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一种内皮细胞膜模拟抗血栓涂层可实现更安全、更持久的体外膜肺氧合应用。

An endothelium membrane mimetic antithrombotic coating enables safer and longer extracorporeal membrane oxygenation application.

作者信息

Li Rong, Xu Jiefeng, Li Yin, Yi Panpan, Sun Chenwei, Yang Qiankun, Wang Qianqian, Mao Yi, Mei Zhihan, Zhou Guangju, Ruan Feng, Shi Suqing, Zhang Mao, Gong Yong-Kuan

机构信息

Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xian 710127, Shaanxi, China.

Department of Emergency Medicine, Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China; Key Laboratory of The Diagnosis and Treatment of Severe Trauma and Burn of Zhejiang Province, Hangzhou, China; Zhejiang Provincial Clinical Research Center for Emergency and Critical Care Medicine, Hangzhou, China.

出版信息

Acta Biomater. 2024 Sep 15;186:185-200. doi: 10.1016/j.actbio.2024.07.058. Epub 2024 Aug 3.

Abstract

Thrombosis and plasma leakage are two of the most frequent dysfunctions of polypropylene (PP) hollow fiber membrane (PPM) used in extracorporeal membrane oxygenation (ECMO) therapy. In this study, a superhydrophilic endothelial membrane mimetic coating (SEMMC) was constructed on polydopamine-polyethyleneimine pre-coated surfaces of the PPM oxygenator and its ECMO circuit to explore safer and more sustainable ECMO strategy. The SEMMC is fabricated by multi-point anchoring of a phosphorylcholine and carboxyl side chained copolymer (PMPCC) and grafting of heparin (Hep) to form PMPCC-Hep interface, which endows the membrane superior hemocompatibility and anticoagulation performances. Furthermore, the modified PPM reduces protein adsorption amount to less than 30 ng/cm. More significantly, the PMPCC-Hep coated ECMO system extends the anti-leakage and non-clotting oxygenation period to more than 15 h in anticoagulant-free animal extracorporeal circulation, much better than the bare and conventional Hep coated ECMO systems with severe clots and plasma leakage in 4 h and 8 h, respectively. This SEMMC strategy of grafting bioactive heparin onto bioinert zwitterionic copolymer interface has great potential in developing safer and longer anticoagulant-free ECMO systems. STATEMENT OF SIGNIFICANCE: A superhydrophilic endothelial membrane mimetic coating was constructed on surfaces of polypropylene hollow fiber membrane (PPM) oxygenator and its ECMO circuit by multi-point anchoring of a phosphorylcholine and carboxyl side chain copolymer (PMPCC) and grafting of heparin (Hep). The strong antifouling nature of the PMPCC-Hep coating resists the adsorption of plasma bio-molecules, resulting in enhanced hemocompatibility and anti-leakage ability. The grafted heparin on the zwitterionic PMPCC interface exhibits superior anticoagulation property. More significantly, the PMPCC-Hep coating achieves an extracorporeal circulation in a pig model for at least 15 h without any systemic anticoagulant. This endothelial membrane mimetic anticoagulation strategy shows great potential for the development of safer and longer anticoagulant-free ECMO systems.

摘要

血栓形成和血浆渗漏是体外膜肺氧合(ECMO)治疗中使用的聚丙烯(PP)中空纤维膜(PPM)最常见的两种功能障碍。在本研究中,在PPM氧合器及其ECMO回路的聚多巴胺 - 聚乙烯亚胺预涂覆表面上构建了一种超亲水内皮膜模拟涂层(SEMMC),以探索更安全、更可持续的ECMO策略。SEMMC是通过磷酰胆碱和羧基侧链共聚物(PMPCC)的多点锚定以及肝素(Hep)的接枝来制备的,以形成PMPCC - Hep界面,这赋予了该膜优异的血液相容性和抗凝性能。此外,改性后的PPM将蛋白质吸附量降低至小于30 ng/cm²。更显著的是,PMPCC - Hep涂层的ECMO系统在无抗凝剂的动物体外循环中,将抗渗漏和非凝血氧合期延长至超过15小时,远优于裸露的和传统的Hep涂层ECMO系统,后者分别在4小时和8小时出现严重凝血和血浆渗漏。这种将生物活性肝素接枝到生物惰性两性离子共聚物界面的SEMMC策略在开发更安全、更长时间的无抗凝剂ECMO系统方面具有巨大潜力。

意义声明

通过磷酰胆碱和羧基侧链共聚物(PMPCC)的多点锚定以及肝素(Hep)的接枝,在聚丙烯中空纤维膜(PPM)氧合器及其ECMO回路的表面构建了一种超亲水内皮膜模拟涂层。PMPCC - Hep涂层的强抗污染性质可抵抗血浆生物分子的吸附,从而增强血液相容性和抗渗漏能力。两性离子PMPCC界面上接枝的肝素表现出优异的抗凝性能。更显著的是,PMPCC - Hep涂层在猪模型中实现了至少15小时的体外循环,且无需任何全身抗凝剂。这种内皮膜模拟抗凝策略在开发更安全、更长时间的无抗凝剂ECMO系统方面显示出巨大潜力。

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