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通过物理交联和酶交联相结合的方法制备具有增强机械性能的丝素蛋白/透明质酸水凝胶。

Preparation of silk fibroin/hyaluronic acid hydrogels with enhanced mechanical performance by a combination of physical and enzymatic crosslinking.

机构信息

Chongqing Key Laboratory of Nano/Micro Composite Materials and Devices, School of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing, P. R. China.

Chongqing Engineering Laboratory of Nano/Micro Biomedical Detection Technology, School of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing, P. R. China.

出版信息

J Biomater Sci Polym Ed. 2021 Aug;32(12):1635-1653. doi: 10.1080/09205063.2021.1932070. Epub 2021 Jun 24.

Abstract

Silk fibroin (SF) from is a natural polymer with exceptional biocompatibility, low immunogenicity, and ease of processability. SF-based hydrogels have been identified as one of the most attractive candidate scaffolds for tissue engineering and can be fabricated through various physical or chemical crosslinking approaches. However, conventional SF hydrogels may suffer from several major drawbacks, such as structural inhomogeneity, poor mechanical properties or utilization of cytotoxic reagents. Herein, a dually crosslinked SF-based composite hydrogel with enhanced strength and elasticity was fabricated by inducing the formation of uniform and small β-sheet structures by sonication in a restricted enzymatic precrosslinked network. The composite hydrogel not only demonstrated concentration-dependent stiffness variation but also exhibited time-dependent changes in toughness behavior. Moreover, subsequent experimental results revealed that the hydrogels exhibit other advantages, including high water retention capacity and long-term stability under physiological conditions. Finally, a three-dimensional (3 D) construct of the cell-laden hydrogel was fabricated, confirming that the composite hydrogel could provide a biocompatible microenvironment with dynamically changing mechanical properties. The combination of physical and enzymatic crosslinking strategies contributes to a biocompatible composite hydrogel with unique mechanical properties that holds great potential for use in tissue engineering and regenerative medicine.

摘要

丝素蛋白(SF)是一种具有优异生物相容性、低免疫原性和易于加工性的天然聚合物。基于 SF 的水凝胶已被确定为组织工程最有吸引力的候选支架之一,可通过各种物理或化学交联方法制备。然而,传统的 SF 水凝胶可能存在几个主要缺点,例如结构不均匀、机械性能差或使用细胞毒性试剂。本文通过超声诱导受限酶预交联网络中形成均匀且小的 β-折叠结构,制备了一种具有增强强度和弹性的双交联 SF 基复合水凝胶。该复合水凝胶不仅表现出与浓度相关的刚度变化,而且表现出与时间相关的韧性行为变化。此外,后续的实验结果表明,水凝胶还具有其他优点,包括高保水能力和在生理条件下的长期稳定性。最后,构建了细胞负载水凝胶的三维(3D)结构,证实了复合水凝胶可以提供具有动态变化机械性能的生物相容微环境。物理和酶交联策略的结合为具有独特机械性能的生物相容复合水凝胶提供了可能,为组织工程和再生医学的应用提供了广阔的前景。

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