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抑制磷酸二酯酶1可增强清醒急性肺动脉高压羔羊对吸入一氧化氮的肺血管舒张反应。

Inhibition of phosphodiesterase 1 augments the pulmonary vasodilator response to inhaled nitric oxide in awake lambs with acute pulmonary hypertension.

作者信息

Evgenov Oleg V, Busch Cornelius J, Evgenov Natalia V, Liu Rong, Petersen Bodil, Falkowski George E, Petho Beata, Vas Adám, Bloch Kenneth D, Zapol Warren M, Ichinose Fumito

机构信息

Dept. of Anesthesia and Critical Care, Mass. General Hospital, Boston, MA 02114, USA.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2006 Apr;290(4):L723-L729. doi: 10.1152/ajplung.00485.2004. Epub 2005 Nov 11.

Abstract

Phosphodiesterase 1 (PDE1) modulates vascular tone and the development of tolerance to nitric oxide (NO)-releasing drugs in the systemic circulation. Any role of PDE1 in the pulmonary circulation remains largely uncertain. We measured the expression of genes encoding PDE1 isozymes in the pulmonary vasculature and examined whether or not selective inhibition of PDE1 by vinpocetine attenuates pulmonary hypertension and augments the pulmonary vasodilator response to inhaled NO in lambs. Using RT-PCR, we detected PDE1A, PDE1B, and PDE1C mRNAs in pulmonary arteries and veins isolated from healthy lambs. In 13 lambs, the thromboxane A(2) analog U-46619 was infused intravenously to increase mean pulmonary arterial pressure to 35 mmHg. Four animals received an intravenous infusion of vinpocetine at incremental doses of 0.3, 1, and 3 mg.kg(-1).h(-1). In nine lambs, inhaled NO was administered in a random order at 2, 5, 10, and 20 ppm before and after an intravenous infusion of 1 mg.kg(-1).h(-1) vinpocetine. Administration of vinpocetine did not alter pulmonary and systemic hemodynamics or transpulmonary cGMP or cAMP release. Inhaled NO selectively reduced mean pulmonary arterial pressure, pulmonary capillary pressure, and pulmonary vascular resistance index, while increasing transpulmonary cGMP release. The addition of vinpocetine enhanced pulmonary vasodilation and transpulmonary cGMP release induced by NO breathing without causing systemic vasodilation but did not prolong the duration of pulmonary vasodilation after NO inhalation was discontinued. Our findings demonstrate that selective inhibition of PDE1 augments the therapeutic efficacy of inhaled NO in an ovine model of acute chemically induced pulmonary hypertension.

摘要

磷酸二酯酶1(PDE1)调节血管张力以及全身循环中对一氧化氮(NO)释放药物的耐受性发展。PDE1在肺循环中的任何作用在很大程度上仍不确定。我们测量了肺血管中编码PDE1同工酶的基因表达,并研究了长春西汀对PDE1的选择性抑制是否能减轻羔羊的肺动脉高压并增强对吸入NO的肺血管舒张反应。通过逆转录聚合酶链反应(RT-PCR),我们在从健康羔羊分离的肺动脉和静脉中检测到了PDE1A、PDE1B和PDE1C信使核糖核酸(mRNA)。在13只羔羊中,静脉输注血栓素A2类似物U-46619,使平均肺动脉压升高至35毫米汞柱。4只动物接受静脉输注长春西汀,剂量递增,分别为0.3、1和3毫克·千克-1·小时-1。在9只羔羊中,在静脉输注1毫克·千克-1·小时-1长春西汀前后,以随机顺序给予2、5、10和20 ppm的吸入NO。给予长春西汀并未改变肺和全身血流动力学或经肺环磷酸鸟苷(cGMP)或环磷酸腺苷(cAMP)释放。吸入NO选择性降低平均肺动脉压、肺毛细血管压和肺血管阻力指数,同时增加经肺cGMP释放。添加长春西汀可增强由NO吸入引起的肺血管舒张和经肺cGMP释放,而不引起全身血管舒张,但在停止吸入NO后并未延长肺血管舒张的持续时间。我们的研究结果表明,在急性化学诱导的肺动脉高压绵羊模型中,对PDE1的选择性抑制可增强吸入NO的治疗效果。

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