微流控人工膜肺氧合器研究进展
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1.西北工业大学动力与能源学院;2.空军军医大学第一附属医院心血管外科

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Research Progress of Microfluidic Extracorporeal Membrane Oxygenator
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1.School of Power and Energy, Northwestern Polytechnical University;2.Department of Cardiovascular Surgery, Xijing Hospital, The Fourth Military Medical University

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    摘要:

    微流控人工膜肺氧合器是一种利用微流控技术设计的高级体外生命支持设备,可以为严重呼吸衰竭等肺部疾病的患者通过体外循环提供氧合支持,相比于传统人工膜肺氧合器,具有更加优异的仿生设计,展现了提高疗效和降低并发症的潜力。本文综述了微流控人工膜肺氧合器在血流动力学、膜材料、生物相容性、气体交换效率、结构设计等方面的研究进展,分析了血液通道设计、材料、表面修饰技术等因素对微流控人工膜肺氧合器性能的影响,如仿生流动路径能减小剪切应力、内皮细胞衬里能显著减少凝血现象等。最后探讨了微流控人工膜肺氧合器的局限并对未来发展进行了展望,微流控人工膜肺氧合器还需要在生物相容性、便携性、可制造性和降低成本方面进行研究创新。

    Abstract:

    A microfluidic extracorporeal membrane oxygenator is an advanced extracorporeal life support device designed using microfluidic technology, capable of providing oxygenation support to patients with severe respiratory failure and other pulmonary diseases via extracorporeal circulation. Compared to conventional extracorporeal membrane oxygenators, it features a more superior biomimetic design, demonstrating potential for improved therapeutic outcomes and reduced complications. This review summarizes the research progress of microfluidic extracorporeal membrane oxygenators in terms of hemodynamics, membrane materials, biocompatibility, gas exchange efficiency, and structural design. It analyzes how factors such as blood channel design, material selection and surface modification techniques impact the performance of microfluidic extracorporeal membrane oxygenators, such as biomimetic flow paths minimizing shear stress and endothelial cell linings significantly reducing thrombosis. Finally, the limitations of microfluidic extracorporeal membrane oxygenators are discussed, along with prospects for future development. Innovations are still needed in enhancing biocompatibility, portability, manufacturability, and cost reduction for microfluidic extracorporeal membrane oxygenators.

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  • 收稿日期:2024-11-29
  • 最后修改日期:2025-01-21
  • 录用日期:2025-01-22
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