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快速且稳健的壳聚糖/丝素蛋白复合材料实现高生物相容性骨螺钉。

High biocompatible bone screw enabled by a rapid and robust chitosan/silk fibroin composite material.

机构信息

State Key Laboratory for Hubei New Textile Materials and Advanced Processing Technologies, School of Textile Science and Engineering, Wuhan Textile University, Wuhan 430200, China.

State Key Laboratory for Hubei New Textile Materials and Advanced Processing Technologies, School of Textile Science and Engineering, Wuhan Textile University, Wuhan 430200, China.

出版信息

Int J Biol Macromol. 2024 May;267(Pt 2):131519. doi: 10.1016/j.ijbiomac.2024.131519. Epub 2024 Apr 10.

Abstract

Hydrogel has attracted tremendous attentions due to its excellent biocompatibility and adaptability in biomedical field. However, it is challenging by the conflicts between inadequate mechanical properties and service requirements. Herein, a rapid and robust hydrogel was developed by interpenetrating networks between chitosan and silk fibroin macromolecules. Thanks to these unique networks, the chitosan-based hydrogel exhibited superior mechanical performances. The maximum breaking strength, Young's modulus and swelling ratio of the hydrogel were 1187.8 kPa, 383.1 MPa and 4.5 % respectively. The hydrogel also supported the proliferation of human umbilical vein endothelial cells for 7 days. Notably, the hydrogel was easily molded into bone screw, and demonstrated compressive strengths of 45.7 MPa, Young's modulus of 675.6 MPa, respectively. After 49-day biodegradation, the residual rate of the screw in collagenase I solution was up to 89.6 % of the initial weight. In vitro, the screws not only had high resistance to biodegradation, but also had outstanding biocompatibility of osteoblast. This study provided a promising physical-chemical double crosslinking strategy to build orthopedic materials, holding a great potential in biomedical devices.

摘要

水凝胶由于其在生物医学领域中的出色的生物相容性和适应性而引起了极大的关注。然而,其机械性能和使用要求之间的冲突给它带来了挑战。在此,通过壳聚糖和丝素大分子的互穿网络,开发了一种快速且坚固的水凝胶。由于这些独特的网络,基于壳聚糖的水凝胶表现出了卓越的机械性能。该水凝胶的最大断裂强度、杨氏模量和溶胀比分别为 1187.8 kPa、383.1 MPa 和 4.5%。该水凝胶还支持人脐静脉内皮细胞增殖 7 天。值得注意的是,该水凝胶很容易模制成骨螺钉,其抗压强度为 45.7 MPa,杨氏模量为 675.6 MPa。在 49 天的生物降解后,胶原酶 I 溶液中螺钉的残留率高达初始重量的 89.6%。体外研究表明,这些螺钉不仅具有较高的抗生物降解能力,而且对成骨细胞具有出色的生物相容性。该研究提供了一种有前途的物理化学双重交联策略,用于构建骨科材料,在生物医学设备方面具有巨大的潜力。

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