Zhou M, Sutliff R L, Paul R J, Lorenz J N, Hoying J B, Haudenschild C C, Yin M, Coffin J D, Kong L, Kranias E G, Luo W, Boivin G P, Duffy J J, Pawlowski S A, Doetschman T
Department of Molecular Genetics, University of Cincinnati College of Medicine, Ohio 45267, USA.
Nat Med. 1998 Feb;4(2):201-7. doi: 10.1038/nm0298-201.
Vascular tone control is essential in blood pressure regulation, shock, ischemia-reperfusion, inflammation, vessel injury/repair, wound healing, temperature regulation, digestion, exercise physiology, and metabolism. Here we show that a well-known growth factor, FGF2, long thought to be involved in many developmental and homeostatic processes, including growth of the tissue layers of vessel walls, functions in vascular tone control. Fgf2 knockout mice are morphologically normal and display decreased vascular smooth muscle contractility, low blood pressure and thrombocytosis. Following intra-arterial mechanical injury, FGF2-deficient vessels undergo a normal hyperplastic response. These results force us to reconsider the function of FGF2 in vascular development and homeostasis in terms of vascular tone control.
血管张力控制在血压调节、休克、缺血再灌注、炎症、血管损伤/修复、伤口愈合、体温调节、消化、运动生理学和新陈代谢中至关重要。在此我们表明,一种众所周知的生长因子FGF2,长期以来被认为参与许多发育和稳态过程,包括血管壁各组织层的生长,在血管张力控制中发挥作用。Fgf2基因敲除小鼠形态正常,但表现出血管平滑肌收缩力下降、低血压和血小板增多。动脉内机械损伤后,缺乏FGF2的血管会发生正常的增生反应。这些结果迫使我们从血管张力控制的角度重新审视FGF2在血管发育和稳态中的功能。