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Super-paramagnetic responsive nanofibrous scaffolds under static magnetic field enhance osteogenesis for bone repair in vivo

机译:静态磁场下的超顺磁响应纳米纤维支架可增强成骨作用用于体内骨骼修复

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摘要

A novel nanofibrous composite scaffold composed of super-paramagnetic γ-Fe2O3 nanoparticles (MNP), hydroxyapatite nanoparticles (nHA) and poly lactide acid (PLA) was prepared using electrospinning technique. The scaffold well responds extern static magnetic field with typical saturation magnetization value of 0.049 emu/g as well as possesses nanofibrous architecture. The scaffolds were implanted in white rabbit model of lumbar transverse defects. Permanent magnets are fixed in the rabbit cages to provide static magnetic field for the rabbits post surgery. Results show that MNP incorporated in the nanofibers endows the scaffolds super-paramagnetic responsive under the applied static magnetic field, which accelerates new bone tissue formation and remodeling in the rabbit defect. The scaffold also exhibits good compatibility of CK, Cr, ALT and ALP within normal limits in the serum within 110 days post implantation. In conclusion, the super-paramagnetic responding scaffold with applying of external magnetic field provides a novel strategy for scaffold-guided bone repair.
机译:采用静电纺丝技术制备了由超顺磁性γ-Fe2O3纳米粒子(MNP),羟基磷灰石纳米粒子(nHA)和聚丙二酸(PLA)组成的新型纳米纤维复合支架。脚手架井具有典型的饱和磁化值为0.049 emu / g的外部静磁场,并具有纳米纤维结构。将支架植入白兔腰椎横向缺损模型中。永久磁铁固定在兔子的笼子里,为兔子术后提供静磁场。结果表明,掺入纳米纤维中的MNP使支架在施加的静磁场下具有超顺磁性响应,从而加速了兔缺损中新骨组织的形成和重塑。支架在植入后110天内,在血清的正常范围内还显示出CK,Cr,ALT和ALP的良好相容性。综上所述,外磁场作用下的超顺磁性反应支架为支架引导的骨修复提供了新的策略。

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