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Tubular Scaffold with Shape Recovery Effect for Cell Guide Applications

机译:具有形状恢复效果的管状支架,适用于细胞指南应用

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Tubular scaffolds with aligned polylactic acid (PLA) fibres were fabricated for cell guide applications by immersing rolled PLA fibre mats into a polyvinyl acetate (PVAc) solution to bind the mats. The PVAc solution was also mixed with up to 30 wt % β-tricalcium phosphate (β-TCP) content. Cross-sectional images of the scaffold materials obtained via scanning electron microscopy (SEM) revealed the aligned fibre morphology along with a significant number of voids in between the bundles of fibres. The addition of β-TCP into the scaffolds played an important role in increasing the void content from 17.1% to 25.3% for the 30 wt % β-TCP loading, which was measured via micro-CT (µCT) analysis. Furthermore, µCT analyses revealed the distribution of aggregated β-TCP particles in between the various PLA fibre layers of the scaffold. The compressive modulus properties of the scaffolds increased from 66 MPa to 83 MPa and the compressive strength properties decreased from 67 MPa to 41 MPa for the 30 wt % β-TCP content scaffold. The scaffolds produced were observed to change into a soft and flexible form which demonstrated shape recovery properties after immersion in phosphate buffered saline (PBS) media at 37 °C for 24 h. The cytocompatibility studies (using MG-63 human osteosarcoma cell line) revealed preferential cell proliferation along the longitudinal direction of the fibres as compared to the control tissue culture plastic. The manufacturing process highlighted above reveals a simple process for inducing controlled cell alignment and varying porosity features within tubular scaffolds for potential tissue engineering applications.
机译:通过将轧制的PLA纤维毡浸入聚乙酸乙烯酯(PVAc)溶液中以粘结毡,来制造具有取向聚乳酸(PLA)纤维的管状支架,以用于细胞引导应用。还将PVAc溶液与最高30 wt%的β-磷酸三钙(β-TCP)混合。通过扫描电子显微镜(SEM)获得的支架材料的横截面图像显示出排列的纤维形态以及在纤维束之间的大量空隙。通过Micro-CT(µCT)分析测量,在30%(重量)的β-TCP负载量中,将β-TCP添加到支架中起了重要作用,将空隙含量从17.1%增加到25.3%。此外,μCT分析揭示了聚集的β-TCP颗粒在支架的各个PLA纤维层之间的分布。对于30wt%的β-TCP含量的支架,支架的压缩模量特性从66MPa增加到83MPa,并且压缩强度特性从67MPa减小到41MPa。观察到所产生的支架转变为柔软和柔性形式,其在37℃的磷酸盐缓冲盐水(PBS)介质中浸泡24小时后显示出形状恢复特性。细胞相容性研究(使用MG-63人骨肉瘤细胞系)显示,与对照组织培养塑料相比,沿纤维纵向的优先细胞增殖。上面突出显示的制造过程揭示了一种简单的过程,可以在管状支架中诱导受控的细胞排列并改变孔隙率特征,以进行潜在的组织工程应用。

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