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通过 3D 打印和离子增强技术制备具有复杂结构和良好机械性能的多层水凝胶支架

Fabrication of Multiple-Layered Hydrogel Scaffolds with Elaborate Structure and Good Mechanical Properties via 3D Printing and Ionic Reinforcement.

机构信息

Shanghai Qisheng Biological Preparation Co. Ltd. , Shanghai 201106 , P. R. China.

Shanghai Haohai Biological Technology Co. Ltd. , Shanghai 200052 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 May 30;10(21):18338-18350. doi: 10.1021/acsami.8b04116. Epub 2018 May 18.

Abstract

A major challenge in three-dimensional (3D) printing of hydrogels is the fabrication of stable constructs with high precision and good mechanical properties and biocompatibility. Existing methods typically feature complicated reinforcement steps or use potentially toxic components, such as photocuring polymers and crosslinking reagents. In this study, we used a thermally sensitive hydrogel, hydroxybutyl chitosan (HBC), for 3D-printing applications. For the first time, we demonstrated that this modified polysaccharide is affected by the specific ion effect. As the salt concentration was increased and stronger kosmotropic anions were used, the lower critical solution temperature of the HBC decreased and the storage modulus was improved, indicating a more hydrophobic structure and stronger molecular chain interactions. On the basis of the thermosensitivity and the ion effects of HBC, a 25-layered hydrogel scaffold with strong mechanical properties and an elaborate structure was prepared via a 3D-printing method and one-step ionic post-treatment. In particular, the scaffold treated with 10% NaCl solution exhibited a tunable elastic modulus of 73.2 kPa to 40 MPa and excellent elastic recovery, as well as biodegradability and cytocompatibility, suggesting the potential for its applications to cartilage tissue repair. By simply controlling the temperature and salt concentrations, this novel approach provides a convenient and green route to improving the structural accuracy and regulating the properties of 3D-printed hydrogel constructs.

摘要

在水凝胶的三维(3D)打印中,一个主要挑战是制造具有高精度、良好机械性能和生物相容性的稳定结构。现有的方法通常具有复杂的增强步骤或使用潜在有毒的成分,如光固化聚合物和交联试剂。在本研究中,我们使用了一种热敏水凝胶羟丁基壳聚糖(HBC)进行 3D 打印应用。我们首次证明,这种经过修饰的多糖受特定离子效应的影响。随着盐浓度的增加和使用更强的亲盐阴离子,HBC 的低临界溶液温度降低,储能模量提高,表明其具有更疏水的结构和更强的分子链相互作用。基于 HBC 的热敏性和离子效应,我们通过 3D 打印方法和一步离子后处理制备了具有强机械性能和精细结构的 25 层水凝胶支架。特别是,用 10%NaCl 溶液处理的支架表现出可调节的弹性模量为 73.2 kPa 至 40 MPa,具有出色的弹性恢复能力以及生物降解性和细胞相容性,表明其在软骨组织修复中的应用潜力。通过简单地控制温度和盐浓度,这种新方法为提高 3D 打印水凝胶结构的结构精度和调节其性能提供了一种方便且环保的途径。

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