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[Kv3.4通道参与15-羟基二十碳四烯酸诱导的大鼠肺血管收缩]

[Kv3.4 channel is involved in rat pulmonary vasoconstriction induced by 15-hydroxyeicosatetraenoic acid].

作者信息

Li Qian, Bi Hai-Rong, Zhang Rong, Zhu Da-Ling

机构信息

College of Pharmacy, Harbin Medical University, Harbin 150086, China.

出版信息

Sheng Li Xue Bao. 2006 Feb 25;58(1):77-82.

Abstract

We have reported that hypoxia increases the activation of 15-lipoxygenase (15-LO), which converts arachidonic acid (AA) into 15-hydroxyeicosatetraenoic acid (15-HETE) in small pulmonary arteries (PAs). Through inhibition of Kv channels, 15-HETE causes more robust concentration-dependent contraction of PA rings from the hypoxic compared to the normoxic controls. However, the subtypes of Kv channels inhibited by 15-HETE are incompletely understood. The aim of the present study was to identify the contribution of Kv3.4 channel in the process of pulmonary vasoconstriction induced by 15-HETE using the tension studies of PA rings from rat with Kv3.4 channel blocker in tissue bath; to explore the role of vascular endothelium in15-HETE-induced pulmonary vasoconstriction through denuded endothelia of PA rings; and to define the downregulation of 15-HETE on the expression of Kv3.4 channel in cultured pulmonary artery smooth muscle cells (PASMCs) with RT-PCR and Western blot. In the present study, healthy Wistar rats were divided randomly into two groups: Group A with normal oxygen supply and group B with hypoxia. Six days later, the rats were killed. Pulmonary artery rings were prepared for organ bath experiments. Firstly, different concentrations of 15-HETE (10~1 000 nmol/L) were added to the Krebs solution. The isometric tension was recorded using a four-channel force-displacement transducer. Then Kv3.4 channel blocker, 100 nmol/L BDS-I, was added, followed by adding 1 mumol/L 15-HETE, and the isometric tension was recorded. Furthermore, RT-PCR and Western blot were employed to identify the influence of 15-HETE on the expression of Kv3.4 channel in cultured rat PASMCs.The results showed the PA tension was significantly increased both in groups A and B by 15-HETE in a concentration-dependent manner (P<0.05), especially in group B (P<0.05 compared to control); denuded endothelia enhanced 15-HETE concentration-related constrictions in rat PA rings; Kv3.4 channel blocker, BDS-I, significantly decreased the PA ring constriction induced by 15-HETE (P<0.05); the expressions of Kv3.4 mRNA and protein in rat PASMCs were significantly downregulated by 15-HETE (P<0.05). Based on all the information above, we conclude that Kv3.4 channel is involved in vasoconstriction induced by 15-HETE in rat PAs.

摘要

我们曾报道,缺氧会增加15-脂氧合酶(15-LO)的活性,该酶可将花生四烯酸(AA)转化为小肺动脉(PA)中的15-羟基二十碳四烯酸(15-HETE)。通过抑制钾离子通道(Kv通道),与常氧对照组相比,15-HETE会使缺氧状态下PA环产生更强的浓度依赖性收缩。然而,15-HETE所抑制的Kv通道亚型尚未完全明确。本研究的目的是,利用组织浴中Kv3.4通道阻滞剂对大鼠PA环进行张力研究,以确定Kv3.4通道在15-HETE诱导的肺血管收缩过程中的作用;通过去除PA环的内皮来探究血管内皮在15-HETE诱导的肺血管收缩中的作用;并运用逆转录聚合酶链反应(RT-PCR)和蛋白质免疫印迹法(Western blot)来确定15-HETE对培养的肺动脉平滑肌细胞(PASMCs)中Kv3.4通道表达的下调作用。在本研究中,健康的Wistar大鼠被随机分为两组:A组为正常供氧组,B组为缺氧组。六天后,处死大鼠。制备肺动脉环用于器官浴实验。首先,将不同浓度的15-HETE(10~1 000 nmol/L)加入到Krebs溶液中。使用四通道力-位移传感器记录等长张力。然后加入Kv3.4通道阻滞剂100 nmol/L BDS-I,接着加入1 μmol/L 15-HETE,并记录等长张力。此外,采用RT-PCR和Western blot来确定15-HETE对培养的大鼠PASMCs中Kv3.4通道表达的影响。结果显示,15-HETE使A组和B组的PA张力均显著增加,且呈浓度依赖性(P<0.05),尤其是B组(与对照组相比,P<0.05);去除内皮增强了15-HETE浓度相关的大鼠PA环收缩;Kv3.4通道阻滞剂BDS-I显著降低了15-HETE诱导的PA环收缩(P<0.05);15-HETE显著下调了大鼠PASMCs中Kv3.4 mRNA和蛋白的表达(P<0.05)。基于上述所有信息,我们得出结论,Kv3.4通道参与了15-HETE诱导的大鼠PAs血管收缩。

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