reliable alternati...
Mohammad H Samandari1, Shahriar Adibi2, Ahad Khoshzaban3, Sara Aghazadeh5, Parviz Dihimi4, Siamak S ...