Department of Radiology, Medical School, University of Patras, Patras, Greece
J Cardiovasc Pharmacol. 2013 Sep;62(3):270-7. doi: 10.1097/FJC.0b013e3182982de7.
Nerve growth factor (NGF) has been reported to play an important role in physiological and pathological angiogenesis. Based on these observations, we hypothesized that NGF may induce the formation of functional blood vessels in a hindlimb ischemic rabbit model. Hindlimb ischemia was induced in 34 rabbits bilaterally by endovascular embolization of femoral arteries. On the 7th, 14th, and 20th postembolization days, NGF was injected intramuscularly, in 1 ischemic limb, and vehicle was injected in the contralateral control limb. On the 40th day, newly developed collateral vessels (diameter >500 μm) were quantified by transauricular intraarterial subtraction angiography. Perfusion analysis of an in vivo dynamic computed tomography study was performed to the limbs to investigate the hemodynamic recovery of the distal ischemic tissues. Functional estimation of limb perfusion showed a statistically significant increase of blood flow and blood volume for NGF. However, the increase of the collateral vessels was not detectable angiographically, providing evidence for the existence of a NGF-stimulated capillary angiogenic network but not increase of arteriogenesis. The combination of NGF with either tropomyosin-related kinase type A or vascular endothelial growth factor receptor 2 antagonists abolished the NGF-induced hemodynamic recovery. These findings provide new insights into understanding the involvement of NGF in vascular formation and its applications in therapeutic angiogenesis.
神经生长因子(NGF)在生理和病理性血管生成中发挥着重要作用。基于这些观察结果,我们假设 NGF 可能会在兔后肢缺血模型中诱导功能性血管的形成。通过血管内栓塞股动脉,在 34 只兔子的双侧下肢诱导后肢缺血。在栓塞后的第 7、14 和 20 天,将 NGF 肌肉内注射到 1 条缺血肢体中,而将载体注射到对侧对照肢体中。在第 40 天,通过经耳内动脉减影血管造影术对新发育的侧支血管(直径>500μm)进行定量。对肢体进行体内动态计算机断层扫描研究的灌注分析,以研究远端缺血组织的血液动力学恢复。对肢体灌注的功能评估显示,NGF 组的血流量和血容量均有统计学意义的增加。然而,血管造影术并未检测到侧支血管的增加,这为 NGF 刺激的毛细血管血管生成网络的存在提供了证据,但并非动脉生成的增加。将 NGF 与原肌球蛋白相关激酶 A 或血管内皮生长因子受体 2 拮抗剂联合使用可消除 NGF 诱导的血液动力学恢复。这些发现为理解 NGF 在血管形成中的作用及其在治疗性血管生成中的应用提供了新的见解。