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将大分子拥挤效应应用于 3D 生物打印:3D 分级多孔胶原基水凝胶构建体的制造。

Applying macromolecular crowding to 3D bioprinting: fabrication of 3D hierarchical porous collagen-based hydrogel constructs.

机构信息

Singapore Centre for 3D Printing (SC3DP), School of Mechanical and Aerospace Engineering, Nanyang Technological University (NTU), 50 Nanyang Avenue, Singapore 639798, Singapore.

出版信息

Biomater Sci. 2018 Feb 27;6(3):562-574. doi: 10.1039/c7bm01015j.

Abstract

Native tissues and/or organs possess complex hierarchical porous structures that confer highly-specific cellular functions. Despite advances in fabrication processes, it is still very challenging to emulate the hierarchical porous collagen architecture found in most native tissues. Hence, the ability to recreate such hierarchical porous structures would result in biomimetic tissue-engineered constructs. Here, a single-step drop-on-demand (DOD) bioprinting strategy is proposed to fabricate hierarchical porous collagen-based hydrogels. Printable macromolecule-based bio-inks (polyvinylpyrrolidone, PVP) have been developed and printed in a DOD manner to manipulate the porosity within the multi-layered collagen-based hydrogels by altering the collagen fibrillogenesis process. The experimental results have indicated that hierarchical porous collagen structures could be achieved by controlling the number of macromolecule-based bio-ink droplets printed on each printed collagen layer. This facile single-step bioprinting process could be useful for the structural design of collagen-based hydrogels for various tissue engineering applications.

摘要

天然组织和/或器官具有复杂的层次多孔结构,赋予其高度特异性的细胞功能。尽管制造工艺取得了进步,但仍然非常难以模拟大多数天然组织中存在的分层多孔胶原结构。因此,能够重建这种分层多孔结构将导致仿生组织工程构建体。在这里,提出了一种一步按需滴注 (DOD) 生物打印策略来制造分层多孔基于胶原的水凝胶。已经开发出可打印的基于大分子的生物墨水 (聚乙烯吡咯烷酮,PVP),并以 DOD 方式打印,通过改变胶原原纤维形成过程来改变多层基于胶原的水凝胶中的孔隙率。实验结果表明,通过控制打印在每个打印胶原层上的基于大分子的生物墨水液滴的数量,可以实现分层多孔胶原结构。这种简单的一步生物打印过程对于各种组织工程应用的基于胶原的水凝胶的结构设计可能非常有用。

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