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化学视角下的 3D 打印生物墨水

Chemical insights into bioinks for 3D printing.

机构信息

IBMM, Univ Montpellier, CNRS, ENSCM, Montpellier, France.

出版信息

Chem Soc Rev. 2019 Jul 29;48(15):4049-4086. doi: 10.1039/c7cs00718c.

Abstract

3D printing has triggered the acceleration of numerous research areas in health sciences, which traditionally used cells as starting materials, in particular tissue engineering, regenerative medicine and also in the design of more relevant bioassays for drug discovery and development. While cells can be successfully printed in 2D layers without the help of any supporting biomaterial, the obtainment of more complex 3D architectures requires a specific bioink, i.e. a material in which the cells are embedded during and after the printing process helping to support them while they are arranged in superimposed layers. The bioink plays a critical role in bioprinting: first, it must be adapted to the 3D printing technology; then, it must fulfil the physicochemical and mechanical characteristics of the target construct (e.g. stiffness, elasticity, robustness, transparency); finally it should guarantee cell viability and eventually induce a desired behaviour. This review focuses on the nature of bioink components of natural or synthetic origin, and highlights the chemistry required for the establishment of the 3D network in conditions compatible with the selected 3D printing technique and cell survival.

摘要

3D 打印技术引发了健康科学领域众多研究方向的加速发展,这些领域传统上使用细胞作为起始材料,特别是组织工程、再生医学,以及药物发现和开发中更相关的生物测定设计。虽然细胞可以在没有任何支持性生物材料帮助的情况下成功地在 2D 层中打印,但获得更复杂的 3D 结构需要特定的生物墨水,即一种在打印过程中和打印后将细胞嵌入其中的材料,有助于在细胞排列在叠加层时支撑它们。生物墨水在生物打印中起着至关重要的作用:首先,它必须适应 3D 打印技术;其次,它必须满足目标构建体的物理化学和机械特性(例如,刚度、弹性、坚固性、透明度);最后,它应该保证细胞活力,并最终诱导所需的行为。本文综述了天然或合成来源的生物墨水成分的性质,并强调了在与所选 3D 打印技术和细胞存活兼容的条件下建立 3D 网络所需的化学性质。

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