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首页> 外文期刊>Journal of mechanics in medicine and biology >A BOTTOM-UP METHOD TO BUILD 3D SCAFFOLDS WITH PREDEFINED VASCULAR NETWORK
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A BOTTOM-UP METHOD TO BUILD 3D SCAFFOLDS WITH PREDEFINED VASCULAR NETWORK

机译:一种使用预定义血管网络构建3D脚手架的自底向上方法

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摘要

Tissue engineering is a promising approach to regenerate transplantable tissue or organ substitutes in vitro. However, the existing methods are based on seeding cells on macroscale polymer scaffolds, which are associated with several challenges including limited control over cell microenvironment, limited nutrient diffusion, directed cell alignment. The emerging bottom-up tissue engineering methods hold great potential to address these challenges by assembling building blocks into complex 3D tissue constructs. In this study, we developed a layer-by-layer assembly approach to recreate 3D cell-laden constructs. Our experiment showed the predefined channels form a vascular system and help the transplant cells to transport the requirement of culture cells in early case of cells attaching and growing up. It is an original concept to demonstrate the feasibility of forming a network with a vascular geometry in a biocompatible polymer and fabricated different scaffold with different cells. The concept was developed toxreate a complete branching vascular circulation in 3D on surface of mixture of chitosan and gelatin structures and pre-define the structure of channel for culturing smooth muscle for controlling the SMC growing up as smooth muscle fiber.
机译:组织工程是一种在体外再生可移植组织或器官替代物的有前途的方法。然而,现有的方法是基于将细胞接种在大型聚合物支架上,这与若干挑战有关,包括对细胞微环境的有限控制,有限的营养物扩散,定向的细胞排列。通过将构建基块组装到复杂的3D组织构造中,新兴的自下而上的组织工程方法具有解决这些挑战的巨大潜力。在这项研究中,我们开发了一种逐层组装的方法来重建3D充满细胞的构造。我们的实验表明,预定的通道形成了血管系统,并在早期细胞附着和长大的情况下帮助移植细胞转运培养细胞的需求。最初的概念是证明在生物相容性聚合物中形成具有血管几何结构的网络并制造具有不同细胞的不同支架的可行性。开发此概念的目的是在壳聚糖和明胶结构混合物的表面上3D分解完整的分支血管循环,并预先定义用于培养平滑肌的通道结构,以控制SMC成长为平滑肌纤维。

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