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Role of Kv7 channels in responses of the pulmonary circulation to hypoxia

机译:Kv7通道在肺循环对缺氧反应中的作用

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摘要

Hypoxic pulmonary vasoconstriction (HPV) is a beneficial mechanism that diverts blood from hypoxic alveoli to better ventilated areas of the lung, but breathing hypoxic air causes the pulmonary circulation to become hypertensive. Responses to airway hypoxia are associated with depolarization of smooth muscle cells in the pulmonary arteries and reduced activity of K+ channels. As Kv7 channels have been proposed to play a key role in regulating the smooth muscle membrane potential, we investigated their involvement in the development of HPV and hypoxia-induced pulmonary hypertension. Vascular effects of the selective Kv7 blocker, linopirdine, and Kv7 activator, flupirtine, were investigated in isolated, saline-perfused lungs from rats maintained for 3–5 days in an isobaric hypoxic chamber (FiO2 = 0.1) or room air. Linopirdine increased vascular resistance in lungs from normoxic, but not hypoxic rats. This effect was associated with reduced mRNA expression of the Kv7.4 channel α-subunit in hypoxic arteries, whereas Kv7.1 and Kv7.5 were unaffected. Flupirtine had no effect in normoxic lungs but reduced vascular resistance in hypoxic lungs. Moreover, oral dosing with flupirtine (30 mg/kg/day) prevented short-term in vivo hypoxia from increasing pulmonary vascular resistance and sensitizing the arteries to acute hypoxia. These findings suggest a protective role for Kv7.4 channels in the pulmonary circulation, limiting its reactivity to pressor agents and preventing hypoxia-induced pulmonary hypertension. They also provide further support for the therapeutic potential of Kv7 activators in pulmonary vascular disease.
机译:缺氧性肺血管收缩(HPV)是一种有益的机制,可将血液从低氧性肺泡转移到肺部更好的通风区域,但是呼吸低氧性空气会使肺循环变得高血压。对气道缺氧的反应与肺动脉平滑肌细胞的去极化和K + 通道活性降低有关。由于已提议Kv7通道在调节平滑肌膜电位中起关键作用,因此我们研究了它们参与HPV的发展和缺氧引起的肺动脉高压。在来自大鼠的隔离的,充满盐水的肺中,研究了选择性Kv7阻滞剂利诺吡丁和Kv7激活剂氟吡汀的血管作用,这些肺在等压低氧室(FiO2 = 0.1)或室内空气中维持3-5天。 Linopirdine增加了常氧性大鼠的肺血管阻力,但对缺氧性大鼠却没有。这种作用与缺氧动脉中Kv7.4通道α亚基的mRNA表达降低有关,而Kv7.1和Kv7.5则不受影响。氟吡汀对高氧肺无影响,但在低氧肺中血管阻力降低。此外,氟吡汀(30 mg / kg /天)口服给药可防止短期体内体内缺氧增加肺血管阻力并使动脉对急性缺氧敏感。这些发现表明,Kv7.4通道在肺循环中具有保护作用,限制了其与升压药的反应性并预防了低氧引起的肺动脉高压。它们还为Kv7激活剂在肺血管疾病中的治疗潜力提供了进一步的支持。

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