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首页> 外文期刊>International Journal of Nanomedicine >Homing of Super Paramagnetic Iron Oxide Nanoparticles (SPIONs) Labeled Adipose-Derived Stem Cells by Magnetic Attraction in a Rat Model of Parkinson’s Disease
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Homing of Super Paramagnetic Iron Oxide Nanoparticles (SPIONs) Labeled Adipose-Derived Stem Cells by Magnetic Attraction in a Rat Model of Parkinson’s Disease

机译:超顺磁性氧化铁纳米颗粒(酱)归巢通过帕金森病大鼠模型中的磁吸引标记脂肪衍生的干细胞

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Introduction: Stem cell therapies for neurodegenerative diseases such as Parkinson’s disease (PD) are intended to replace lost dopaminergic neurons. The basis of this treatment is to guide the migration of transplanted cells into the target tissue or injury site. The aim of this study is an evaluation of the homing of superparamagnetic iron oxide nanoparticles (SPIONs) labeled adipose-derived stem cells (ADSC) by an external magnetic field in a rat model of PD. Methods: ADSCs were obtained from perinephric regions of male adult rats and cultured in a DMEM medium. ADSC markers were assessed by immunostaining with CD90, CD105, CD49d, and CD45. The SPION was coated using poly-L-lysine hydrobromide and transfection was determined in rat ADSC using the GFP reporter gene. For this in vivo study, rats with PD were divided into five groups: a positive control group, a control group with PD (lesion with 6-HD injection), and three treatment groups: the PD/ADSC group (PD transplant with ADSCs transfected by BrdU), PD/ADSC/SPION group (PD transplant with ADSCs labeled with SPION and transfected by GFP), and the PD/ADSC/SPION/EM group (PD transplant with ADSCs labeled with SPION and transfected by GFP induced with external magnet). Results: ADSCs were immunoreactive to fat markers CD90 (90.73± 1.7), CD105 (87.4± 2.9) and CD49d (79.6± 2.6), with negative immunostaining at the hematopoietic stem cell marker (CD45: 1.4± 0.4). The efficiency of cells with SPION/PLL was about 96% of ADSC. The highest number of GFP-positive cells was in the ADSC/SPION/EM group (54.5± 1.3), which was significantly different from that in ADSC/SPION group (30.83± 3 and P 0.01). Conclusion: Transfection of ADSC by SPION/PLL is an appropriate protocol for cell therapy. External magnets can be used for the delivery and homing of transplanted stem cells in the target tissue.
机译:简介:帕金森病(Pd)等神经变性疾病的干细胞疗法旨在取代丢失的多巴胺能神经元。该处理的基础是引导移植细胞迁移到靶组织或损伤部位。该研究的目的是通过PD的大鼠模型中的外部磁场来评估超顺磁性氧化铁纳米颗粒(栓塞)标记的脂肪衍生的干细胞(ADSC)。方法:从雄性成年大鼠的阴部区域获得ADSCs,并在DMEM培养基中培养。通过用CD90,CD105,CD49D和CD45免疫染色来评估ADSC标记物。使用聚-L-赖氨酸氢溴酸盐涂覆调节,并使用GFP报告基因在大鼠ADSC中测定转染。为此,在体内研究中,将PD的大鼠分为五组:阳性对照组,具有Pd的对照组(具有6-HD注射的病变)和三个治疗组:Pd / AdSC组(PD转移的PD移植患者转染通过BRDU),PD / ADSC / SPION组(用SPION标记的ADSC和GFP转染的PD移植),以及PD / ADSC / SPION / EM组(PD移植与带有SPION的ADSC,并通过外部磁铁诱导的GFP转染)。结果:ADSCS对脂肪标记的CD90(90.73±1.7),CD105(87.4±2.9)和CD49D(79.6±2.6)进行免疫反应,在造血干细胞标记物上具有负免疫染色(CD45:1.4±0.4)。用SpiOn / PLL的细胞的效率约为ADSC的96%。最高数量的GFP阳性细胞位于ADSC / SPION / EM组(54.5±1.3)中,与ADSC / SPION组(30.83±3和P <0.01)显着不同。结论:Spion / PLL的ADSC转染是细胞疗法的适当方案。外部磁铁可用于在靶组织中的移植干细胞的递送和归巢。

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