首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >3D-printed magnetic Fe3O4/MBG/PCL composite scaffolds with multifunctionality of bone regeneration, local anticancer drug delivery and hyperthermia
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3D-printed magnetic Fe3O4/MBG/PCL composite scaffolds with multifunctionality of bone regeneration, local anticancer drug delivery and hyperthermia

机译:3D打印的磁性Fe3O4 / MBG / PCL复合支架具有骨再生,局部抗癌药物传递和热疗的多功能性

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摘要

In this study, three-dimensional (3D) magnetic Fe3O4 nanoparticles containing mesoporous bioactive glass/ polycaprolactone (Fe3O4/MBG/PCL) composite scaffolds have been fabricated by the 3D-printing technique. The physiochemical properties, in vitro bioactivity, anticancer drug delivery, mechanical strength, magnetic heating ability and cell response of Fe3O4/MBG/PCL scaffolds were systematically investigated. The results showed that Fe3O4/MBG/PCL scaffolds had uniform macropores of 400 urn, high porosity of 60% and excellent compressive strength of 13-16 MPa. The incorporation of magnetic Fe3O4 nanoparticles into MBG/PCL scaffolds did not influence their apatite mineralization ability but endowed excellent magnetic heating ability and significantly stimulated proliferation, alkaline phosphatase (ALP) activity, osteogenesis-related gene expression (RUNX2, OCN, BSP, BMP-2 and Col-1) and extra-cellular matrix (ECM) mineralization of human bone marrow-derived mesenchymal stem cells (h-BMSCs). Moreover, using doxorubicin (DOX) as a model anticancer drug, Fe3O4/MBG/PCL scaffolds exhibited a sustained drug release for use in local drug delivery therapy. Therefore, the 3D-printed Fe3O4/MBG/PCL scaffolds showed the potential multifunctionality of enhanced osteogenic activity, local anticancer drug delivery and magnetic hyperthermia.
机译:在这项研究中,通过3D打印技术制备了包含中孔生物活性玻璃/聚己内酯(Fe3O4 / MBG / PCL)复合支架的三维(3D)磁性Fe3O4纳米颗粒。系统地研究了Fe3O4 / MBG / PCL支架的理化性质,体外生物活性,抗癌药的传递,机械强度,磁加热能力和细胞反应。结果表明,Fe3O4 / MBG / PCL支架具有均匀的大孔400微米,高孔隙率60%和出色的抗压强度13-16 MPa。磁性Fe3O4纳米粒子掺入MBG / PCL支架中不会影响其磷灰石矿化能力,但具有出色的磁性加热能力并显着刺激增殖,碱性磷酸酶(ALP)活性,成骨相关基因的表达(RUNX2,OCN,BSP,BMP- 2和Col-1)和人骨髓源间充质干细胞(h-BMSCs)的细胞外基质(ECM)矿化作用。此外,使用阿霉素(DOX)作为模型抗癌药,Fe3O4 / MBG / PCL支架表现出持续的药物释放,可用于局部药物递送治疗。因此,3D打印的Fe3O4 / MBG / PCL支架显示出增强成骨活性,局部抗癌药物传递和磁热疗的潜在多功能性。

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