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用于基于激光的高清生物打印的硫醇-明胶-降冰片烯生物墨水

Thiol-Gelatin-Norbornene Bioink for Laser-Based High-Definition Bioprinting.

作者信息

Dobos Agnes, Van Hoorick Jasper, Steiger Wolfgang, Gruber Peter, Markovic Marica, Andriotis Orestis G, Rohatschek Andreas, Dubruel Peter, Thurner Philipp J, Van Vlierberghe Sandra, Baudis Stefan, Ovsianikov Aleksandr

机构信息

TU Wien, 3D Printing and Biofabrication Group, Institute of Materials Science and Technology, Getreidemarkt 9, 1060, Vienna, Austria.

Austrian Cluster for Tissue Regeneration.

出版信息

Adv Healthc Mater. 2020 Aug;9(15):e1900752. doi: 10.1002/adhm.201900752. Epub 2019 Jul 26.

Abstract

Two-photon polymerization (2PP) is a lithography-based 3D printing method allowing the fabrication of 3D structures with sub-micrometer resolution. This work focuses on the characterization of gelatin-norbornene (Gel-NB) bioinks which enables the embedding of cells via 2PP. The high reactivity of the thiol-ene system allows 2PP processing of cell-containing materials at remarkably high scanning speeds (1000 mm s ) placing this technology in the domain of bioprinting. Atomic force microscopy results demonstrate that the indentation moduli of the produced hydrogel constructs can be adjusted in the 0.2-0.7 kPa range by controlling the 2PP processing parameters. Using this approach gradient 3D constructs are produced and the morphology of the embedded cells is observed in the course of 3 weeks. Furthermore, it is possible to tune the enzymatic degradation of the crosslinked bioink by varying the applied laser power. The 3D printed Gel-NB hydrogel constructs show exceptional biocompatibility, supported cell adhesion, and migration. Furthermore, cells maintain their proliferation capacity demonstrated by Ki-67 immunostaining. Moreover, the results demonstrate that direct embedding of cells provides uniform distribution and high cell loading independently of the pore size of the scaffold. The investigated photosensitive bioink enables high-definition bioprinting of well-defined constructs for long-term cell culture studies.

摘要

双光子聚合(2PP)是一种基于光刻的3D打印方法,可制造具有亚微米分辨率的3D结构。这项工作重点在于表征明胶-降冰片烯(Gel-NB)生物墨水,它能够通过2PP嵌入细胞。硫醇-烯体系的高反应活性使得含细胞材料能够以极高的扫描速度(1000 mm/s)进行2PP加工,从而将该技术带入生物打印领域。原子力显微镜结果表明,通过控制2PP加工参数,所制备水凝胶构建体的压痕模量可在0.2-0.7 kPa范围内调节。采用这种方法制备了梯度3D构建体,并在3周内观察了嵌入细胞的形态。此外,通过改变施加的激光功率,可以调节交联生物墨水的酶促降解。3D打印的Gel-NB水凝胶构建体表现出优异的生物相容性、支持细胞粘附和迁移。此外,通过Ki-67免疫染色证明细胞保持其增殖能力。而且,结果表明细胞的直接嵌入提供了均匀分布和高细胞负载,与支架的孔径无关。所研究的光敏生物墨水能够实现用于长期细胞培养研究的明确构建体的高清生物打印。

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