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首页> 外文期刊>Journal of biomedical materials research, Part A >Inorganic-polymerization crosslinked tissue-siloxane hybrid as potential biomaterial for bioprosthetic heart valves
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Inorganic-polymerization crosslinked tissue-siloxane hybrid as potential biomaterial for bioprosthetic heart valves

机译:无机聚合交联组织 - 硅氧烷杂交为生物假心瓣膜潜在的生物材料

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摘要

Bioprosthetic heart valve (BHV) replacement is increasingly used for treating valve-related diseases worldwide but the current commercially used BHVs treated with glutaraldehyde (Glut) often failed within 12-15 years due to degradation, thrombosis, inferior biocompatibility, and calcification. Herein, 3-glycidyloxypropyl trimethoxysilane (GPTMS) was used to crosslink porcine pericardium (PP) at the concentration (vol/vol) of 0.25%, 1%, 2%, and 4% and their performance for potential application in BHVs was evaluated. The crosslinking mechanism mainly involved the ring-opening of epoxide by amine attack and silanol poly-condensation. The stability of collagen in higher concentration (1%, 2%, and 4%) GPTMS crosslinked PPs (GPTMS-PPs) was clearly increased. GPTMS-PPs showed no cytotoxicity and supported the growth of endothelial cells while Glut-PP did not. GPTMS-PPs were less prothrombotic than Glut-PP. GPTMS-PP crosslinked at 1% concentration showed comparable mechanical properties to Glut-PP while had better anti-tearing performance. The subcutaneous implantation in rat for 30 days showed that GPTMS crosslinking was able to effectively inhibit the calcification of BHV.
机译:生物人工心脏瓣膜(BHV)置换术在世界范围内越来越多地用于治疗瓣膜相关疾病,但目前商业上使用的经戊二醛(Glut)治疗的BHV,由于降解、血栓形成、较差的生物相容性和钙化,通常在12-15年内失败。在此,使用3-缩水甘油氧基丙基三甲氧基硅烷(GPTMS)在0.25%、1%、2%和4%的浓度(vol/vol)下交联猪心包(PP),并对其在BHVs中的潜在应用性能进行了评估。交联机理主要是通过胺攻击和硅醇聚缩合使环氧化物开环。在较高浓度(1%、2%和4%)的GPTMS交联PPs(GPTMS-PPs)中,胶原蛋白的稳定性明显提高。GPTMS-PPs无细胞毒性,支持内皮细胞生长,而Glut-PP无细胞毒性。与Glut-PP相比,GPTMS-PP的促血栓形成作用较小。在1%浓度下交联的GPTMS-PP显示出与Glut-PP相当的机械性能,同时具有更好的抗撕裂性能。在大鼠皮下植入30天表明,GPTMS交联能够有效抑制BHV的钙化。

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