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Effects of magnetic nanoparticle-incorporated human bone marrow-derived mesenchymal stem cells exposed to pulsed electromagnetic fields on injured rat spinal cord

机译:暴露于脉冲电磁场​​的磁性纳米粒子结合人骨髓间充质干细胞对大鼠脊髓的影响

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Transplanting mesenchymal stem cells into injured lesions is currently under study as a therapeutic approach for spinal cord injury. In this study, the effects of a pulsed electromagnetic field (PEMF) on injured rat spinal cord were investigated in magnetic nanoparticle (MNP)-incorporated human bone marrow-derived mesenchymal stem cells (hBM-MSCs). A histological analysis revealed significant differences in MNP-incorporated cell distribution near the injured site under the PEMF in comparison with that in the control group. We confirmed that MNP-incorporated cells were widely distributed in the lesions under PEMF. The results suggest that MNP-incorporated hBM-MSCs were guided by the PEMF near the injured site, and that PEMF exposure for 8 H per day over 4 weeks promoted behavioral recovery in spinal cord injured rats. The results show that rats with MNP-incorporated hBM-MSCs under a PEMF were more effective on the Basso, Beattie, and Bresnahan behavioral test and suggest that the PEMF enhanced the action of transplanted cells for recovery of the injured lesion.
机译:目前正在研究将间充质干细胞移植到受伤的病灶中作为治疗脊髓损伤的方法。在这项研究中,在掺有磁性纳米颗粒(MNP)的人骨髓来源的间充质干细胞(hBM-MSC)中研究了脉冲电磁场​​(PEMF)对受伤的大鼠脊髓的影响。组织学分析显示,与对照组相比,PEMF损伤部位附近MNP掺入的细胞分布有显着差异。我们证实,在PEMF下,MNP结合的细胞广泛分布在病变中。结果表明,掺有MNP的hBM-MSC在受伤部位附近受到PEMF的引导,并且在4周内每天暴露8 H的PEMF促进了脊髓损伤大鼠的行为恢复。结果表明,在PEMF下掺入MNP的hBM-MSC的大鼠在Basso,Beattie和Bresnahan行为测试中更有效,表明PEMF增强了移植细胞对受伤部位的恢复作用。

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