Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana 47907, United States.
Biomacromolecules. 2011 Jan 10;12(1):57-65. doi: 10.1021/bm101004r. Epub 2010 Dec 3.
Restoring continuity to severed peripheral nerves is crucial to regeneration and enables functional recovery. However, the two most common agents for coaptation, sutures and fibrin glues, have drawbacks such as inflammation, pathogenesis, and dehiscence. Chitosan-based adhesives are a promising alternative, reported to have good cytocompatibility and favorable immunogenicity. A photo-cross-linkable hydrogel based on chitosan is proposed as a new adhesive for peripheral nerve anastomosis. Two Az-chitosans were synthesized by conjugating 4-azidobenzoic acid with low (LMW, 15 kDa) and high (HMW, 50-190 kDa) molecular weight chitosans. These solutions formed a hydrogel in less than 1 min under UV light. The LMW Az-chitosan was more tightly cross-linked than the HMW variant, undergoing significantly less swelling and possessing a higher rheological storage modulus, and both Az-chitosan gels were stiffer than commercial fibrin glue. Severed nerves repaired by Az-chitosan adhesives tolerated longitudinal forces comparable or superior to fibrin glue. Adhesive exposure to intact nerves and neural cell culture showed both Az-chitosans to be nontoxic in the acute (minutes) and chronic (days) time frames. These results demonstrate that Az-chitosan hydrogels are cytocompatible and mechanically suitable for use as bioadhesives in peripheral neurosurgeries.
修复切断的周围神经对于再生和功能恢复至关重要。然而,最常用的两种吻合剂,缝线和纤维蛋白胶,存在炎症、发病机制和裂开等缺点。壳聚糖基胶粘剂是一种很有前途的替代品,据报道具有良好的细胞相容性和适宜的免疫原性。一种基于壳聚糖的光交联水凝胶被提出作为周围神经吻合的新型胶粘剂。通过将 4-叠氮苯甲酸与低分子量(LMW,15 kDa)和高分子量(HMW,50-190 kDa)壳聚糖偶联,合成了两种 Az-壳聚糖。这些溶液在紫外光下不到 1 分钟即可形成水凝胶。LMW Az-壳聚糖的交联比 HMW 变体更紧密,溶胀程度显著降低,流变存储模量更高,两种 Az-壳聚糖凝胶都比商业纤维蛋白胶更硬。用 Az-壳聚糖胶粘剂修复的切断神经能够耐受与纤维蛋白胶相当或更高的纵向力。对完整神经和神经细胞培养的胶粘剂暴露表明,两种 Az-壳聚糖在急性(分钟)和慢性(天)时间范围内均无毒性。这些结果表明,Az-壳聚糖水凝胶具有细胞相容性和机械性能,适用于周围神经外科学中的生物胶粘剂。