Department of Burn, Ruijin Hospital, JiaoTong University Medical College, Shanghai, China.
J Cell Mol Med. 2009 Nov-Dec;13(11-12):4492-504. doi: 10.1111/j.1582-4934.2008.00555.x.
Angiogenesis, the development of new blood vessel from pre-existing vessels, is a key process in the formation of the granulation tissue during wound healing. The appropriate development of new blood vessels, along with their subsequent maturation and differentiation, establishes the foundation for functional wound neovasculature. We performed studies in vivo and used a variety of cellular and molecular approaches in vitro to show that insulin stimulates angiogenesis and to elucidate the signalling mechanisms by which this protein stimulates microvessel development. Mice skin injected with insulin shows longer vessels with more branches, along with increased numbers of associated alpha-smooth muscle actin-expressing cells, suggesting the appropriate differentiation and maturation of the new vessels. We also found that insulin stimulates human microvascular endothelial cell migration and tube formation, and that these effects occur independently of VEGF/VEGFR signalling, but are dependent upon the insulin receptor itself. Downstream signalling pathways involve PI3K, Akt, sterol regulatory element-binding protein 1 (SREBP-1) and Rac1; inhibition of these pathways results in elimination of endothelial cell migration and tube formation and significantly decreases the development of microvessels. Our findings strongly suggest that insulin is a good candidate for the treatment of ischaemic wounds and other conditions in which blood vessel development is impaired.
血管生成,即新血管从预先存在的血管中发展出来,是创伤愈合过程中肉芽组织形成的关键过程。新血管的适当发育,以及随后的成熟和分化,为功能性创伤新血管提供了基础。我们在体内进行了研究,并在体外使用了多种细胞和分子方法,证明了胰岛素刺激血管生成,并阐明了这种蛋白质刺激微血管发育的信号机制。用胰岛素注射的小鼠皮肤显示出更长的血管,更多的分支,以及更多的相关的α-平滑肌肌动蛋白表达细胞,这表明新血管的适当分化和成熟。我们还发现,胰岛素刺激人微血管内皮细胞的迁移和管形成,并且这些作用独立于 VEGF/VEGFR 信号,但依赖于胰岛素受体本身。下游信号通路涉及 PI3K、Akt、固醇调节元件结合蛋白 1(SREBP-1)和 Rac1;抑制这些通路会导致内皮细胞迁移和管形成的消除,并显著减少微血管的发育。我们的研究结果强烈表明,胰岛素是治疗缺血性伤口和其他血管发育受损疾病的理想候选药物。