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Ex vivo gene therapy in autologous bone marrow stromal stem cells for tissue-engineered maxillofacial bone regeneration
被引:0
作者:
S C-N Chang
H L Chuang
Y R Chen
J K Chen
H-Y Chung
Y-L Lu
H-Y Lin
C-L Tai
J Lou
机构:
[1] Chang Gung Memorial Hospital,Department of Plastic Surgery
[2] HsinChu Mackay Memorial Hospital,Division of Neurosurgery, Department of Surgery
[3] Chang Gung University,Department of Physiology
[4] Biomechanics Center,Department of Orthopedic Surgery
[5] Chang Gung Memorial Hospital,Department of Orthopedic Surgery
[6] Washington University Medical School,undefined
[7] One Barnes Hospital Plaza,undefined
来源:
Gene Therapy
|
2003年
/
10卷
关键词:
stem cells;
tissue engineering;
bone regeneration;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
This study examines the clinical relevance of tissue engineering integrating gene therapy and polymer science to bone regeneration. Bilateral maxillary defects (3 × 1.2 cm2) in 20 miniature swine were bridged with a bioresorbable internal splint. Constructs were created using ex vivo adenovirus bone morphogenetic protein (BMP)-2-mediated gene transfer to the expanded bone marrow mesenchymal stem cells (MSCs) 7 days before implantation. Controls were performed using adenovirus β-galactosidase. The BMP-2 cell/construct displayed white solid bone formation after 3 months. Meanwhile, the hematoxylin and eosin and Von Kossa stains demonstrated exhibited mature woven bone with good mineralization. Additionally, three-dimensional computer tomography imaging revealed a nearly complete infraorbital rim repair. Quantitative analysis demonstrated a significant difference (P<0.001) in bone formation. Finally, biomechanical testing revealed no statistically significant difference in the maximal compressive strength of new bone formed by BMP-2 cell constructs and the normal maxilla. The data evidenced de novo bone formation capable of sustaining axial compressive loads. The measurement results showed that ex vivo replication defective adenovirus-mediated human BMP-2 gene transfer to MSCs enhances autologous bone formation in the repair of maxillary defects.
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页码:2013 / 2019
页数:6
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