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Three Dimensional Bioprinting of Tissue Engineered Artificial Heart Valves by Stereolithography

机译:三维生物制版组织工程人造心阀通过立体镀缩法

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Over the past several decades, there has been an everincreasing demand for organ transplants. There are no significant increase observed in organ donations while the need for organ transplantation is keep increasing. Organ donation emerges as the most feasible solution especially in heart valve diseases. There are two types of artificial heart valves are utilized for heart valve replacement operations. These are mechanical heart valves and bioprosthetic heart valves. However, there are severe intrinsic problems exist for both type of artificial heart valves that are hard to be solved. Due to these reasons, growing or fabricating tissue engineered heart valves using biomaterial scaffolds with a person’s own cells with high biocompatability. The purpose of this study is; fabricating 3D artificial heart valves by stereolithography that has potential to be obtained for heart valve replacements. Stereolithography has proven potential for fabricating 3D models with high structural integrity and strong mechanical properties, yet it has not been evaluated as a bioprinter. In this study, this purpose is aimed to be succeeded.
机译:在过去的几十年中,对器官移植的需求是常规的需求。在器官捐赠中没有显着增加,而器官移植的需要继续增加。器官捐赠是特别是最可行的解决方案,特别是在心脏瓣膜疾病中。有两种类型的人造心脏阀用于心脏瓣膜置换操作。这些是机械心脏瓣膜和生物假体心脏瓣膜。然而,对于两种类型的人造心脏阀门存在严重的内在问题,这是难以解决的。由于这些原因,使用具有高生物相容性的人自己的细胞生长或制造组织工程心脏瓣膜。本研究的目的是;通过立体镀透镜制造3D人造心脏阀,其具有用于心脏瓣膜置换的可能性。立体刻度被证明是制造具有高结构完整性和强力机械性能的3D模型的可能性,但它尚未评估为生物炉。在这项研究中,这个目的旨在成功。

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