首页> 外文期刊>The Journal of Physiology >Vascular endothelial growth factor increases Rana vascular permeability and compliance by different signalling pathways.
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Vascular endothelial growth factor increases Rana vascular permeability and compliance by different signalling pathways.

机译:血管内皮生长因子通过不同的信号通路增加蛙皮血管的通透性和顺应性。

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Vascular endothelial growth factor (VEGF) chronically increases microvascular permeability, compliance and vessel diameter. To determine the signalling pathways by which VEGF exerts these effects, we investigated the role of Ca2+ influx and mitogen-activated protein kinase (MAPK) phosphorylation on the increase in hydraulic conductivity (Lp), diameter and compliance in mesenteric microvessels in the anaesthetised frog (Rana species). The VEGF-mediated chronically increased permeability was attenuated by co-perfusion of VEGF with 5 mM NiCl2, previously shown to inhibit Ca2+ influx. MAPK phosphorylation inhibition by PD98059 did not affect the chronic increase in Lp. To determine whether other agonists which increased Ca2+ influx also chronically increased Lp, the effect of ATP perfusion on chronic Lp was measured. ATP perfusion also chronically increased Lp. The chronic increase in Lp was therefore dependent on an initial transient Ca2+ influx, and not MAPK activation, and was not unique to VEGF stimulation. Inhibition of Ca2+ influx did not inhibit the increase in microvascular diameter or compliance brought about by VEGF. Both these increases were inhibited by PD98059. The VEGF-mediated increase in compliance and diameter was therefore dependent on MAPK activation, not on Ca2+ influx. The chronic increase in Lp stimulated by VEGF perfusion 24 h previously was reduced when the vessel was perfused with 5 mM NiCl2. The sustained, high Lp was therefore dependent on Ca2+ influx. The endothelial cell calcium concentration ([Ca2+]i) of vessels previously perfused with VEGF or ATP, and with a chronically increased Lp, was not significantly increased compared to [Ca2+]i of endothelial cells in vessels before agonist perfusion These experiments show that VEGF acts through different pathways to stimulate increased permeability and compliance. The data are consistent with the hypothesis that VEGF chronically increases Lp through an acute stimulation of Ca2+ influx, but increases compliance and diameter by acute stimulation of the MAPK signalling pathway. They also suggest that the increase in Lp is dependent on a sustained Ca2+ influx, even though the endothelial [Ca2+]i is not raised.
机译:血管内皮生长因子(VEGF)会长期增加微血管的通透性,顺应性和血管直径。为了确定VEGF发挥这些作用的信号传导途径,我们研究了Ca2 +内流和丝裂原激活的蛋白激酶(MAPK)磷酸化对麻醉青蛙的肠系膜微血管中水力传导率(Lp),直径和顺应性增加的作用(林蛙种)。 VEGF与5 mM NiCl2的共灌注减弱了VEGF介导的慢性增加的通透性,以前显示它可以抑制Ca2 +的流入。 PD98059对MAPK磷酸化的抑制作用不影响Lp的慢性增加。为了确定增加Ca2 +流入量的其他激动剂是否也长期增加Lp,测量了ATP灌注对慢性Lp的影响。 ATP灌注也会使Lp长期增加。因此,Lp的慢性增加取决于最初的瞬时Ca2 +流入,而不是MAPK激活,并且不是VEGF刺激所独有的。抑制Ca2 +流入并不能抑制VEGF引起的微血管直径或顺应性的增加。这些增加均被PD98059抑制。因此,VEGF介导的顺应性和直径增加取决于MAPK活化,而不取决于Ca2 +内流。当用5 mM NiCl2灌注血管时,由VEGF灌注刺激的Lp的慢性增加在24小时之前减少。因此,持续的高Lp依赖于Ca2 +流入。与激动剂灌注之前的血管内皮细胞的[Ca2 +] i相比,先前灌注VEGF或ATP并长期增加Lp的血管的内皮细胞钙浓度([Ca2 +] i)并未显着增加。通过不同的途径起作用,以刺激通透性和顺应性的增加。数据与以下假设一致:VEGF通过急性刺激Ca2 +内流而长期增加Lp,但通过急性刺激MAPK信号通路增加顺应性和直径。他们还表明,即使内皮细胞[Ca2 +] i没有升高,Lp的增加也取决于持续的Ca2 +流入。

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