Arima S, Ito S, Omata K, Takeuchi K, Abe K
Department of Clinical Biology and Hormonal Regulation, Tohoku University School of Medicine, Sendai, Japan.
Kidney Int. 1995 Sep;48(3):683-9. doi: 10.1038/ki.1995.338.
Preglomerular afferent arteriole (Af-Art) is a crucial vascular segment in the control of glomerular hemodynamics. We have recently reported that vascular reactivity of Af-Art is modulated by nitric oxide (NO). However, little is known about its reactivity under pathophysiological conditions such as diabetes, which is often accompanied by abnormal glomerular hemodynamics. In the present study, we examined the direct effects of high glucose, the hallmark of diabetes, on the vascular reactivity of Af-Art. Rabbit Af-Arts were microperfused for three hours with medium 199 containing either normal (5.5 mM; NG-Af-Arts) or high concentrations (30 mM; HG30-Af-Arts) of glucose, and then vascular reactivity was examined. Sensitivity to angiotensin II (Ang II) was significantly higher in HG30-Af-Arts than in NG-Af-Arts. Ang II began to cause significant constriction from 10(-9) M in NG-Af-Arts (18 +/- 3%, N = 6, P < 0.01) and from 10(-11) M in HG30-Af-Arts (9 +/- 2%, N = 6, P < 0.01). NO synthesis inhibition with 10(-4) M nitro-L-arginine methyl ester (L-NAME) increased the sensitivity to Ang II in NG-Af-Arts without affecting Ang II action in HG30-Af-Arts. In L-NAME-pretreated NG-Af-Arts, Ang II began to cause constriction from 10(-11) M (11 +/- 3%, N = 6, P < 0.01). Thus, pretreatment with L-NAME abolished the difference in sensitivity to Ang II between NG- and HG30-Af-Arts, suggesting impaired NO synthesis in HG30-Af-Arts.(ABSTRACT TRUNCATED AT 250 WORDS)
肾小球前入球小动脉(Af-Art)是控制肾小球血流动力学的关键血管段。我们最近报道,Af-Art的血管反应性受一氧化氮(NO)调节。然而,对于其在诸如糖尿病等病理生理条件下的反应性知之甚少,糖尿病常伴有肾小球血流动力学异常。在本研究中,我们研究了糖尿病的标志——高糖对Af-Art血管反应性的直接影响。用含正常(5.5 mM;NG-Af-Arts)或高浓度(30 mM;HG30-Af-Arts)葡萄糖的199培养基对兔Af-Arts进行三小时微灌注,然后检测血管反应性。HG30-Af-Arts对血管紧张素II(Ang II)的敏感性显著高于NG-Af-Arts。在NG-Af-Arts中,Ang II从10^(-9) M开始引起显著收缩(18±3%,N = 6,P < 0.01),而在HG30-Af-Arts中从10^(-11) M开始(9±2%,N = 6,P < 0.01)。用10^(-4) M硝基-L-精氨酸甲酯(L-NAME)抑制NO合成增加了NG-Af-Arts对Ang II的敏感性,而不影响HG30-Af-Arts中Ang II的作用。在L-NAME预处理的NG-Af-Arts中,Ang II从10^(-11) M开始引起收缩(11±3%,N = 6,P < 0.01)。因此,L-NAME预处理消除了NG-和HG30-Af-Arts对Ang II敏感性的差异,提示HG30-Af-Arts中NO合成受损。(摘要截短于250字)