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首页> 外文期刊>Nephrology, dialysis, transplantation: official publication of the European Dialysis and Transplant Association - European Renal Association >Effects of vascular endothelial growth factor (VEGF)/vascular permeability factor (VPF) on haemodynamics and permselectivity of the isolated perfused rat kidney.
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Effects of vascular endothelial growth factor (VEGF)/vascular permeability factor (VPF) on haemodynamics and permselectivity of the isolated perfused rat kidney.

机译:血管内皮生长因子(VEGF)/血管通透性因子(VPF)对离体灌流大鼠肾脏血液动力学和通透性的影响。

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摘要

BACKGROUND: Vascular endothelial growth factor (VEGF) or vascular permeability factor (VPF) is a selective mitogen for endothelial cells; it increases microvascular permeability and has been shown to relax isolated canine coronary arteries by an endothelium-dependent mechanism. In many tissues VEGF/VPF is expressed after an appropriate stimulus, mostly hypoxia. In the kidney VEGF/VPF is constitutively expressed in glomerular podocytes and epithelia of collecting duct. Glomerular and peritubular capillary endothelia also constitutively express specific VEGF receptors. The in vivo function of renal VEGF/VPF is unknown. METHOD: In the present study the effects of human recombinant VEGF165 on renal haemodynamics and glomerular permselectivity was investigated in the isolated perfused kidney of the rat. RESULTS: In kidneys preconstricted by noradrenaline (NA 1.5 x 10(-7) mol/l) VEGF/VPF (155 pmol/l) caused an almost complete return of renal perfusion flow rate to pre-NA values (before NA 113 +/- 4%, after NA 100%, 15 min with VEGF/VPF 111 +/- 4%). Shortly after VEGF/VPF administration VEGF/VPF-induced relaxation commenced, and became significant after 2 min (15 min with VEGF/VPF vs without VEGF/VPF 111 +/- 4% vs 103 +/- 2%; P<0.05). In the presence of the NO-synthase inhibitor N(W)-nitro-L-arginine (L-NNA; 5 x 10(-5) mol/l) VEGF/VPF caused only small, transient relaxations (before NNA 109 +/- 5%, after NNA 100%, 15 min with VEGF 95 +/- 2%). The cyclooxygenase inhibitor diclofenac failed to inhibit the relaxing activity of VEGF/VPF (before NA 119 +/- 4%, after NA + diclofenac 100%, 15 min with VEGF/VPF 123 +/- 5%). VEGF demonstrated no significant increase in renal protein excretion rate (after NA pretreatment (= 100%): 12.5 min with VEGF/VPF vs without VEGF/VPF: 119 +/- 10% vs 132 +/- 11%, n.s.) (after NNA pretreatment (= 100%) 12.5 min with VEGF/VPF vs without VEGF/VPF 94 +/- 5% vs 96 +/- 4%; n.s.) or clearance quotient of albumin. Glomerular filtration rate was not influenced by VEGF/VPF in kidneys pretreated with NA (before NA 105 +/- 5%, after NA 100%, 12.5 min with VEGF/VPF 94 +/- 2%) or with NNA (before NNA 107 +/- 6%, after NNA 100%, 12.5 min with VEGF/VPF 96 +/- 2%). Fractional glucose and fractional sodium excretion showed flow-dependent changes. CONCLUSION: VEGF/VPF can contribute to the relaxing capacity of the renal vasculature. This relaxation is partly mediated by the NO/endothelium-derived relaxing factor (EDRF) pathway. In the isolated perfused rat kidney the glomerular permeability for albumin is not affected by VEGF/VPF.
机译:背景:血管内皮生长因子(VEGF)或血管通透性因子(VPF)是内皮细胞的选择性促分裂原。它增加了微血管的通透性,并已显示通过内皮依赖性机制使犬的冠状动脉分离。在许多组织中,经过适当的刺激(主要是缺氧)后,VEGF / VPF会表达。在肾中,VEGF / VPF在肾小球足细胞和收集管的上皮中组成性表达。肾小球和肾小管毛细血管内皮细胞也组成性表达特定的VEGF受体。肾VEGF / VPF的体内功能未知。方法:在本研究中,研究了人重组VEGF165对大鼠离体灌注肾脏的肾脏血流动力学和肾小球通透性的影响。结果:在去甲肾上腺素(NA 1.5 x 10(-7)mol / l)收缩的肾脏中,VEGF / VPF(155 pmol / l)导致肾脏灌注流速几乎完全恢复至NA之前的值(在NA 113 + /之前) -4%,NA 100%后,用VEGF / VPF 111 +/- 4%静置15分钟)。施用VEGF / VPF后不久,VEGF / VPF诱导的松弛开始,并在2分钟后变得明显(有VEGF / VPF的情况下为15分钟,无VEGF / VPF的情况下为111 +/- 4%,相对于103 +/- 2%; P <0.05) 。在存在NO合酶抑制剂N(W)-硝基-L-精氨酸(L-NNA; 5 x 10(-5)mol / l)的情况下,VEGF / VPF仅引起短暂的短暂松弛(在NNA 109 + /之前) -NNA 100%后5%(VEGF 95 +/- 2%)15分钟)。环氧合酶抑制剂双氯芬酸不能抑制VEGF / VPF的松弛活性(NA 119 +/- 4%之前,NA +双氯芬酸100%之后,VEGF / VPF 123 +/- 5%15分钟)。 VEGF肾蛋白排泄率没有显着增加(NA预处理(= 100%):使用VEGF / VPF相比不使用VEGF / VPF:12.5分钟:119 +/- 10%vs 132 +/- 11%,ns)(之后NNA预处理(= 100%)用VEGF / VPF与不使用VEGF / VPF相比12.5分钟94 +/- 5%vs 96 +/- 4%; ns)或白蛋白清除率。肾小球滤过率不受NA(在NA 105 +/- 5%之前,在NA 100%之后,在VEGF / VPF 94 +/- 2%12.5分钟之前)或NNA(在NNA 107之前)预处理的肾脏中不受肾小球滤过率的影响。 NNA 100%后+/- 6%,用VEGF / VPF 96 +/- 2%12.5分钟)。分数葡萄糖和分数钠排泄显示流量依赖性变化。结论:VEGF / VPF可促进肾血管舒张能力。这种松弛部分地由NO /内皮衍生的松弛因子(EDRF)途径介导。在离体的灌注大鼠肾脏中,白蛋白的肾小球通透性不受VEGF / VPF的影响。

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