Fujii Yutaka, Abe Takuya
Department of Clinical Engineering and Medical Technology, Niigata University of Health and Welfare, Niigata 950-3198, Japan.
Membranes (Basel). 2024 Feb 20;14(3):55. doi: 10.3390/membranes14030055.
In recent years, venovenous extracorporeal membrane oxygenation (VV ECMO) has been used to support patients with severe lung disease. Active use of VV ECMO was also recommended for severe respiratory failure due to COVID-19. However, VV ECMO is also known to cause various complications due to extracorporeal circulation. Although we conducted ECMO research using rats, we have not been able to establish whether double-lumen single-cannulation VV ECMO models in rats have been described previously. The purpose of this study was to establish a simple, stable, and maintainable miniature double-lumen single-canulation VV ECMO model in rats. A double-lumen catheter used as a plain central venous catheter (SMAC plus Seldinger type; Covidien Japan Co., Tokyo, Japan) was passed through the right external jugular vein and advanced into the right atrium as a conduit for venous uptake. The VV ECMO system comprised a roller pump, miniature membrane oxygenator, and polyvinyl chloride tubing line. During VV ECMO, blood pressure and hemodilution rate were maintained at around 80 mmHg and 30%, respectively. Hemoglobin was kept at >9 g/dL, no serious hemolysis was observed, and VV ECMO was maintained without blood transfusion. Oxygenation and removal of carbon dioxide from the blood were confirmed and pH was adequately maintained. This miniature VV ECMO model appears very useful for studying the mechanisms of biological reactions during VV ECMO.
近年来,静脉-静脉体外膜肺氧合(VV ECMO)已被用于支持患有严重肺部疾病的患者。对于因新型冠状病毒肺炎(COVID-19)导致的严重呼吸衰竭,也建议积极使用VV ECMO。然而,众所周知,VV ECMO也会因体外循环而引发各种并发症。尽管我们使用大鼠进行了ECMO研究,但我们尚未确定之前是否有关于大鼠双腔单插管VV ECMO模型的描述。本研究的目的是在大鼠中建立一种简单、稳定且可维持的微型双腔单插管VV ECMO模型。一根用作普通中心静脉导管的双腔导管(SMAC加塞丁格型;日本东京科维迪恩日本公司)经右颈外静脉插入并推进至右心房,作为静脉血摄取的管道。VV ECMO系统包括一个滚压泵、微型膜式氧合器和聚氯乙烯管路。在VV ECMO期间,血压和血液稀释率分别维持在约80 mmHg和30%左右。血红蛋白保持在>9 g/dL,未观察到严重溶血,且在未输血的情况下维持了VV ECMO。确认了血液的氧合和二氧化碳清除情况,并充分维持了pH值。这种微型VV ECMO模型对于研究VV ECMO期间生物反应的机制似乎非常有用。