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3D生物打印之前、期间和之后的生物墨水特性。

Bioink properties before, during and after 3D bioprinting.

作者信息

Hölzl Katja, Lin Shengmao, Tytgat Liesbeth, Van Vlierberghe Sandra, Gu Linxia, Ovsianikov Aleksandr

机构信息

Institute of Materials Science and Technology, Technical University Vienna, Austria. Austrian Cluster for Tissue Regeneration, Austria.

出版信息

Biofabrication. 2016 Sep 23;8(3):032002. doi: 10.1088/1758-5090/8/3/032002.

Abstract

Bioprinting is a process based on additive manufacturing from materials containing living cells. These materials, often referred to as bioink, are based on cytocompatible hydrogel precursor formulations, which gel in a manner compatible with different bioprinting approaches. The bioink properties before, during and after gelation are essential for its printability, comprising such features as achievable structural resolution, shape fidelity and cell survival. However, it is the final properties of the matured bioprinted tissue construct that are crucial for the end application. During tissue formation these properties are influenced by the amount of cells present in the construct, their proliferation, migration and interaction with the material. A calibrated computational framework is able to predict the tissue development and maturation and to optimize the bioprinting input parameters such as the starting material, the initial cell loading and the construct geometry. In this contribution relevant bioink properties are reviewed and discussed on the example of most popular bioprinting approaches. The effect of cells on hydrogel processing and vice versa is highlighted. Furthermore, numerical approaches were reviewed and implemented for depicting the cellular mechanics within the hydrogel as well as for prediction of mechanical properties to achieve the desired hydrogel construct considering cell density, distribution and material-cell interaction.

摘要

生物打印是一种基于增材制造的过程,使用含有活细胞的材料。这些材料通常被称为生物墨水,基于细胞相容性水凝胶前体配方,其凝胶化方式与不同的生物打印方法兼容。凝胶化之前、期间和之后的生物墨水特性对于其可打印性至关重要,包括可实现的结构分辨率、形状保真度和细胞存活率等特征。然而,成熟的生物打印组织构建体的最终特性对于最终应用至关重要。在组织形成过程中,这些特性受到构建体中存在的细胞数量、它们的增殖、迁移以及与材料的相互作用的影响。一个经过校准的计算框架能够预测组织的发育和成熟,并优化生物打印输入参数,如起始材料、初始细胞负载和构建体几何形状。在本论文中,以最流行的生物打印方法为例,对相关的生物墨水特性进行了综述和讨论。强调了细胞对水凝胶加工的影响以及反之亦然的影响。此外,还综述并实施了数值方法,以描述水凝胶内的细胞力学以及预测力学性能,从而在考虑细胞密度、分布和材料-细胞相互作用的情况下实现所需的水凝胶构建体。

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