Zhang Tao, Cheng Guangming, Koert Andrew, Zhang Juntao, Gellman Barry, Yankey G Kwame, Satpute Aditee, Dasse Kurt A, Gilbert Richard J, Griffith Bartley P, Wu Zhongjun J
Artificial Organs Laboratory, Department of Surgery, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Artif Organs. 2009 Jan;33(1):36-45. doi: 10.1111/j.1525-1594.2008.00672.x.
To provide respiratory support for patients with lung failure, a novel compact integrated pump-oxygenator is being developed. The functional and biocompatibility performances of this device are presented. The pump-oxygenator is designed by combining a magnetically levitated pump/rotor with a uniquely configured hollow fiber membrane bundle to create an assembly free, ultracompact, all-in-one system. The hemodynamics, gas transfer and biocompatibility performances of this novel device were investigated both in vitro in a circulatory flow loop and in vivo in an ovine animal model. The in vitro results showed that the device was able to pump blood flow from 2 to 8 L/min against a wide range of pressures and to deliver an oxygen transfer rate more than 300 mL/min at a blood flow of 6 L/min. Blood damage tests demonstrated low hemolysis (normalized index of hemolysis [NIH] approximately 0.04) at a flow rate of 5 L/min against a 100-mm Hg afterload. The data from five animal experiments (4 h to 7 days) demonstrated that the device could bring the venous blood to near fully oxygen-saturated condition (98.6% +/- 1.3%). The highest oxygen transfer rate reached 386 mL/min. The gas transfer performance was stable over the study duration for three 7-day animals. There was no indication of blood damage. The plasma free hemoglobin and platelet count were within the normal ranges. No gross thrombus is found on the explanted pump components and fiber surfaces. Both in vitro and in vivo results demonstrated that the newly developed pump-oxygenator can achieve sufficient blood flow and oxygen transfer with excellent biocompatibility.
为了给肺衰竭患者提供呼吸支持,一种新型紧凑型集成泵氧合器正在研发中。本文展示了该设备的功能和生物相容性性能。该泵氧合器的设计是将磁悬浮泵/转子与独特配置的中空纤维膜束相结合,以创建一个无组件、超紧凑的一体化系统。在体外循环流动回路和体内绵羊动物模型中研究了这种新型设备的血流动力学、气体传输和生物相容性性能。体外结果表明,该设备能够在很宽的压力范围内将血流量从2升/分钟泵送至8升/分钟,并在血流量为6升/分钟时实现超过300毫升/分钟的氧传输率。血液损伤测试表明,在5升/分钟的流速和100毫米汞柱的后负荷下,溶血率较低(标准化溶血指数[NIH]约为0.04)。来自五个动物实验(4小时至7天)的数据表明,该设备能够使静脉血接近完全氧饱和状态(98.6%±1.3%)。最高氧传输率达到386毫升/分钟。在对三只进行了7天研究的动物中,气体传输性能在研究期间保持稳定。没有血液损伤的迹象。血浆游离血红蛋白和血小板计数在正常范围内。在取出的泵组件和纤维表面未发现明显血栓。体外和体内结果均表明,新研发的泵氧合器能够实现足够的血流量和氧传输,且具有优异的生物相容性。