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一种具有微/纳米结构的仿生分级小肠黏膜下层-壳聚糖海绵/壳聚糖水凝胶支架,用于硬脑膜修复。

A biomimetic hierarchical small intestinal submucosa-chitosan sponge/chitosan hydrogel scaffold with a micro/nano structure for dural repair.

机构信息

Key Laboratory of Biomechanics and Mechanobiology (Beihang University), Ministry of Education Beijing Advanced Innovation Center for Biomedical Engineering School of Biological Science and Medical Engineering, Beihang University, Beijing, 100083, China.

School of Medical Science and Engineering, Beihang University, Beijing, 100191, China.

出版信息

J Mater Chem B. 2021 Sep 29;9(37):7821-7834. doi: 10.1039/d1tb00948f.

Abstract

The dura mater is an essential barrier to protect the brain tissue and the dural defects caused by accidents can lead to serious complications. Various materials have been applied to dural repair, but it remains a challenge to perfectly match the structure and properties of the natural dura mater. Small intestinal submucosa has been developed for dural repair because of its excellent biocompatibility and biological activity, but its application is tremendously limited by the rapid degradation rate. Chitosan has also been broadly investigated in tissue repair, but the traditional chitosan hydrogels exhibit poor mechanical properties. A nanofiber chitosan hydrogel can be constructed based on an alkaline solvent, which is equipped with surprisingly high strength. Therefore, based on the bilayer structure of the natural dura mater, a biomimetic hierarchical small intestinal submucosa-chitosan sponge/chitosan hydrogel scaffold with a micro/nano structure was fabricated, which possessed a microporous structure in the upper sponge and a nanofiber structure in the lower hydrogel. The degradation rate was remarkably reduced compared with that of the small intestinal submucosa in the enzymatic degradation experiment . Meanwhile, the chitosan nanofibers brought high mechanical strength to the bilayer scaffold. Moreover, the hierarchical micro/nano structure and the active factors in the small intestinal submucosa have a fantastic effect on promoting the proliferation of fibroblasts and vascular endothelial cells. The bilayer scaffold showed good histocompatibility in the experiment of subcutaneous implantation in rats. Thus, the biomimetic hierarchical small intestinal submucosa-chitosan sponge/chitosan hydrogel scaffold with micro/nano structure simulates the structure of the natural dura mater and possesses properties with excellent performance, which has high practical value for dural repair.

摘要

硬脑膜是保护脑组织的重要屏障,意外导致的硬脑膜缺损可导致严重的并发症。各种材料已被应用于硬脑膜修复,但要完美匹配天然硬脑膜的结构和性能仍然是一个挑战。由于其良好的生物相容性和生物活性,小肠黏膜下层已被开发用于硬脑膜修复,但由于其快速降解率,其应用受到极大限制。壳聚糖在组织修复中也得到了广泛研究,但传统的壳聚糖水凝胶表现出较差的机械性能。一种基于碱性溶剂的纳米纤维壳聚糖水凝胶可以构建,它具有惊人的高强度。因此,基于天然硬脑膜的双层结构,制备了具有微纳结构的仿生分级小肠黏膜下层-壳聚糖海绵/壳聚糖水凝胶支架,其上部为海绵状微孔结构,下部为水凝胶纳米纤维结构。与小肠黏膜下层在酶降解实验中的降解率相比,降解率显著降低。同时,壳聚糖纳米纤维为双层支架带来了较高的机械强度。此外,分层的微纳结构和小肠黏膜下层中的活性因子对促进成纤维细胞和血管内皮细胞的增殖有很好的效果。在大鼠皮下植入实验中,双层支架显示出良好的组织相容性。因此,具有微纳结构的仿生分级小肠黏膜下层-壳聚糖海绵/壳聚糖水凝胶支架模拟了天然硬脑膜的结构,具有性能优异的特性,对硬脑膜修复具有很高的实用价值。

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