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首页> 外文期刊>Biomaterials >The healing of critical-sized femoral segmental bone defects in rabbits using baculovirus-engineered mesenchymal stem cells.
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The healing of critical-sized femoral segmental bone defects in rabbits using baculovirus-engineered mesenchymal stem cells.

机译:使用杆状病毒工程化的间充质干细胞修复兔的关键尺寸股骨节段骨缺损。

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摘要

Management of massive segmental bone defects remains a challenging clinical problem and bone marrow-derived mesenchymal stem cells (BMSCs) hold promise for bone regeneration. To explore whether BMSCs engineered by baculovirus (an emerging gene delivery vector) can heal large bone defects, New Zealand White (NZW) rabbit BMSCs were transduced with the BMP2-expressing baculovirus or VEGF-expressing baculovirus, and co-implanted into critical-sized (10mm) femoral segmental defects in NZW rabbits. X-ray analysis revealed that the baculovirus-engineered BMSCs not only bridged the defects at as early as week 2, but also healed the defects in 100% of rabbits (13/13) at week 4. The osteogenic metabolism, as monitored by positron emission tomography (PET) also suggested the completion of bone healing at week 8. When compared with other control groups, the BMP2/VEGF-expressing BMSCs remarkably enhanced the segmental bone repair and mechanical properties, as evidenced by micro-computed tomography (microCT), histochemical staining and biomechanical testing. The ameliorated bone healing concurred with the augmented angiogenesis. These data demonstrated, that BMSCs engineered to express BMP2 and VEGF accelerate the repair of large femoral bone defects and improve the quality of the regenerated bone, which paves an avenue to utilizing baculovirus as a vector for BMSCs modification and regenerative medicine.
机译:大规模节段性骨缺损的管理仍然是一个具有挑战性的临床问题,骨髓源性间充质干细胞(BMSCs)有望使骨再生。为了研究杆状病毒(一种新兴的基因递送载体)工程改造的BMSCs是否能治愈大的骨缺损,将新西兰白(NZW)兔BMSCs与表达BMP2的杆状病毒或表达VEGF的杆状病毒进行转导,并共植入临界大小(10mm)NZW兔股骨节段性缺损。 X射线分析显示,杆状病毒工程化的BMSCs不仅早在第2周就弥合了缺陷,而且在第4周就治愈了100%的兔子(13/13)的缺陷。正电子监测成骨代谢放射断层扫描(PET)也提示在第8周完成骨愈合。与其他对照组相比,表达BMP2 / VEGF的BMSCs显着增强了节段性骨修复和力学性能,这是通过微计算机断层扫描(microCT)证明的。 ,组织化学染色和生物力学测试。改善的骨愈合与增强的血管生成同时发生。这些数据表明,经工程改造以表达BMP2和VEGF的BMSC促进了大股骨缺损的修复并改善了再生骨的质量,这为利用杆状病毒作为BMSC修饰和再生医学的载体铺平了道路。

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