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首页> 外文期刊>Journal of Huazhong University of Science and Technology >Superparamagnetic Iron Oxide Labeling of Neural Stem Cells and 4.7T MRI Tracking in vivo and in vitro
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Superparamagnetic Iron Oxide Labeling of Neural Stem Cells and 4.7T MRI Tracking in vivo and in vitro

机译:体内外神经干细胞的超顺磁性氧化铁标记和4.7T MRI追踪

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Neural stem cells were labeled with superparamagnetic iron oxide (SPIO) and tracked by MRI in vitro and in vivo after implantation. Rat neural stem cells were labeled with SPIO combined with PLL by the means of receptor-mediated endocytosis. Prussian blue staining and electron microscopy were conducted to identify the iron particles in these neural stem cells. SPIO-labeled cells were tracked by 4.7T MRI in vivo and in vitro after implantation. The subjects were divided into 5 groups, including 5 X 10~5 labeled cells cultured for one day after labeling, 5 X 10~5 same phase unla-beled cells, cell culture medium with 25 μg Fe/mL SPIO, cell culture medium without SPIO and distilled water. MRI scanning sequences included T_1WI, T_2WI and T_2~*WI. R_2 and R_2~* of labeled cells were calculated. The results showed: (1) Neural stem cells could be labeled with SPIO and labeling efficiency was 100%. Prussian blue staining showed numerous blue-stained iron particles in the cytoplasm; (2) The average percentage change of signal intensity of labeled cells on T_1WI in 4.7T MRI was 24.06%, T2WI 50.66% and T_2~*WI 53.70% respectively; (3) T2 of labeled cells and unlabeled cells in 4.7T MRI was 516 ms and 77 ms respectively, R_2 was 1.94 s~(-1) and 12.98 s~(-1) respectively, and T_2~* was 109 ms and 22.9 ms, R_2~* was 9.17 s~(-1) and 43.67 s~(-1) respectively; (4) Remarkable low signal area on T_2WI and T_2~*WI could exist for nearly 7 weeks and then disappeared gradually in the left brain transplanted with labeled cells, however no signal change in the right brain implanted with unlabeled cells. It was concluded that neural stem cells could be labeled effectively with SPIO. R2 and R_2~* of labeled cells were increased obviously. MRI can be used to track labeled cells in vitro and in vivo.
机译:神经干细胞用超顺磁性氧化铁(SPIO)标记,并在植入后通过体内和体外MRI进行追踪。通过受体介导的内吞作用,用SPIO结合PLL标记大鼠神经干细胞。进行普鲁士蓝染色和电子显微镜检查以鉴定这些神经干细胞中的铁颗粒。植入后通过体内和体外的4.7T MRI追踪SPIO标记的细胞。将受试者分为5组,包括标记后培养1天的5 X 10〜5个标记细胞,5 X 10〜5个同相未标记细胞,含25μgFe / mL SPIO的细胞培养基,不含SPIO和蒸馏水。 MRI扫描序列包括T_1WI,T_2WI和T_2〜* WI。计算标记细胞的R_2和R_2〜*。结果表明:(1)可用SPIO标记神经干细胞,标记效率为100%。普鲁士蓝染色在细胞质中显示出许多蓝色的铁颗粒。 (2)4.7T MRI中T_1WI标记细胞信号强度的平均百分比变化分别为24.06%,T2WI为50.66%和T_2〜* WI为53.70%; (3)在4.7T MRI中标记细胞和未标记细胞的T2分别为516 ms和77 ms,R_2分别为1.94 s〜(-1)和12.98 s〜(-1),T_2〜*为109 ms和22.9 ms,R_2〜*分别为9.17 s〜(-1)和43.67 s〜(-1); (4)T_2WI和T_2〜* WI上存在明显的低信号区域,持续了近7周,然后在标记细胞移植的左脑中逐渐消失,而在未标记细胞移植的右脑中无信号变化。结论是SPIO可以有效标记神经干细胞。标记细胞的R2和R_2〜*明显增加。 MRI可用于在体外和体内追踪标记的细胞。

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