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HIGHLY ELASTIC AND MOLDABLE POLYESTER BIOMATERIAL FOR CARDIAC TISSUE ENGINEERING APPLICATIONS

机译:用于心脏组织工程应用的高弹性和可模塑聚酯生物材料

摘要

The present invention provides a new polyester biomaterial through a simple one-step polycondensation synthesis. 124 polymer exhibited highly elastic properties under aqueous conditions that were tunable according to the UV light exposure, monomer composition, and porosity of the cured elastomer. Its elastomeric properties fell within the range of adult heart myocardium, but they could also be optimized for higher elasticity for weaker immature constructs. The polymer showed relatively stable degradation characteristics, both hydrolytically and in a cellular environment, suggesting maintenance of material properties as a scaffold support for potential tissue implants. When assessed for cell interaction, this polymer supported rat cardiac cell attachment in vitro as well as decreased fibrous capsule formation in vivo when compared to poly(L-lactic acid) control. This suggests the potential applicability of this material as an elastomer for cardiac tissue engineered constructs. Furthermore, the highly elastic polyester could be molded and photocrosslinked into a complex mesh structure with feature size on the order of tens of micrometers, demonstrating utility in cardiac tissue engineering constructs.
机译:本发明通过简单的一步缩聚合成提供了一种新型的聚酯生物材料。 124聚合物在水性条件下表现出高弹性,该特性可根据UV暴露,单体组成和固化弹性体的孔隙率进行调节。它的弹性性能落在成人心肌的范围之内,但是它们也可以针对较弱的未成熟结构进行优化以获得更高的弹性。该聚合物在水解和细胞环境中均显示出相对稳定的降解特性,表明维持材料特性作为潜在组织植入物的支架支撑物。当评估细胞相互作用时,与聚(L-乳酸)对照相比,该聚合物在体外支持大鼠心脏细胞附着,并在体内减少了纤维囊的形成。这表明该材料作为用于心脏组织工程构造的弹性体的潜在适用性。此外,可以将高弹性聚酯模塑并光交联成特征尺寸为数十微米量级的复杂网状结构,这证明了其在心脏组织工程构造中的实用性。

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