Department of Biomaterials and Tissue Engineering, School of Advanced Technologies in Medicine, Isfahan University of Medical Sciences, Isfahan, Iran.
Institute of Polymers, Composites, and Biomaterials, National Research Council, Naples, Italy.
J Mater Sci Mater Med. 2024 Sep 30;35(1):58. doi: 10.1007/s10856-024-06828-5.
Tissue engineering scaffolds are three-dimensional structures that provide an appropriate environment for cellular attachment, proliferation, and differentiation. Depending on their specific purpose, these scaffolds must possess distinct features, including appropriate mechanical properties, porosity, desired degradation rate, and cell compatibility. This investigation aimed to fabricate a new nanocomposite scaffold using a 3D printing technique composed of poly(ε-caprolactone) (PCL)/Gelatin (GEL)/ordered mesoporous calcium-magnesium silicate (om-CMS) particles. Different weight ratios of om-CMS were added and optimized, and a series of scaffolds were constructed for comparison purposes, including PCL 50%/Gel 50%, PCL 50%/Gel 45%/om-CMS%5, and PCL 50%/Gel 40%/om-CMS%10. The optimized weight ratio of om-CMS was 10% without leaving behind negative effects on the filaments' structure. The scaffolds' physical and chemical properties were assessed using various techniques, and their degradation rate, bioactivity potential, cell viability, attachment, and ALP activity were evaluated in vitro. The results demonstrated that the PCL 50%/Gel 40%/om-CMS10% scaffold had promising potential for further studies in bone tissue regeneration.
组织工程支架是为细胞附着、增殖和分化提供适当环境的三维结构。根据其特定目的,这些支架必须具有独特的特性,包括适当的机械性能、孔隙率、所需的降解率和细胞相容性。本研究旨在使用由聚己内酯(PCL)/明胶(GEL)/有序介孔钙镁硅酸盐(om-CMS)颗粒组成的 3D 打印技术制造一种新型纳米复合材料支架。添加并优化了不同重量比的 om-CMS,并构建了一系列支架进行比较,包括 PCL 50%/Gel 50%、PCL 50%/Gel 45%/om-CMS%5 和 PCL 50%/Gel 40%/om-CMS%10。om-CMS 的优化重量比为 10%,而不会对纤维结构产生负面影响。使用各种技术评估支架的物理和化学性质,并在体外评估其降解率、生物活性潜力、细胞活力、附着和 ALP 活性。结果表明,PCL 50%/Gel 40%/om-CMS10%支架在骨组织再生的进一步研究中具有很大的潜力。