Cardiovascular Perfusion, Children's of Alabama, Birmingham, Alabama.
Congenital Heart Center, Shands Children's Hospital, University of Florida, Gainesville, Florida.
J Extra Corpor Technol. 2022 Jun;54(2):142-147. doi: 10.1182/ject-142-147.
Nitric oxide (NO) incorporation into the sweep gas of the extracorporeal life support (ECLS) circuit has been proposed as a strategy to ameliorate the insults caused by the systemic inflammatory response. This technical study describes circuit modifications allowing nitric oxide to be incorporated into the circuit and describing and validating the oxygenator sweep flow rates necessary to achieve consistent safe delivery of the therapy. For patients requiring sweep rates less than 2 L/min, a simplified setup, incorporating a pressure relief valve/low flow meter in the gas delivery line, was placed in line between the blender/NO injector module and the NO sampling port/oxygenator. This setup allows titration of sweep to low flows without the need to blend in CO while maintaining the manufacturer recommendation of a minimum 2 L/min of sweep gas to safely deliver NO without nitric dioxide (NO) buildup. This setup was tested three times at three different FiO rates and eleven different desired low sweep flows to test for reproducibility and safety to build an easy-to-follow chart for making gas flow changes. For patients requiring oxygenator sweep rates greater than 2 L/min, the pressure relief valve/low flow meter apparatus is not needed. Maintaining consistent sweep rate and nitric oxide delivery is required in order to utilize this therapy in ECLS. We demonstrated gas delivery across all flow rates. There were no issues delivering 20 parts per million of NO and negligible NO detection. The results from testing this setup were used to provide the specialist a chart at which to set the low flow meter to produce the desired flow rate at which the patient needs. This has been used clinically on 15 ECLS patients with success.
一氧化氮(NO)掺入体外生命支持(ECLS)回路的吹扫气中,已被提议作为减轻全身炎症反应引起的损伤的一种策略。本技术研究描述了允许将一氧化氮掺入回路中的回路修改,并描述和验证了实现治疗的一致安全输送所需的氧合器吹扫流速。对于需要吹扫速率小于 2 L/min 的患者,在混合器/NO 注射器模块和 NO 采样端口/氧合器之间的气体输送线上放置了简化的设置,其中包括压力安全阀/低流量计。该设置允许在不混合 CO 的情况下将吹扫滴定至低流速,同时保持制造商建议的最小 2 L/min 的吹扫气体以安全输送 NO 而不会产生二氧化氮(NO)积聚。该设置在三个不同的 FiO 率和十一个不同的所需低吹扫流速下进行了三次测试,以测试重现性和安全性,以建立一个易于遵循的图表,用于进行气体流量变化。对于需要氧合器吹扫速率大于 2 L/min 的患者,不需要使用压力安全阀/低流量计装置。为了在 ECLS 中利用这种治疗,需要保持一致的吹扫速率和一氧化氮输送。我们证明了在所有流速下都能输送气体。以 20 ppm 的 NO 输送没有问题,并且检测到的 NO 可以忽略不计。测试该设置的结果用于为专家提供一张图表,以便将低流量计设置为产生患者所需的所需流速。这已经在 15 名 ECLS 患者中成功使用。