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甲基丙烯酸缩水甘油酯交联的鱼鳔作为一种新型心血管生物材料,具有改善的抗血栓和抗钙化性能。

Glycidyl methacrylate-crosslinked fish swim bladder as a novel cardiovascular biomaterial with improved antithrombotic and anticalcification properties.

机构信息

12530Sichuan University, Chengdu, China.

出版信息

J Biomater Appl. 2022 Feb;36(7):1188-1200. doi: 10.1177/08853282211054205. Epub 2021 Oct 31.

Abstract

At present, commercial artificial biological valves are mostly prepared by crosslinking bovine or porcine pericardia with glutaraldehyde. Swim bladder has similar components and lower immunogenicity compared to bovine or porcine pericardium. In this study, we used a glycidyl methacrylate (GMA)-based radical polymerization method to crosslink decellularized swim bladders. Amino and carboxyl groups in the swim bladder were reacted with epoxy groups on GMA to introduce carbon-carbon double bonds to the swim bladder. The results showed that the platelet adhesion of GMA-crosslinked swim bladders (GMA-SBs) decreased by 35%, as compared to that of glutaraldehyde-crosslinked swim bladders (GLUT-SBs). Moreover, the superior anticoagulant property was further verified by the ex vivo arteriovenous shunt assay. Meanwhile, the subcutaneous implantation in rats showed that GMA-SBs were able to effectively inhibit the calcification compared with GLUT-SBs. In conclusion, GMA-SBs showed improved antithrombotic and anticalcification properties compared to GLUT-SBs.

摘要

目前,商业用人工生物瓣膜大多是通过戊二醛交联牛或猪的心包膜制备的。与牛或猪的心包膜相比,鱼鳔具有相似的成分和较低的免疫原性。在本研究中,我们使用基于甲基丙烯酸缩水甘油酯(GMA)的自由基聚合方法交联脱细胞鱼鳔。鱼鳔中的氨基和羧基与 GMA 上的环氧基反应,向鱼鳔中引入碳-碳双键。结果表明,与戊二醛交联的鱼鳔(GLUT-SBs)相比,GMA 交联的鱼鳔(GMA-SBs)的血小板黏附减少了 35%。此外,通过体外动静脉分流试验进一步验证了其优异的抗凝血性能。同时,大鼠皮下植入实验表明,与 GLUT-SBs 相比,GMA-SBs 能有效抑制钙化。总之,与 GLUT-SBs 相比,GMA-SBs 表现出更好的抗血栓和抗钙化性能。

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