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首页> 外文期刊>ASAIO journal >Inhaled Nitric Oxide Augments Left Ventricular Assist Device Capacity by Ameliorating Secondary Right Ventricular Failure
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Inhaled Nitric Oxide Augments Left Ventricular Assist Device Capacity by Ameliorating Secondary Right Ventricular Failure

机译:吸入一氧化氮通过改善继发性右心室衰竭改善左心室辅助装置的容量

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摘要

Clinical right ventricular (RV) impairment can occur with left ventricular assist device (LVAD) use, thereby compromising the therapeutic effectiveness. The underlying mechanism of this RV failure may be related to induced abnormalities of septal wall motion, RV distension and ischemia, decreased LV filling, and aberrations of LVAD flow. Inhaled nitric oxide (NO), a potent pulmonary vasodilator, may reduce RV after-load, and thereby increase LV filling, LVAD flow, and cardiac output (CO). To investigate the mechanisms associated with LVAD-induced RV dysfunction and its treatment, we created a swine model of hypoxia-induced pulmonary hypertension and acute LVAD-induced RV failure and assessed the physiological effects of NO. Increased LVAD speed resulted in linear increases in LVAD flow until pulse pressure narrowed. Higher speeds induced flow instability, LV collapse, a precipitous fall of both LVAD flow and CO. Nitric oxide (20 ppm) treatment significantly increased the maximal achievable LVAD speed, LVAD flow, CO, and LV diameter. Nitric oxide resulted in decreased pulmonary vascular resistance and RV distension, increased RV ejection, promoted LV filling and improved LVAD performance. Inhaled NO may thus have broad utility for the management of biventricular disease managed by LVAD implantation through the effects of NO on LV and RV wall dynamics.
机译:使用左心室辅助装置(LVAD)可能会发生临床右心室(RV)障碍,从而损害治疗效果。 RV衰竭的潜在机制可能与引起的室间隔壁运动异常,RV扩张和缺血,LV充盈减少以及LVAD流量异常有关。吸入一氧化氮(NO)是一种有效的肺血管扩张剂,可减少RV后负荷,从而增加LV充盈,LVAD流量和心输出量(CO)。为了研究与LVAD诱发的RV功能障碍相关的机制及其治疗方法,我们创建了低氧诱发的肺动脉高压和LVAD诱发的RV急性衰竭的猪模型,并评估了NO的生理作用。 LVAD速度的提高导致LVAD流量线性增加,直到脉冲压力变窄。较高的速度会引起流量不稳定,LV塌陷,LVAD流量和CO急剧下降。一氧化氮(20 ppm)处理显着增加了可达到的最大LVAD速度,LVAD流量,CO和LV直径。一氧化氮可降低肺血管阻力和RV扩张,增加RV射血,促进LV充盈并改善LVAD性能。因此,通过NO对LV和RV壁动力学​​的影响,吸入的NO可能对通过LVAD植入管理的双室疾病具有广泛的实用性。

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