Abdal-Hay Abdalla, Abdelrazek Khalil Khalil, Al-Jassir Fawzi F, Gamal-Eldeen Amira M
Griffith University-Gold Coast Campus, Griffith Health Centre, G40_7.81, Parklands Drive, QLD 4222, Australia. Department of Engineering Materials and Mechanical Design, Faculty of Engineering, South Valley University, Qena, Egypt.
Biomed Mater. 2017 May 10;12(3):035002. doi: 10.1088/1748-605X/aa6306.
Enhancing the cytocompatibility profiles, including cell attachment, growth and viability, of designed synthetic scaffolds, has a pivotal role in tissue engineering applications. Polymer blending is one of the most effective methods for providing new desirable biomaterials for tissue scaffolds. This article reports a novel polyamide 6/poly(ε-caprolactone) (PA6/PCL) blends solution which was fabricated to create composite fibrous tissue scaffolds by varying the concentration ratios of PA6 and PCL. Highly porous blends of fibrous scaffold were fabricated and their suitability as cell-support for EA.hy926 human endothelial cells was studied. Our results demonstrated that the unique nanoscale morphological properties and tune porosity of the blends scaffold were controlled. We found that these properties are mainly dependent on the PA6/PCL blending viscosity value, and the viscosity of the blending solution has an intense effect on the properties of the blends scaffold. The influence of the scaffolds extraction fluids and the scaffold direct contact of both the metabolic viability and the DNA integrity of EA.hy926 endothelial cells, as well as the cell/scaffold interaction analysis by scanning electron microscope, after different co-culturing intervals, demonstrated that PA6/PCL blend scaffolds showed different behaviors. Blend scaffolds of PA6/PCL of 90:10 ratio proved to be excellent endothelial cell carriers, which provided a good cell morphology, DNA integrity and viability, induced DNA synthesis/replication, and enhanced cell proliferation, attachment, and invasion. These results indicate that blends of PA6/PCL composite fibers are a promising 3D substitute for the next generation of synthetic tissue scaffolds that could soon find clinical applications.
提高设计合成支架的细胞相容性,包括细胞附着、生长和活力,在组织工程应用中具有关键作用。聚合物共混是为组织支架提供新型理想生物材料的最有效方法之一。本文报道了一种新型聚酰胺6/聚(ε-己内酯)(PA6/PCL)共混溶液,该溶液通过改变PA6和PCL的浓度比来制备复合纤维组织支架。制备了具有高孔隙率的纤维支架共混物,并研究了它们作为EA.hy926人内皮细胞细胞载体的适用性。我们的结果表明,共混支架独特的纳米级形态特性和可调孔隙率得到了控制。我们发现这些特性主要取决于PA6/PCL共混物的粘度值,并且共混溶液的粘度对共混支架的性能有强烈影响。在不同的共培养时间间隔后,研究了支架提取液以及支架与EA.hy926内皮细胞的代谢活力和DNA完整性的直接接触,以及通过扫描电子显微镜进行的细胞/支架相互作用分析,结果表明PA6/PCL共混支架表现出不同的行为。90:10比例的PA6/PCL共混支架被证明是优秀的内皮细胞载体,它提供了良好的细胞形态、DNA完整性和活力,诱导DNA合成/复制,并增强细胞增殖、附着和侵袭。这些结果表明,PA6/PCL复合纤维共混物是下一代合成组织支架的有前途的3D替代品,可能很快会找到临床应用。