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Study of internalization and viability of multimodal nanoparticles for labeling of human umbilical cord mesenchymal stem cells

机译:多峰纳米粒子在人脐带间充质干细胞标记中的内在化和活力研究

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OBJECTIVE: To analyze multimodal magnetic nanoparticles-Rhodamine B in culture media for cell labeling, and to establish a study of multimodal magnetic nanoparticles-Rhodamine B detection at labeled cells evaluating they viability at concentrations of 10μg Fe/mL and 100μg Fe/mL. METHODS: We performed the analysis of stability of multimodal magnetic nanoparticles-Rhodamine B in different culture media; the mesenchymal stem cells labeling with multimodal magnetic nanoparticles-Rhodamine B; the intracellular detection of multimodal magnetic nanoparticles-Rhodamine B in mesenchymal stem cells, and assessment of the viability of labeled cells by kinetic proliferation. RESULTS: The stability analysis showed that multimodal magnetic nanoparticles-Rhodamine B had good stability in cultured Dulbecco's Modified Eagle's-Low Glucose medium and RPMI 1640 medium. The mesenchymal stem cell with multimodal magnetic nanoparticles-Rhodamine B described location of intracellular nanoparticles, which were shown as blue granules co-localized in fluorescent clusters, thus characterizing magnetic and fluorescent properties of multimodal magnetic nanoparticles-Rhodamine B. CONCLUSION: The stability of multimodal magnetic nanoparticles-Rhodamine B found in cultured Dulbecco's Modified Eagle's-Low Glucose medium and RPMI 1640 medium assured intracellular mesenchymal stem cells labeling. This cell labeling did not affect viability of labeled mesenchymal stem cells since they continued to proliferate for five days.
机译:目的:分析培养基中的多峰磁性纳米颗粒-若丹明B,进行细胞标记,并建立在标记细胞上检测多峰磁性纳米颗粒-若丹明B的研究,以评估其在10μgFe / mL和100μgFe / mL浓度下的生存能力。方法:我们在不同培养基中对多峰磁性纳米颗粒罗丹明B进行了稳定性分析。用多峰磁性纳米粒-若丹明B标记的间充质干细胞;间充质干细胞中多峰磁性纳米颗粒-若丹明B的细胞内检测,并通过动力学增殖评估标记细胞的活力。结果:稳定性分析表明,多峰磁性纳米粒子罗丹明B在Dulbecco改良的Eagle's低葡萄糖培养基和RPMI 1640培养基中具有良好的稳定性。结论:多峰磁性纳米颗粒-若丹明B的间充质干细胞描述了细胞内纳米颗粒的位置,该颗粒呈蓝色颗粒共定位在荧光团簇中,从而表征了多峰磁性纳米颗粒-若丹明B的磁性和荧光性质。在培养的Dulbecco改良的Eagle's-Low葡萄糖培养基和RPMI 1640培养基中发现的磁性纳米颗粒-罗丹明B可确保细胞内间充质干细胞标记。这种细胞标记不会影响标记的间充质干细胞的活力,因为它们持续增殖五天。

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