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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >A novel polymer for potential use in a trileaflet heart valve.
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A novel polymer for potential use in a trileaflet heart valve.

机译:一种潜在用于三叶型心脏瓣膜的新型聚合物。

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摘要

A novel polyolefin, poly(styrene-b-isobutylene-b-styrene) (Quatromer), is being proposed as a viable polymer for use in trileaflet heart valves because of its oxidative stability. The current study was designed to assess the polymer's hemocompatibility and mechanical durability. Mechanical characterization included static tensile tests and dynamic tension-tension and bending fatigue tests, where the properties of isotropic and composite (polypropylene (PP) embedded) Quatromer specimens were compared with those of a polyurethane (PUR) approved for cardiovascular applications. It was found that by embedding PP fibers into the Quatromer matrix, the tensile and fatigue properties of the polymer could be improved, making them comparable, if not better than the PUR. The thrombotic potential of Quatromer was compared with the PUR, glutaraldehyde-fixed porcine valve material, and a positive and negative control by measuring platelet deposition with radiolabeled platelets in a parallel plate flow configuration.The porcine valve material was found to have significantly higher platelet deposition under all flow regimes, while no significant difference existed between Quatromer and PUR. In conclusion, Quatromer is shown to have suitable hemocompatibility and mechanical durability for use in polymer trileaflet heart valves, and fiber reinforcement can effectively be used to tailor the mechanical properties.
机译:由于其氧化稳定性,正在提出一种新颖的聚烯烃,聚(苯乙烯-b-异丁烯-b-苯乙烯)(Quatromer)作为用于三叶型心脏瓣膜的可行聚合物。当前的研究旨在评估聚合物的血液相容性和机械耐久性。机械特性包括静态拉伸试验,动态拉伸-拉伸和弯曲疲劳试验,将各向同性和复合材料(嵌入聚丙烯(PP)的Quatromer样品)的性能与批准用于心血管的聚氨酯(PUR)的性能进行比较。已经发现,通过将PP纤维嵌入Quatromer基质中,可以改善聚合物的拉伸和疲劳性能,使其具有可比性,甚至不比PUR好。将Quatromer的血栓形成潜力与PUR,戊二醛固定的猪瓣膜材料以及阳性对照和阴性对照进行了比较,方法是使用放射标记的血小板以平行板流配置测量血小板沉积,发现猪瓣膜材料的血小板沉积明显更高在所有流态下,Quatromer和PUR之间都没有显着差异。总之,Quatromer被证明具有合适的血液相容性和机械耐久性,可用于聚合物三叶形心脏瓣膜,并且纤维增强材料可有效地用于调整机械性能。

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