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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >A key role for Na+/K+-ATPase in the endothelium-dependent oscillatory activity of mouse small mesenteric arteries
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A key role for Na+/K+-ATPase in the endothelium-dependent oscillatory activity of mouse small mesenteric arteries

机译:Na + / K + -ATPase在小鼠小肠系膜动脉内皮依赖性振荡活动中的关键作用

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Oscillatory contractile activity is an inherent property of blood vessels. Various cellular mechanisms have been proposed to contribute to oscillatory activity. Mouse small mesenteric arteries display a unique low frequency contractile oscillatory activity (1 cycle every 10-12 min) upon phenylephrine stimulation. Our objective was to identify mechanisms involved in this peculiar oscillatory activity. First-order mesenteric arteries were mounted in tissue baths for isometric force measurement. The oscillatory activity was observed only in vessels with endothelium, but it was not blocked by L-NAME (100 μM) or indomethacin (10 μM), ruling out the participation of nitric oxide and prostacyclin, respectively, in this phenomenon. Oscillatory activity was not observed in vessels contracted with K+ (90 mM) or after stimulation with phenylephrine plus 10 mM K+. Ouabain (1 to 10 μM, an Na+/K+-ATPase inhibitor), but not K+ channel antagonists [tetraethylammonium (100 μM, a nonselective K+ channel blocker), Tram-34 (10 μM, blocker of intermediate conductance K+ channels) or UCL-1684 (0.1 μM, a small conductance K+ channel blocker)], inhibited the oscillatory activity. The contractile activity was also abolished when experiments were performed at 20°C or in K+-free medium. Taken together, these results demonstrate that Na+/K+-ATPase is a potential source of these oscillations. The presence of α-1 and α-2 Na+/K+-ATPase isoforms was confirmed in murine mesenteric arteries by Western blot. Chronic infusion of mice with ouabain did not abolish oscillatory contraction, but up-regulated vascular Na+/K+-ATPase expression and increased blood pressure. Together, these observations suggest that the Na+/K+ pump plays a major role in the oscillatory activity of murine small mesenteric arteries.
机译:振荡收缩活动是血管的固有特性。已经提出了各种细胞机制来促进振荡活动。苯肾上腺素刺激后,小鼠小肠系膜动脉显示出独特的低频收缩振荡活动(每10-12分钟1个周期)。我们的目标是确定参与这种特殊振荡活动的机制。一阶肠系膜动脉被安装在组织浴中用于等距力的测量。仅在具有内皮的血管中观察到了振荡活性,但并未被L-NAME(100μM)或消炎痛(10μM)阻断,从而排除了一氧化氮和前列环素的参与。在K +(90 mM)收缩的血管中或在去氧肾上腺素加10 mM K +刺激后的血管中未观察到振荡活性。瓦巴因(1-10μM,Na + / K + -ATPase抑制剂),但不包括K +通道拮抗剂[四乙铵(100μM,非选择性K +通道阻滞剂),Tram-34(10μM,中导K +通道阻滞剂)或UCL -1684(0.1μM,小的电导K +通道阻滞剂)],抑制了振荡活动。当在20°C或在无K +的培养基中进行实验时,收缩活性也消失了。总之,这些结果表明,Na + / K + -ATPase是这些振荡的潜在来源。通过Western印迹证实在鼠肠系膜动脉中存在α-1和α-2Na + / K + -ATP酶同工型。哇巴因对小鼠的长期输注不能消除振荡收缩,但可以上调血管Na + / K + -ATPase的表达并增加血压。总之,这些观察结果表明,Na + / K +泵在鼠小肠系膜动脉的振荡活动中起主要作用。

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