纳米纤维
脚手架
丝绸
透明质酸
细胞外基质
组织工程
化学
互连性
材料科学
表面改性
糖胺聚糖
粘附
再生(生物学)
纳米技术
生物医学工程
生物化学
细胞生物学
复合材料
解剖
人工智能
物理化学
生物
医学
计算机科学
作者
Yuling Li,Zixin Gao,Shunshun Zhou,Lin Zhu,Qiang Zhang,Si Wang,Renchuan You
标识
DOI:10.1016/j.ijbiomac.2023.128762
摘要
Nanofibrous scaffolds mimicking important features of the native extracellular matrix (ECM) provide a promising strategy for tissue regeneration. However, 3D scaffolds mimicking natural protein nanofibers and bioactive glycosaminoglycans remain poorly developed. In this study, a biomimetic nanofibrous scaffold composed of natural silk protein nanofibers and glycosaminoglycan hyaluronic acid (HA) was developed. HA functionalization significantly improved the hydrophilicity and bioactivity of silk nanofibers (SNFs). SNFs can be assembled into nanofibrous aerogel scaffolds with low density and desirable shapes on a large scale. More importantly, with the assistance of HA, the silk nanofibrous aerogel scaffolds with ultra-high porosity, natural bioactivity, and structural stability in aqueous environment can be fabricated. In the protease/hyaluronidase solution, the SNF scaffolds with 10.0 % HA can maintain their monolithic shape for >3 weeks. The silk nanofibrous scaffolds not only imitate the composition of ECM but also mimic the hierarchical structure of ECM, providing a favorable microenvironment for cell adhesion and proliferation. These results indicate that this structurally and functionally biomimetic system is a promising tissue engineering scaffold.
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