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3D Superparamagnetic Scaffolds for Bone Mineralization under Static Magnetic Field Stimulation

机译:用于静磁场刺激下骨矿化的3D超顺磁性支架

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We reported on three-dimensional (3D) superparamagnetic scaffolds that enhanced the mineralization of magnetic nanoparticle-free osteoblast cells. The scaffolds were fabricated with submicronic resolution by laser direct writing via two photons polymerization of Ormocore/magnetic nanoparticles (MNPs) composites and possessed complex and reproducible architectures. MNPs with a diameter of 4.9 ± 1.5 nm and saturation magnetization of 30 emu/g were added to Ormocore, in concentrations of 0, 2 and 4 mg/mL. The homogenous distribution and the concentration of the MNPs from the unpolymerized Ormocore/MNPs composite were preserved after the photopolymerization process. The MNPs in the scaffolds retained their superparamagnetic behavior. The specific magnetizations of the scaffolds with 2 and 4 mg/mL MNPs concentrations were of 14 emu/g and 17 emu/g, respectively. The MNPs reduced the shrinkage of the structures from 80.2 ± 5.3% for scaffolds without MNPs to 20.7 ± 4.7% for scaffolds with 4 mg/mL MNPs. Osteoblast cells seeded on scaffolds exposed to static magnetic field of 1.3 T deformed the regular architecture of the scaffolds and evoked faster mineralization in comparison to unstimulated samples. Scaffolds deformation and extracellular matrix mineralization under static magnetic field (SMF) exposure increased with increasing MNPs concentration. The results are discussed in the frame of gradient magnetic fields of ~3 × 10 ?4 T/m generated by MNPs over the cells bodies.
机译:我们报道了三维(3D)超顺磁性支架,该支架增强了无磁性纳米颗粒的成骨细胞的矿化作用。通过Ormocore /磁性纳米颗粒(MNPs)复合材料的两次光子聚合,通过激光直接写入,以亚微米分辨率制造支架,并具有复杂且可复制的结构。将直径为4.9±1.5 nm,饱和磁化强度为30 emu / g的MNP添加到Ormocore中,浓度为0、2和4 mg / mL。在光聚合过程后,未聚合的Ormocore / MNPs复合材料中的MNPs的均匀分布和浓度得以保留。支架中的MNP保持其超顺磁性行为。 MNP浓度为2和4 mg / mL的支架的比磁化强度分别为14 emu / g和17 emu / g。 MNP将结构的收缩率从无MNP的支架的80.2±5.3%降至具有4 mg / mL MNP的支架的20.7±4.7%。与未经刺激的样品相比,接种在暴露于1.3 T静磁场的支架上的成骨细胞使支架的规则结构变形,并引起更快的矿化作用。支架变形和细胞外基质矿化在静磁场(SMF)暴露下随MNPs浓度的增加而增加。在由MNP在细胞体上产生的〜3×10?4 T / m的梯度磁场的框架中讨论了结果。

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