Nanofiber-reinforced bulk hydrogel: preparation and structural, mechanical, and biological properties

材料科学 纳米纤维 极限抗拉强度 复合材料 粘附 抗压强度 复合数 自愈水凝胶 组织工程 生物医学工程 高分子化学 医学
作者
Yu Tien Huang,Xiufang Li,Zhentan Lu,Huan Zhang,Jiangxi Huang,Kun Yan,Dong Wang
出处
期刊:Journal of Materials Chemistry B [Royal Society of Chemistry]
卷期号:8 (42): 9794-9803 被引量:51
标识
DOI:10.1039/d0tb01948h
摘要

Alginate-based hydrogels are increasingly being used as biomaterials for tissue engineering, drug carriers, and wound dressing; however, their poor mechanical strength limits their applications. Nanofiber reinforcement is an effective method for increasing the mechanical strength of hydrogels. However, the macro preparation of nanofiber-reinforced hydrogels with a bulk structure is challenging. Herein, we describe the fabrication of nanofiber-reinforced bulk alginate hydrogel composites. The mechanical properties of hydrogels were significantly improved, and the reinforcement law of nanofiber was systematically studied. The maximum tensile stress (0.76 MPa) was obtained with 30% nanofiber content, which was 87% higher than that of pure alginate hydrogel. The compressive stress of the composite hydrogel exhibited "J-curve" behavior with gradually increasing nanofiber content, which indicated that the composited hydrogels were suitable as biomaterials. Furthermore, in 2 h, the hydrogels killed more than 90% of the bacteria that were present, and the bacteriostatic rate reached 100% after 12 h of treatment. More importantly, the sterile environment continued to be maintained, and the composited hydrogel also had satisfactory cytocompatibility and cell adhesion. Compared with pure alginate hydrogel, the roughness of the composited hydrogel surface was increased, which resulted in stronger cell adhesion. Therefore, the composite hydrogel demonstrated improved mechanical and biological properties, and exhibited the potential for clinical application.
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