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Novel Magnetic Cell-Scaffold Construct with and without Magnetic Field Enhanced Osteogenesis of Stem Cells and Formation of new bone

机译:具有和不具有磁场的新型磁性细胞支架构建体增强了干细胞的成骨作用和新骨的形成

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摘要

Superparamagnetic iron oxide nanoparticles (IONPs) are promising bioactive additives to fabricate magnetic scaffolds for bone tissue engineering. Their similarity to macromolecules and many unique properties indicate that functional nanoparticles have promising potential for the modification and improvement of traditional scaffolds to obtain excellent biocompatibility, tunable stiffness, physical sensing, and stimulus-response capabilities. Furthermore, magnetic stimulations from static magnetic fields (SMFs) and electromagnetic fields (EMFs) can also substantially improve bone repair and regeneration. Therefore, the objectives of this study were to: (1) develop a novel magnetic IONP incorporated scaffold for bone tissue engineering, and (2) investigate the effects of IONP-incorporation and SMF application on the proliferation, osteogenic differentiation and bone mineral synthesis of stem cells like human dental pulp stem cells (hDPSCs) seeded on IONP-incorporated scaffold for the first time. Our results demonstrate that the novel CPC functionalized with IONPs is promising to promote osteoinduction and bone regeneration.
机译:超顺磁性氧化铁纳米粒子(IONPs)是有前途的生物活性添加剂,可用于制造用于骨组织工程的磁性支架。它们与大分子的相似性和许多独特的性能表明,功能性纳米颗粒具有有望修饰和改进传统支架的潜力,以获得出色的生物相容性,可调刚度,物理感应和刺激反应能力。此外,来自静磁场(SMF)和电磁场(EMF)的磁刺激也可以大大改善骨骼修复和再生。因此,本研究的目的是:(1)开发一种新型的结合IONP的磁性支架用于骨组织工程,以及(2)研究IONP结合和SMF的应用对人骨增殖,成骨分化和骨矿物质合成的影响。像人类牙髓干细胞(hDPSCs)一样的干细胞首次植入IONP支架。我们的结果表明,用IONPs功能化的新型CPC有望促进骨诱导和骨再生。

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