首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >The controlled design of electrospun PCL/silk/quercetin fibrous tubular scaffold using a modified wound coil collector and L-shaped ground design for neural repair
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The controlled design of electrospun PCL/silk/quercetin fibrous tubular scaffold using a modified wound coil collector and L-shaped ground design for neural repair

机译:电纺器PCL /丝/槲皮素纤维管状支架的控制设计使用改进的缠绕线圈收集器和L形地面设计进行神经修复

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摘要

Asymmetrically porous and aligned fibrous tubular conduit with selective permeability as a biomimetic neural scaffold was manufactured using polycaprolactone (PCL), silk, and quercetin by a modified electrospinning method. The outer surface of the randomly oriented fibrous scaffold had microscale pores that could prevent fibrous tissue invasion (FTI), but could permeate neurotrophic factors, nutrients, and oxygen. The inner surface of the aligned fibrous scaffold can be favorable for neurite outgrowth, because of their superior neural cell attachment, migration, and directional growth. In vitro and in vivo studies have demonstrated the therapeutic effect of Quercetin, a ubiquitous flavonoid widely distributed in plants, on neuropathy, by modulating the expression of NRF-2-dependent antioxidant responsive elements. In this study, the controlled inner and outer surface geometry of the 0.5, 1.0, and 2.0 wt% quercetin-containing electrospun PCL/silk fibrous tubular scaffold fabricated via a modified wound coil collector and L-shaped ground design (WCC-LG) was characterized by FE-SEM, TEM, FFT, FT-IR, and XRD. In addition, two types of neural cell lines, PC12 and S42, were used to evaluate the cell proliferation rate of the different amount of quercetin-loaded PCL/silk tubular scaffolds.
机译:通过通过改性的静电纺丝方法制造具有选择性渗透性的具有选择性渗透性的不对称多孔和对准的纤维管状导管,用聚己内酯(PCL),丝和槲皮素制造。随机取向的纤维支架的外表面具有可预防纤维组织侵袭(FTI)的微观孔,但可以渗透神经营养因子,营养素和氧气。由于其优异的神经细胞附着,迁移和定向生长,所对的纤维支架的内表面可以有利于神经突的过度。体外和体内研究表明,通过调节NRF-2依赖性抗氧化响应性元素的表达,槲皮素,普遍存在的黄酮类化合物在植物中广泛分布的植物中广泛分布的治疗作用。在本研究中,通过改性缠绕线圈收集器和L形地面设计(WCC-LG)制造的0.5,1.0和2.0wt%含槲皮素的0.5,1.0和2.0wt%槲皮素的电纺器PCL /丝纤维管状支架的控制内和外表面几何形状以FE-SEM,TEM,FFT,FT-IR和XRD为特征。另外,两种类型的神经细胞系,PC12和S42,用于评估不同量的槲皮素加载的PCL /丝管状支架的细胞增殖速率。

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