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用于3D细胞培养和软骨修复的超坚韧可注射细胞相容性水凝胶。

Ultra-tough injectable cytocompatible hydrogel for 3D cell culture and cartilage repair.

作者信息

Zhao Yanran, Li Mengnan, Liu Bingchuan, Xiang Junfeng, Cui Zhiyong, Qu Xiaozhong, Qiu Dong, Tian Yun, Yang Zhenzhong

机构信息

College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Mater Chem B. 2018 Mar 7;6(9):1351-1358. doi: 10.1039/c7tb03177g. Epub 2018 Feb 14.

Abstract

In this work, we developed a very facile strategy, i.e. dual dynamic crosslinking, to prepare a high performance injectable hydrogel. Poly(vinyl alcohol) (PVA) was crosslinked by 4-carboxyphenylboronic acid (CPBA) through the generation of borate bonding and ionic interaction to bridge the polymer chains in the presence of calcium ions. The dynamic gathering of CPBA could induce a self-reinforcing effect inside the hydrogel matrix, leading to high tensile and compressive moduli of the hydrogel over 1.0 MPa including the highest compressive modulus up to 5.6 MPa. Meanwhile, the mechanical properties of the hydrogel can be broadly and accurately tuned. And owing to the flexible PVA network, the hydrogel is ultra-tough, showing maximum tensile strain, tensile and compressive fracture energies up to 1600%, 600 kJ m and 25 kJ m, respectively. Besides, the dynamic bonding overcomes the barriers to forming an injected strong hydrogel, e.g. to obtain a modulus and a fracture energy exceeding 1.0 MPa and 40 kJ m, by using a commercial dual-syringe kit under physiological conditions. Such a mild gelation procedure benefits the administration, 3D encapsulation and proliferation of cells of the hydrogels. The application of the PVA hydrogel was demonstrated by effective cartilage repair.

摘要

在这项工作中,我们开发了一种非常简便的策略,即双动态交联,以制备高性能可注射水凝胶。聚乙烯醇(PVA)通过4-羧基苯硼酸(CPBA)在钙离子存在下通过生成硼酸键和离子相互作用进行交联,从而桥接聚合物链。CPBA的动态聚集可在水凝胶基质内部诱导自增强效应,导致水凝胶的高拉伸模量和压缩模量超过1.0 MPa,其中最高压缩模量可达5.6 MPa。同时,水凝胶的机械性能可以得到广泛而精确的调节。并且由于柔性的PVA网络,该水凝胶具有超强韧性,其最大拉伸应变、拉伸和压缩断裂能分别高达1600%、600 kJ/m²和25 kJ/m²。此外,动态键合克服了在生理条件下使用商用双注射器套件形成注射型强水凝胶的障碍,例如获得超过1.0 MPa的模量和超过40 kJ/m²的断裂能。这种温和的凝胶化过程有利于水凝胶的给药、三维封装和细胞增殖。PVA水凝胶的应用通过有效的软骨修复得到了证明。

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