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用于组织工程应用的双交联纳米纤维素水凝胶的 3D 生物打印。

3D bioprinting of dual-crosslinked nanocellulose hydrogels for tissue engineering applications.

机构信息

School of Chemistry, UNSW Sydney, NSW 2052, Australia.

出版信息

J Mater Chem B. 2021 Aug 21;9(31):6163-6175. doi: 10.1039/d1tb00624j. Epub 2021 Jul 21.

Abstract

Hydrogels based on cellulose nanofibrils (CNFs) have been widely used as scaffolds for biomedical applications, however, the poor mechanical properties of CNF hydrogels limit their use as ink for 3D bioprinting in order to generate scaffolds for tissue engineering applications. In this study, a dual crosslinkable hydrogel ink composed of a poly(ethylene glycol) (PEG) star polymer and 2,2,6,6-tetramethyl-1-piperidinyloxy (TEMPO)-oxidized nanocellulose fibers (CNFs) is presented. As the resulting hydrogel had low structural integrity, at first crosslinking of CNFs was introduced by Ca. Strong physical interactions between CNFs and Ca cations allowed easy regulation of the viscosity of the inks for extrusion printing raising the solution viscosity by more than 1.5 times depending on the amount of Ca added. The resulting hydrogel had high structural integrity and was further stabilized in a second step by photo crosslinking of PEG under visible light. In only a few seconds, hydrogels with Young's modulus between ∼10 and 30 kPa were obtained just by altering the CNF and Ca content. 3D printed hydrogels supported fibroblasts with excellent cell viability and proliferation. The dual crosslinkable hydrogel ink herein developed is versatile, easy to prepare, and suitable for 3D printing of bioscaffolds with highly tailored viscoelastic and mechanical properties applicable in a wide range of regenerative medicines.

摘要

基于纤维素纳米纤维 (CNF) 的水凝胶已被广泛用作生物医学应用的支架,然而,CNF 水凝胶的机械性能差限制了其作为 3D 生物打印墨水的用途,无法用于组织工程应用的支架生成。在这项研究中,提出了一种由聚乙二醇 (PEG) 星型聚合物和 2,2,6,6-四甲基-1-哌啶氧基 (TEMPO)-氧化纳米纤维素纤维 (CNF) 组成的双交联水凝胶墨水。由于所得水凝胶的结构完整性较低,首先通过 Ca 引入 CNF 的交联。CNF 和 Ca 阳离子之间的强物理相互作用允许轻松调节用于挤出打印的墨水的粘度,根据添加的 Ca 的量使溶液粘度提高超过 1.5 倍。所得水凝胶具有高结构完整性,并在第二步通过可见光下 PEG 的光交联进一步稳定。只需改变 CNF 和 Ca 的含量,仅几秒钟即可获得杨氏模量在 10 到 30 kPa 之间的水凝胶。3D 打印水凝胶支持成纤维细胞,具有出色的细胞活力和增殖能力。本文开发的双交联水凝胶墨水用途广泛、易于制备,适用于具有高度定制的粘弹性和机械性能的生物支架的 3D 打印,可应用于广泛的再生医学领域。

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