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3D bioprinting of biomimetic aortic vascular constructs with self-supporting cells

机译:具有自支撑细胞的仿生主动脉血管构造物的3D生物打印

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摘要

Cardiovascular diseases are the leading cause of deaths throughout the world. Vascular diseases are mostly treated with autografts and blood vessel transplantations. However, traditional grafting methods have several problems including lack of suitable harvest sites, additional surgical costs for harvesting procedure, pain, infection, lack of donors and even no substitutes at all. Recently, tissue engineering and regenerative medicine approaches are used to regenerate damaged or diseased tissues. Most of the tissue engineering investigations have been based on the cell seeding into scaffolds by providing a suitable environment for cell attachment, proliferation and differentiation. Because of the challenges such as difficulties in seeding cells spatially, rejection and inflammation of biomaterials used, the recent tissue engineering studies focus on scaffold-free techniques. In this paper, the development of novel computer aided algorithms and methods are developed for 3D bioprinting of scaffold-free biomimetic macrovascular structures. Computer model mimicking a real human aorta is generated using imaging techniques and the proposed computational algorithms. An optimized three-dimensional bioprinting path planning are developed with the proposed self-supported model. Mouse embryonic fibroblast (MEF) cell aggregates and support structures (hydrogels) are 3D bioprinted layer-by-layer according to the proposed self-supported method to form an aortic tissue construct.
机译:心血管疾病是全世界死亡的主要原因。血管疾病大多通过自体移植和血管移植治疗。但是,传统的嫁接方法存在几个问题,包括缺乏合适的收割地点,收割过程的额外外科手术费用,疼痛,感染,缺乏供体甚至根本没有替代物。近来,组织工程和再生医学方法被用于再生受损或患病的组织。大多数组织工程研究都是基于通过为细胞附着,增殖和分化提供合适的环境,将细胞植入支架中进行的。由于存在诸如在空间上播种细胞方面的困难,所使用的生物材料的排斥和炎症等挑战,最近的组织工程研究集中在无支架技术上。在本文中,开发了新颖的计算机辅助算法和方法,用于无支架仿生大血管结构的3D生物打印。使用成像技术和建议的计算算法生成模拟真实人类主动脉的计算机模型。利用提出的自支持模型开发了优化的三维生物打印路径规划。小鼠胚胎成纤维细胞(MEF)细胞聚集体和支持结构(水凝胶)根据提出的自支持方法逐层进行3D生物打印以形成主动脉组织构建体。

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