Duan Li-Juan, Nagy Andras, Fong Guo-Hua
Center for Vascular Biology, University of Connecticut Health Center, Farmington 06030, USA.
Biol Reprod. 2003 Dec;69(6):1852-8. doi: 10.1095/biolreprod.103.019612. Epub 2003 Jul 30.
Mouse embryogenesis is dose sensitive to vascular endothelial growth factor-A (VEGF-A), and mouse embryos partially deficient in VEGF-A die in utero because of severe vascular defects. In this study, we investigate the possible causes that underlie this phenomenon. Although the development of vascular defects in VEGF-A-deficient embryos seems to suggest that endothelial differentiation depends on the presence of a sufficient level of VEGF-A, we were surprised to find that endothelial differentiation per se is insensitive to a significant loss of VEGF-A activity. Instead, the development of the multipotent mesenchymal cells, from which endothelial progenitors arise in the yolk sac, is most highly dependent on VEGF-A. As a result of VEGF-A deficiency, dramatically fewer multipotent mesenchymal cells are generated in the prospective yolk sac. However, among the small number of mesenchymal cells that do enter the prospective yolk sac, endothelial differentiation occurs at a normal frequency. In the embryo proper, vasculogenesis is initiated actively in spite of a significant VEGF-A deficiency, but the subsequent steps of vascular development are defective. We conclude that a full-level VEGF-A activity is not critical for endothelial specification but is important for two distinct processes before and after endothelial specification: the development of the yolk sac mesenchyme and angiogenic sprouting of blood vessels.
小鼠胚胎发育对血管内皮生长因子 -A(VEGF -A)具有剂量敏感性,VEGF -A部分缺陷的小鼠胚胎因严重的血管缺陷而在子宫内死亡。在本研究中,我们探究了这一现象背后的可能原因。尽管VEGF -A缺陷胚胎中血管缺陷的发展似乎表明内皮细胞分化依赖于足够水平的VEGF -A的存在,但我们惊讶地发现内皮细胞分化本身对VEGF -A活性的显著丧失并不敏感。相反,多能间充质细胞的发育高度依赖于VEGF -A,卵黄囊中内皮祖细胞即来源于此。由于VEGF -A缺陷,预期卵黄囊中产生的多能间充质细胞显著减少。然而,在少量进入预期卵黄囊的间充质细胞中,内皮细胞分化以正常频率发生。在胚胎本身,尽管存在显著的VEGF -A缺陷,血管生成仍积极启动,但随后的血管发育步骤存在缺陷。我们得出结论,VEGF -A的全水平活性对于内皮细胞特化并不关键,但对于内皮细胞特化之前和之后的两个不同过程很重要:卵黄囊间充质的发育和血管的血管生成芽生。