Department of Orthopedic Surgery, the Second Affiliated Hospital of Xi'an Jiaotong University, China.
Acta Pharmacol Sin. 2010 Jul;31(7):821-30. doi: 10.1038/aps.2010.67. Epub 2010 Jun 28.
To investigate the therapeutic potential of adeno-associated virus (AAV)-mediated expression of vascular endothelial growth factor (VEGF) and bone morphogenetic protein (BMP).
Four experimental groups were administered the following AAV vector constructs: rAAV-hVEGF(165)-internal ribosome entry site (IRES)-hBMP-7 (AAV-VEGF/BMP), rAAV-hVEGF(165)-GFP (AAV-VEGF), rAAV-hBMP-7-GFP (AAV-BMP), and rAAV-IRES-GFP (AAV-GFP). VEGF(165) and BMP-7 gene expression was detected using RT-PCR. The VEGF(165) and BMP-7 protein expression was determined by Western blotting and ELISA. The rabbit ischemic hind limb model was adopted and rAAV was administered intramuscularly into the ischemic limb.
Rabbit bone marrow-derived mesenchymal stem cells (BMSCs) were cultured and infected with the four viral vectors. The expression of GFP increased from the 7th day of infection and could be detected on the 28th day post-infection. In the AAV-VEGF/BMP group, the levels of VEGF165 and BMP-7 increased with prolonged infection time. The VEGF(165) and BMP-7 secreted from BMSCs in the AAV-VEGF/BMP group enhanced HUVEC tube formation and resulted in a stronger osteogenic ability, respectively. In rabbit ischemic hind limb model, GFP expression increased from the 4th week and could be detected at 8 weeks post-injection. The rAAV vector had superior gene expressing activity. Eight weeks after gene transfer, the mean blood flow was significantly higher in the AAV-VEGF/BMP group. Orthotopic ossification was radiographically evident, and capillary growth and calcium deposits were obvious in this group.
AAV-mediated VEGF and BMP gene transfer stimulates angiogenesis and bone regeneration and may be a new therapeutic technique for the treatment of avascular necrosis of the femoral head (ANFH).
研究腺相关病毒(AAV)介导的血管内皮生长因子(VEGF)和骨形态发生蛋白(BMP)表达的治疗潜力。
将以下 AAV 载体构建物分别施用于四个实验组:rAAV-hVEGF(165)-内部核糖体进入位点(IRES)-hBMP-7(AAV-VEGF/BMP)、rAAV-hVEGF(165)-GFP(AAV-VEGF)、rAAV-hBMP-7-GFP(AAV-BMP)和 rAAV-IRES-GFP(AAV-GFP)。使用 RT-PCR 检测 VEGF(165)和 BMP-7 基因表达。通过 Western blot 和 ELISA 测定 VEGF(165)和 BMP-7 蛋白表达。采用兔缺血性后肢模型,将 rAAV 肌肉内注射到缺血肢体。
培养并感染了四种病毒载体的兔骨髓间充质干细胞(BMSC)。GFP 的表达从感染后的第 7 天开始增加,并可在感染后第 28 天检测到。在 AAV-VEGF/BMP 组中,VEGF165 和 BMP-7 的水平随感染时间的延长而增加。来自 AAV-VEGF/BMP 组的 BMSC 分泌的 VEGF(165)和 BMP-7 分别增强了 HUVEC 管形成并导致更强的成骨能力。在兔缺血性后肢模型中,GFP 表达从第 4 周开始增加,并可在注射后 8 周检测到。rAAV 载体具有优越的基因表达活性。基因转移 8 周后,AAV-VEGF/BMP 组的平均血流明显更高。该组在 X 线片上可见原位骨化,毛细血管生长和钙沉积明显。
AAV 介导的 VEGF 和 BMP 基因转导刺激血管生成和骨再生,可能是治疗股骨头缺血性坏死(ANFH)的新治疗技术。