Introduction. Gene therapy research in the field of orthopaedics have evolved during the last decade, leading to possible applications for the treatment of pathological conditions, such as bone fractures and defects. Several gene transfer techniques have been employed so far for inducing bone formation in animal models of bone defects. Cell-based approaches, such as the implantation in animals of ex vivo genetically modified cells, produced promising results. In this study we used autologous skin fibroblasts, which are very simple to harvest and propagate in culture, transduced ex vivo with the osteogenic factor Lim Mineralization Protein-3 (LMP-3). These engineered cells produced successful bone healing when implanted by the use of a scaff...
Ex vivo nonviral gene delivery of bone inductive factors has the potential to heal bone defects. Due...
Cells genetically modified to produce osteoinductive factors have potential for use in enhancing bon...
Fractures in osteoporotic bones or segment defects are problematic bone lesions with a reduced biolo...
Introduction. Gene therapy research in the field of orthopaedics have evolved during the last decade...
Introduction. Gene therapy research in the field of orthopaedics have evolved during the last decade...
Local gene transfer of the human Lim mineralization protein (LMP), a novel intracellular positive re...
Local gene transfer of the human Lim mineralization protein (LMP), a novel intracellular positive re...
Local gene transfer of the human Lim mineralization protein (LMP), a novel intracellular positive re...
BACKGROUND: Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defect...
BACKGROUND: Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defect...
BACKGROUND: Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defect...
BACKGROUND: Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defect...
Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defective adenovir...
Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defective adenovir...
Ex vivo nonviral gene delivery of bone inductive factors has the potential to heal bone defects. Due...
Ex vivo nonviral gene delivery of bone inductive factors has the potential to heal bone defects. Due...
Cells genetically modified to produce osteoinductive factors have potential for use in enhancing bon...
Fractures in osteoporotic bones or segment defects are problematic bone lesions with a reduced biolo...
Introduction. Gene therapy research in the field of orthopaedics have evolved during the last decade...
Introduction. Gene therapy research in the field of orthopaedics have evolved during the last decade...
Local gene transfer of the human Lim mineralization protein (LMP), a novel intracellular positive re...
Local gene transfer of the human Lim mineralization protein (LMP), a novel intracellular positive re...
Local gene transfer of the human Lim mineralization protein (LMP), a novel intracellular positive re...
BACKGROUND: Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defect...
BACKGROUND: Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defect...
BACKGROUND: Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defect...
BACKGROUND: Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defect...
Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defective adenovir...
Implantation of autologous skin fibroblasts transduced ex vivo with a replication-defective adenovir...
Ex vivo nonviral gene delivery of bone inductive factors has the potential to heal bone defects. Due...
Ex vivo nonviral gene delivery of bone inductive factors has the potential to heal bone defects. Due...
Cells genetically modified to produce osteoinductive factors have potential for use in enhancing bon...
Fractures in osteoporotic bones or segment defects are problematic bone lesions with a reduced biolo...