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Continuous Based Direct Ink Write for Tubular Cardiovascular Medical Devices

机译:用于管状心血管医疗器械的连续直接油墨写入

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摘要

Bioresorbable cardiovascular applications are increasing in demand as fixed medical devices cause episodes of late restenosis. The autologous treatment is, so far, the gold standard for vascular grafts due to the similarities to the replaced tissue. Thus, the possibility of customizing each application to its end user is ideal for treating pathologies within a dynamic system that receives constant stimuli, such as the cardiovascular system. Direct Ink Writing (DIW) is increasingly utilized for biomedical purposes because it can create composite bioinks by combining polymers and materials from other domains to create DIW-printable materials that provide characteristics of interest, such as anticoagulation, mechanical resistance, or radiopacity. In addition, bioinks can be tailored to encounter the optimal rheological properties for the DIW purpose. This review delves into a novel emerging field of cardiovascular medical applications, where this technology is applied in the tubular 3D printing approach. Cardiovascular stents and vascular grafts manufactured with this new technology are reviewed. The advantages and limitations of blending inks with cells, composite materials, or drugs are highlighted. Furthermore, the printing parameters and the different possibilities of designing these medical applications have been explored.
机译:随着固定医疗装置导致晚期再狭窄发作的需求,生物血管血管应用正在增加。到目前为止,自体处理是由于与替换组织的相似性引起的血管移植物的金标准。因此,将每个应用程序定制到其最终用户的可能性是处理在接收恒定刺激的动态系统内的病理,例如心血管系统。直接墨水写入(DIW)越来越多地用于生物医学目的,因为它可以通过将聚合物和材料与其他结构域组合以产生提供感兴趣的特征的DIW可印刷材料,例如抗凝,机械阻力或辐射缺失性。此外,可以量身定制生物链以遇到DIW目的的最佳流变性能。该审查涉及一种新兴的心血管医疗应用领域,其中该技术以管状3D打印方法应用。综述了用这种新技术制造的心血管支架和血管移植物。突出了细胞,复合材料或药物混合油墨的优缺点。此外,已经探讨了打印参数和设计这些医疗应用的不同可能性。

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