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Biomechanically Compatible Hydrogel Bioprosthetic Valves

机译:生物力学相容的水凝胶生物瓣膜

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摘要

Bioprosthetic cardiac valves are efficient replacements to clinically treat the valvular heart diseases including stenosis and regurgitation,while these often suffer from the issues of mechanical mismatch,biocompatibility,thrombus,degradation,etc.Here,we report a big step toward the biomechanically compatible hydrogel heart valves by the reversible addition-fragmentation chain transfer polymerization compatible three-dimensional(RAFT-3D)printing tough hydrogels.The biocompatible hydrogel valves have favorable mechanical properties matching with native valves and long-term stability and durability owing to the wide and robust hydrogen-bonding networks,on which the heparin-like polymer with-SO_3~-is readily grafted through RAFT polymerization,endowing outstanding hemocompatibility including low hemolysis,anticoagulation,and acceptable inflammatory response.The proof-of-concept hydrogel aortic valve displayed a low transvalvular pressure gradient of 14-24 mmHg,which efficiently regulates the flow direction and regurgitation and,more importantly,endures a cyclic pressure of ~80 mmHg for at least 1.8× 10s cycles yet maintaining a stable transvalvular pressure gradient without any damage to the configuration and performance.It is believed that the engineered hydrogel cardiac valves pave a significant way toward addressing the complications of cardiovascular diseases.
机译:生物人工心脏瓣膜是临床治疗瓣膜性心脏病(包括狭窄和反流)的有效替代方法,但这些疾病往往存在机械错配、生物相容性、血栓、降解等问题。在这里,我们报道了通过可逆加成-碎片链转移聚合兼容三维(RAFT-3D)打印坚韧水凝胶,向生物力学相容性水凝胶心脏瓣膜迈出了一大步。该生物相容性水凝胶瓣膜具有与天然瓣膜相匹配的良好力学性能,并且由于具有广泛而坚固的氢键网络,肝素类聚合物与-SO_3~-易于通过RAFT聚合接枝,具有出色的血液相容性,包括低溶血性、抗凝性和可接受的炎症反应。概念验证水凝胶主动脉瓣表现出 14-24 mmHg 的低跨瓣压力梯度,可有效调节流向和反流,更重要的是,可承受 ~80 mmHg 的循环压力至少 1.8× 10 秒循环,同时保持稳定的跨瓣压梯度,而不会对结构和性能造成任何损害。据信,工程水凝胶心脏瓣膜为解决心血管疾病的并发症铺平了重要道路。

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  • 作者单位

    School of Chemistry and Chemical Engineering,Key Laboratory of Materials-Oriented Chemical Engineering of Xinjiang Uygur Autonomous Region,Shihezi University,Shihezi 832003,China;

    School of Energy and Power Engineering,Beihang University,Beijing 102206,China;

    Key Laboratory of Dental Maxillofacial Reconstruction and Biological Intelligence Manufacturing,Gansu Province,School of Stomatology,Lanzhou University,Lanzhou 730000,China;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 工程材料学;
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