He Ting, He Jinhui, Wang Zhaohui, Cui Zhaoliang
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemistry and Chemical Engineering, Nanjing Tech University, 210009 Nanjing, China.
National Engineering Research Center for Special Separation Membrane, Nanjing Tech University, 210009 Nanjing, China.
Adv Compos Hybrid Mater. 2021;4(4):847-864. doi: 10.1007/s42114-021-00244-x. Epub 2021 May 3.
Since extracorporeal membrane oxygenator (ECMO) has been utilized to save countless lives by providing continuous extracorporeal breathing and circulation to patients with severe cardiopulmonary failure. In particular, it has played an important role during the COVID-19 epidemic. One of the important composites of ECMO is membrane oxygenator, and the core composite of the membrane oxygenator is hollow fiber membrane, which is not only a place for blood oxygenation, but also is a barrier between the blood and gas side. However, the formation of blood clots in the oxygenator is a key problem in the using process. According to the study of the mechanism of thrombosis generation, it was found that improving the hemocompatibility is an efficient approach to reduce thrombus formation by modifying the surface of materials. In this review, the corresponding modification methods (surface property regulation, anticoagulant grafting, and bio-interface design) of hollow fiber membranes in ECMO are classified and discussed, and then, the research status and development prospects are summarized.
体外膜肺氧合(ECMO)通过为严重心肺功能衰竭患者提供持续的体外呼吸和循环,挽救了无数生命。特别是在新冠疫情期间发挥了重要作用。ECMO的重要组成部分之一是膜式氧合器,而膜式氧合器的核心部件是中空纤维膜,它不仅是血液氧合的场所,也是血液与气体侧之间的屏障。然而,氧合器中血栓的形成是使用过程中的关键问题。通过对血栓形成机制的研究发现,改善血液相容性是通过材料表面改性来减少血栓形成的有效途径。在这篇综述中,对ECMO中空纤维膜的相应改性方法(表面性质调控、抗凝剂接枝和生物界面设计)进行了分类和讨论,然后总结了研究现状和发展前景。