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Mimicking the Annulus Fibrosus Using Electrospun Polyester Blended Scaffolds

机译:使用电纺聚酯共混支架模拟纤维环

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摘要

Treatments to alleviate chronic lower back pain, caused by intervertebral disc herniation as a consequence of degenerate annulus fibrosus (AF) tissue, fail to provide long-term relief and do not restore tissue structure or function. This study aims to mimic the architecture and mechanical environment of AF tissue using electrospun fiber scaffolds made from synthetic biopolymers-poly(ε-caprolactone) (PCL) and poly(L-lactic) acid (PLLA). Pure polymer and their blends (PCL%:PLLA%; 80:20, 50:50, and 20:80) are studied and material properties-fiber diameter, alignment, % crystallinity, tensile strength, and water contact angle-characterized. Tensile properties of fibers angled at 0°, 30°, and 60° (single layer scaffolds), and ±0°, ±30°, and ±60° (bilayer scaffolds) yield significant differences, with PCL being significantly stiffer with the addition of PLLA, and bilayer scaffolds considerably stronger. Findings suggest PCL:PLLA 50:50 fibers are similar to human AF properties. Furthermore, in vitro culture of AF cells on 50:50 fibers demonstrates attachment and proliferation over seven days. The optimal polymer composition for production of scaffolds that closely mimic AF tissue both structurally, mechanically, and which also support and guide favorable cell phenotype is identified. This study takes a step closer towards successful AF tissue engineering and a long-term treatment for sufferers of chronic back pain.
机译:减轻由退化的纤维环(AF)组织引起的椎间盘突出症引起的慢性下背部疼痛的治疗无法长期缓解并且不能恢复组织结构或功能。这项研究的目的是使用由合成生物聚合物-聚(ε-己内酯)(PCL)和聚(L-乳酸)酸(PLLA)制成的电纺纤维支架来模仿房颤组织的结构和机械环境。研究了纯聚合物及其共混物(PCL%:PLLA%; 80:20、50:50和20:80),并表征了材料性能-纤维直径,排列,%结晶度,拉伸强度和水接触角。角度分别为0°,30°和60°(单层支架),±0°,±30°和±60°(双层支架)的纤维的拉伸性能产生显着差异,添加PCL会明显变硬PLLA和双层脚手架要坚固得多。研究结果表明PCL:PLLA 50:50纤维与人类AF的特性相似。此外,在50:50的纤维上进行AF细胞的体外培养显示了7天的附着和增殖。确定了用于生产支架的最佳聚合物组合物,所述支架在结构上,机械上紧密模拟AF组织,并且还支持和引导有利的细胞表型。这项研究向成功的房颤组织工程和长期治疗慢性腰痛的患者迈进了一步。

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