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Growth and differentiation of neural stem cells with superparamagnetic iron oxides labeling in vitro

机译:超顺磁性氧化铁体外标记神经干细胞的生长与分化

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Objective: To study the growth and differentiation of superparamagnetic iron oxides(SPIOs) labeled neural stem cells(NSCs). Methods: After NSCs were cultured and subcultured from newborn rat brain, they were magnetically labeled with ferumoxides(a kind of SPIOs). Growth, differentiation and other biology properties of the cells were investigated with immunocytochemistry, transmission electron microscopy (TEM) and Prussian blue staining. Results: Nestin positive cells were found in the culture and offspring clones. NSCs could be differentiated into positive GFAP and NF200 cells in serum culture. When NSCs incubated with ferumoxides, the iron particles were seen in intracellular as well as in offspring clones. With the increase in concentration of ferumoxides(5.6-11.2 μg/ml), ferumoxides showed no significant difference effects on the growth and differentiation of NSCs. When the concentration of ferumoxides exceeded 22.4 μg/ml, there was significant difference(P < 0. 05). Conclusion: We successfully label NSCs with ferumoxides, it is useful for tracking of magnetic labeled NSCs in vivo with MRI.
机译:目的:研究超顺磁性氧化铁(SPIOs)标记的神经干细胞(NSCs)的生长和分化。方法:从新生大鼠脑中培养和继代培养神经干细胞后,将它们用铁氧化铁(一种SPIO)进行磁性标记。用免疫细胞化学,透射电子显微镜(TEM)和普鲁士蓝染色研究了细胞的生长,分化和其他生物学特性。结果:在培养物和后代克隆中发现巢蛋白阳性细胞。在血清培养中,NSCs可以分化为阳性GFAP和NF200细胞。当NSC与亚铁氧化物温育时,在细胞内以及后代克隆中都可以看到铁颗粒。随着亚铁氧化物浓度(5.6-11.2μg/ ml)的增加,亚铁氧化物对NSCs的生长和分化没有明显的影响。当亚铁的浓度超过22.4μg/ ml时,差异有统计学意义(P <0. 05)。结论:我们成功地用亚铁氧化物标记了神经干细胞,这对于MRI体内跟踪磁性标记的神经干细胞很有用。

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