Wang Yu-fei, Guo Hong-feng, Ying Da-jun
Department of Anatomy, Key Lab of Biomechanics and Tissue Engineering Third Military Medical University, Chongqing, 400038, China; Department of Neurosurgery, Kunming Military General Hospital, Kunming, 650000, China.
J Biomed Mater Res B Appl Biomater. 2013 Nov;101(8):1359-66. doi: 10.1002/jbm.b.32953. Epub 2013 May 17.
Dural closure after the neurosurgery can prevent postoperative complications. Although many types of dural substitute have been developed, most of them lack functional and structural characteristics compared with the natural dura mater. In this study, we used electrospinning method to fabricate a multilayer scaffold to promote dural repair. The inner layer of the scaffold that faces the brain tissue is composed of poly-lactic acid (PLA) to reduce tissue adhesion. The middle layer of the scaffold is composed of poly-ɛ-caprolactone and PLA, which provides a watertight seal. The outer layer of the scaffold contains a large amount of collagen to promote cell attachment and proliferation. The results from in vitro study and an animal model have shown that this multilayer fibrous scaffold has sufficient mechanic strength and biochemical properties to enhance dural repair. Therefore, fabrication of scaffold with multiple functional and structural layers may provide a novel approach for tissue engineering.
神经外科手术后的硬脑膜闭合可预防术后并发症。尽管已经开发出多种类型的硬脑膜替代物,但与天然硬脑膜相比,它们大多缺乏功能和结构特性。在本研究中,我们使用静电纺丝法制备了一种多层支架以促进硬脑膜修复。面向脑组织的支架内层由聚乳酸(PLA)组成,以减少组织粘连。支架的中间层由聚己内酯和PLA组成,可提供防水密封。支架的外层含有大量胶原蛋白,以促进细胞附着和增殖。体外研究和动物模型的结果表明,这种多层纤维支架具有足够的机械强度和生化特性来增强硬脑膜修复。因此,制备具有多种功能和结构层的支架可能为组织工程提供一种新方法。