首页> 美国卫生研究院文献>International Journal of Nanomedicine >Human neural progenitor cells retain viability phenotype proliferation and lineage differentiation when labeled with a novel iron oxide nanoparticle Molday ION Rhodamine B
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Human neural progenitor cells retain viability phenotype proliferation and lineage differentiation when labeled with a novel iron oxide nanoparticle Molday ION Rhodamine B

机译:当用新型氧化铁纳米粒子Molday ION Rhodamine B标记时人类神经祖细胞保留活力表型增殖和谱系分化

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摘要

Ultrasmall superparamagnetic iron-oxide particles (USPIOs) loaded into stem cells have been suggested as a way to track stem cell transplantation with magnetic resonance imaging, but the labeling, and post-labeling proliferation, viability, differentiation, and retention of USPIOs within the stem cells have yet to be determined for each type of stem cell and for each type of USPIO. Molday ION Rhodamine B™ (BioPAL, Worcester, MA, USA) (MIRB) has been shown to be a USPIO labeling agent for mesenchymal stem cells, glial progenitor cells, and stem cell lines. In this study, we have evaluated MIRB labeling in human neuroprogenitor cells and found that human neuroprogenitor cells are effectively labeled with MIRB without use of transfection reagents. Viability, proliferation, and differentiation properties are unchanged between MIRB-labeled neuroprogenitors cells and unlabeled cells. Moreover, MIRB-labeled human neuroprogenitor cells can be frozen, thawed, and replated without loss of MIRB or even without loss of their intrinsic biology. Overall, those results show that MIRB has advantageous properties that can be used for cell-based therapy.
机译:已建议将超小超顺磁性氧化铁颗粒(USPIO)装入干细胞中,以此作为通过磁共振成像跟踪干细胞移植的方法,但是USPIO的标记以及标记后的增殖,生存力,分化和保留在茎中对于每种干细胞和每种USPIO,尚未确定细胞。霉菌离子罗丹明B™(BioPAL,美国马萨诸塞州伍斯特市)(MIRB)已被证明是用于间充质干细胞,神经胶质祖细胞和干细胞系的USPIO标记剂。在这项研究中,我们评估了人类神经祖细胞中的MIRB标记,发现人类神经祖细胞有效地被MIRB标记,而无需使用转染试剂。 MIRB标记的神经祖细胞和未标记的细胞之间的生存力,增殖和分化特性不变。此外,MIRB标记的人类神经祖细胞可以冷冻,融化和重新铺板,而不会丢失MIRB,甚至不会丢失其内在生物学特性。总体而言,这些结果表明MIRB具有可用于基于细胞的治疗的优势。

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