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一种自修复纳米复合双网络细菌纳米纤维素/明胶水凝胶,用于三维打印。

A self-healing nanocomposite double network bacterial nanocellulose/gelatin hydrogel for three dimensional printing.

机构信息

School of Engineering, Deakin University, Geelong, Victoria 3216, Australia.

School of Engineering, Deakin University, Geelong, Victoria 3216, Australia.

出版信息

Carbohydr Polym. 2023 Aug 1;313:120879. doi: 10.1016/j.carbpol.2023.120879. Epub 2023 Apr 6.

Abstract

Extrusion-based three-dimensional (3D) printing of gelatin is important for additive manufactured tissue engineering scaffolds, but gelatin's thermal instability has remained an ongoing challenge. The gelatin tends to suddenly collapse at mild temperatures, which is a significant limitation for using it at physiological temperature of 37 °C. Hence, fabrication of a thermo-processable gelatin hydrogel adapted for extrusion-based additive manufacturing is still a challenge. To achieve this, a self-healing nanocomposite double-network (ncDN) gelatin hydrogel was fabricated with high thermo-processability, shear-thinning, mechanical strength, self-healing, self-recovery, and biocompatibility. To do this, amino group-rich gelatin was first created by combining gelatin with carboxyl methyl chitosan. Afterwards, a self-healing ncDN gelatin hydrogel was formed via an in-situ formation of imine bonds between the blend of gelatin/carboxyl methyl chitosan (Gel/CMCh) and dialdehyde-functionalized bacterial nanocellulose (dBNC). dBNC plays as nanofiber cross-linkers capable of simultaneously crosslinking and reinforcing the double networks of Gel/CMCh through formation of dynamic 3D imine bonds. Based on our findings, our self-healing ncDA gelatin hydrogel displayed great potential as a promising ink for additive manufactured tissue engineering scaffolds.

摘要

基于挤压的明胶三维(3D)打印对于添加剂制造组织工程支架很重要,但明胶的热不稳定性仍然是一个持续存在的挑战。明胶在温和的温度下容易突然塌陷,这对于在 37°C 的生理温度下使用是一个重大限制。因此,制造适用于基于挤压的添加剂制造的热加工明胶水凝胶仍然是一个挑战。为了实现这一目标,制备了具有高热加工性、剪切稀化性、机械强度、自修复、自恢复和生物相容性的自修复纳米复合双网络(ncDN)明胶水凝胶。为此,首先通过将明胶与羧甲基壳聚糖结合,制备了富含氨基的明胶。然后,通过在明胶/羧甲基壳聚糖(Gel/CMCh)和醛基功能化细菌纳米纤维素(dBNC)的混合物之间形成亚胺键,形成自修复 ncDN 明胶水凝胶。dBNC 作为纳米纤维交联剂,能够通过形成动态 3D 亚胺键同时交联和增强 Gel/CMCh 的双网络。基于我们的发现,我们的自修复 ncDA 明胶水凝胶作为添加剂制造组织工程支架的有前途的墨水具有很大的潜力。

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