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首页> 外文期刊>Investigative ophthalmology & visual science >Role of calcium-activated potassium channels with small conductance in bradykinin-induced vasodilation of porcine retinal arterioles.
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Role of calcium-activated potassium channels with small conductance in bradykinin-induced vasodilation of porcine retinal arterioles.

机译:小电导的钙激活钾通道在缓激肽诱导的猪视网膜小动脉血管舒张中的作用。

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PURPOSE: Endothelial dysfunction and impaired vasodilation may be involved in the pathogenesis of retinal vascular diseases. In the present study, the mechanisms underlying bradykinin vasodilation were examined and whether calcium-activated potassium channels of small (SK(Ca)) and intermediate (IK(Ca)) conductance are involved in regulation of endothelium-dependent vasodilation in retinal arterioles was investigated. METHODS: Porcine retinal arterioles (diameter approximately 112 microm, N = 119) were mounted in microvascular myographs for isometric tension recordings. The arterioles were contracted with the thromboxane analogue, U46619, and concentration-response curves were constructed for bradykinin and a novel opener of SK(Ca) and IK(Ca) channels, NS309. RESULTS: In U46619-contracted arterioles, bradykinin and NS309 induced concentration-dependent relaxations. In vessels without endothelium, bradykinin relaxation was abolished and NS309 relaxation was attenuated. Inhibition of NO synthase with asymmetric dimethylarginine and/or cyclooxygenase with indomethacin markedly reduced bradykinin and NS309 relaxation. NO synthase and cyclooxygenase inhibition together with oxyhemoglobin abolished bradykinin relaxation and attenuated NS309 relaxation. Blocking of SK(Ca) and IK(Ca) channels with apamin plus charybdotoxin or blocking of SK(Ca) channels alone in the absence and the presence of indomethacin markedly reduced bradykinin and NS309 relaxation, whereas blocking of IK(Ca) channels had no significant effect. In vessels without endothelium, blocking of SK(Ca) channels alone had no effect on sodium nitroprusside-induced relaxation. CONCLUSIONS: In porcine retinal arterioles, NO and prostaglandins mediate endothelium-dependent relaxation to bradykinin and NS309. Moreover, these findings suggest that SK(Ca) channels contribute to NO-mediated relaxation induced by bradykinin and NS309 and, hence, may play an important role in retinal arterial endothelial function.
机译:目的:内皮功能障碍和血管舒张受损可能与视网膜血管疾病的发病机制有关。在本研究中,检查了缓激肽血管舒张的潜在机制,并研究了钙电激活的小(SK(Ca))和中等(IK(Ca))电导的钾通道是否参与了视网膜小动脉内皮依赖性血管舒张的调节。 。方法:将猪视网膜小动脉(直径约112微米,N = 119)安装在微血管肌电图仪中以记录等距张力。将小动脉与血栓烷类似物U46619收缩,并构建缓激肽和SK(Ca)和IK(Ca)通道的新型开放剂NS309的浓度-响应曲线。结果:在U46619收缩的小动脉中,缓激肽和NS309诱导了浓度依赖性松弛。在没有内皮的血管中,缓激肽松弛被消除,NS309松弛被减弱。不对称二甲基精氨酸对NO合酶的抑制和吲哚美辛对环氧合酶的抑制显着降低了缓激肽和NS309的松弛。 NO合酶和环氧合酶抑制与氧合血红蛋白一起消除了缓激肽的松弛,并减弱了NS309的松弛。在没有和吲哚美辛存在的情况下,用罂粟碱加炭疽毒素阻断SK(Ca)和IK(Ca)通道或单独阻断SK(Ca)通道可显着降低缓激肽和NS309的松弛,而阻断IK(Ca)通道则没有显着的效果。在没有内皮的血管中,仅阻断SK(Ca)通道对硝普钠钠引起的舒张作用没有影响。结论:在猪视网膜小动脉中,一氧化氮和前列腺素介导内皮依赖性舒张激肽和NS309的松弛。此外,这些发现表明SK(Ca)通道有助于由缓激肽和NS309诱导的NO介导的舒张,因此可能在视网膜动脉内皮功能中发挥重要作用。

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