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采用体外复制缺陷型腺病毒介导的骨形态发生蛋白-2 基因转染骨髓基质细胞和复合生物材料进行大规模双皮质颅骨骨再生。

Large-scale bicortical skull bone regeneration using ex vivo replication-defective adenoviral-mediated bone morphogenetic protein-2 gene-transferred bone marrow stromal cells and composite biomaterials.

机构信息

Department of Plastic Surgery, China Medical University Hospital, and School of Medicine, China Medical University, Taichung, Taiwan, Republic of China.

出版信息

Neurosurgery. 2009 Dec;65(6 Suppl):75-81; discussion 81-3. doi: 10.1227/01.NEU.0000345947.33730.91.

DOI:10.1227/01.NEU.0000345947.33730.91
PMID:19935005
Abstract

OBJECTIVE

Bone marrow stromal cells (BMSCs) have great potential in bone repair. We developed an animal model to test the hypothesis that ex vivo gene transfer of human bone morphogenetic protein (BMP)-2 to BMSCs via a replication-defective (E1A-deleted) adenovirus vector (AdV) with appropriate biopolymers would enhance autologous bone formation during repair of a large-scale skull defect.

METHODS

Eighteen miniature swine were treated with AdV BMP-2-transduced BMSCs in biopolymer (group 1), BMSCs in biopolymer (group 2), or biopolymer alone (group 3). After 6 months, the swine were killed, and the skull repair was examined by gross pictures, histology, 3-dimensional computed tomography, and biomechanical study.

RESULTS

Group 1 showed complete solid bone formation after 6 months, and hematoxylin and eosin staining demonstrated the presence of mature, woven, well-mineralized bone. Computed tomography showed wholesome repair of the skull defect. Statistical analysis demonstrated a significant difference in bone thickness between groups 1 and 2. Biomechanical testing showed a statistically significant difference in the stiffness of new bone formed in group 1 compared with group 2.

CONCLUSION

The Ad5 E1A-deleted AdV may be the optimal starting vector in ex vivo gene therapy for benign skeletal diseases. Additionally, the use of the gelatin/tricalcium phosphate ceramic/glutaraldehyde biopolymer with AdV BMP-2 gene transfer strongly enhances the bony healing of critical-size bicortical craniofacial defects. This method can be used by modifying the delivery of constructs to malunion treatment, in regional osteoporosis therapy, and spinal fusion.

摘要

目的

骨髓基质细胞(BMSCs)在骨修复中具有巨大的潜力。我们开发了一种动物模型来测试以下假设:通过具有适当生物聚合物的复制缺陷型(E1A 缺失)腺病毒载体(AdV)将人骨形态发生蛋白(BMP)-2的外源性基因转移到 BMSCs 中,将增强自体骨形成,从而修复大的颅骨缺损。

方法

18 头小型猪通过生物聚合物中的 AdV-BMP-2 转导的 BMSCs(第 1 组)、生物聚合物中的 BMSCs(第 2 组)或单纯的生物聚合物(第 3 组)进行治疗。6 个月后处死小猪,通过大体照片、组织学、三维 CT 和生物力学研究检查颅骨修复情况。

结果

第 1 组在 6 个月后显示出完全的固体骨形成,苏木精和伊红染色显示出成熟、编织、矿化良好的骨。CT 显示颅骨缺损得到了很好的修复。统计分析表明,第 1 组与第 2 组之间的骨厚度存在显著差异。生物力学测试表明,第 1 组新骨形成的刚度与第 2 组相比存在显著差异。

结论

Ad5 E1A 缺失的 AdV 可能是良性骨骼疾病体外基因治疗的最佳起始载体。此外,使用带有 AdV-BMP-2 基因转移的明胶/三钙磷酸盐陶瓷/戊二醛生物聚合物强烈增强了临界尺寸双皮质颅面缺损的骨愈合。通过修改载体的递送,可以将这种方法用于骨愈合不良的治疗、区域性骨质疏松症的治疗和脊柱融合。

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