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PLA-Based Hybrid and Composite Electrospun Fibrous Scaffolds as Potential Materials for Tissue Engineering

机译:基于PLA的混合和复合电纺纤维支架作为组织工程的潜在材料

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摘要

The aim of the study was to manufacture poly(lactic acid)- (PLA-) based nanofibrous nonwovens that were modified using two types of modifiers, namely, gelatin- (GEL-) based nanofibres and carbon nanotubes (CNT). Hybrid nonwovens consisting of PLA and GEL nanofibres (PLA/GEL), as well as CNT-modified PLA nanofibres with GEL nanofibres (PLA + CNT/GEL), in the form of mats, were manufactured using concurrent-electrospinning technique (co-ES). The ability of such hybrid structures as potential scaffolds for tissue engineering was studied. Both types of hybrid samples and one-component PLA and CNTs-modified PLA mats were investigated using scanning electron microscopy (SEM), water contact angle measurements, and biological and mechanical tests. The morphology, microstructure, and selected properties of the materials were analyzed. Biocompatibility and bioactivity in contact with normal human osteoblasts (NHOst) were studied. The coelectrospun PLA and GEL nanofibres retained their structures in hybrid samples. Both types of hybrid nonwovens were not cytotoxic and showed better osteoinductivity in comparison to scaffolds made from pure PLA. These samples also showed significantly reduced hydrophobicity compared to one-component PLA nonwovens. The CNT-contained PLA nanofibres improved mechanical properties of hybrid samples and such a 3D system appears to be interesting for potential application as a tissue engineering scaffold.
机译:该研究的目的是制造使用两种类型的改性剂,即基于明胶 - (凝胶)的纳米纤维和碳纳米管(CNT)来制造聚(乳酸) - (PLA-)纳米纤维非织造织物。由PLA和凝胶纳米纤维(PLA /凝胶)组成的杂化非织造织物以及垫子形式的凝胶纳米纤维(PLA + CNT /凝胶)的CNT改性PLA纳米纤维(CO-ES)制造)。研究了这种混合结构作为组织工程的潜在支架的能力。使用扫描电子显微镜(SEM),水接触角测量和生物和机械测试,研究了两种类型的杂化样品和单组分PLA和CNTS改性PLA垫。分析了材料的形态学,微观结构和选择性质。研究了与正常人成骨细胞(NHOST)接触的生物相容性和生物活性。 Coelecthun PLA和凝胶纳米纤维在杂交样品中保留了它们的结构。两种类型的杂交非织造织物不是细胞毒性,与由纯PLA制成的支架相比,呈骨诱导性更好。与单组分PLA非织造织物相比,这些样品还显示出疏水性显着降低。 CNT含有的PLA纳米纤维改善了杂种样品的机械性能,并且这种3D系统似乎是有趣的,因为潜在的应用作为组织工程支架。

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