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双交联醛化硫酸软骨素和两性离子共聚物脱细胞牛心包用于生物心脏瓣膜,具有增强的抗血栓、抗炎和抗钙化性能。

Double crosslinking decellularized bovine pericardium of dialdehyde chondroitin sulfate and zwitterionic copolymer for bioprosthetic heart valves with enhanced antithrombogenic, anti-inflammatory and anti-calcification properties.

机构信息

College of Polymer Science and Engineering, Sichuan University, Chengdu 610065, P. R. China.

Experimental and Research Animal Institute, Sichuan University, Chengdu 610065, P. R. China.

出版信息

J Mater Chem B. 2024 Apr 3;12(14):3417-3435. doi: 10.1039/d4tb00074a.

Abstract

Due to the increasing aging population and the advancements in transcatheter aortic valve replacement (TAVR), the use of bioprosthetic heart valves (BHVs) in patients diagnosed with valvular disease has increased substantially. Commercially available glutaraldehyde (GA) cross-linked biological valves suffer from reduced durability due to a combination of factors, including the high cell toxicity of GA, subacute thrombus, inflammation and calcification. In this study, oxidized chondroitin sulfate (OCS), a natural polysaccharide derivative, was used to replace GA to cross-link decellularized bovine pericardium (DBP), carrying out the first crosslinking of DBP to obtain OCS-BP. Subsequently, the zwitterion radical copolymerization system was introduced to perform double cross-linking to obtain double crosslinked BHVs with biomimetic modification (P(APM/MPC)-OCS-BP). P(APM/MPC)-OCS-BP presented enhanced mechanical properties, collagen stability and enzymatic degradation resistance due to double crosslinking. The AV-shunt assay and coagulation factors test suggested that P(APM/MPC)-OCS-BP exhibited excellent anticoagulant and antithrombotic properties due to the introduction of P(APM/MPC). P(APM/MPC)-OCS-BP also showed good HUVEC-cytocompatibility due to the substantial reduction of its residual aldehyde group. The subcutaneous implantation also demonstrated that P(APM/MPC)-OCS-BP showed a weak inflammatory response due to the anti-inflammatory effect of OCS. Finally, and results revealed that P(APM/MPC)-OCS-BP exhibited an excellent anti-calcification property. In a word, this simple cooperative crosslinking strategy provides a novel solution to obtain BHVs with good mechanical properties, and HUVEC-cytocompatibility, anti-coagulation, anti-inflammatory and anti-calcification properties. It might be a promising alternative to GA-fixed BP and exhibited good prospects in clinical applications.

摘要

由于人口老龄化的增加和经导管主动脉瓣置换术(TAVR)的进步,患有瓣膜疾病的患者使用生物瓣(BHV)的数量大大增加。商业上可用的戊二醛(GA)交联生物瓣膜由于多种因素,包括 GA 的高细胞毒性、亚急性血栓形成、炎症和钙化,耐用性降低。在这项研究中,使用氧化硫酸软骨素(OCS),一种天然多糖衍生物,代替 GA 交联脱细胞牛心包(DBP),首次交联 DBP 得到 OCS-BP。随后,引入两性离子自由基共聚体系进行双重交联,得到具有仿生修饰的双重交联 BHVs(P(APM/MPC)-OCS-BP)。由于双重交联,P(APM/MPC)-OCS-BP 表现出增强的机械性能、胶原稳定性和酶降解抗性。AV 分流测定和凝血因子测试表明,由于引入了 P(APM/MPC),P(APM/MPC)-OCS-BP 表现出优异的抗凝和抗血栓特性。由于其残留醛基大量减少,P(APM/MPC)-OCS-BP 还表现出良好的 HUVEC 细胞相容性。皮下植入也表明,由于 OCS 的抗炎作用,P(APM/MPC)-OCS-BP 表现出较弱的炎症反应。最后,和结果表明,P(APM/MPC)-OCS-BP 表现出优异的抗钙化性能。总之,这种简单的协同交联策略为获得具有良好机械性能、HUVEC 细胞相容性、抗凝、抗炎和抗钙化性能的 BHV 提供了一种新的解决方案。它可能是 GA 固定 BP 的一种有前途的替代品,并在临床应用中具有广阔的前景。

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