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Observation of Positively Charged Magnetic Nanoparticles Inside HepG2 Spheroids Using Electron Microscopy

机译:用电子显微镜观察HepG2球体内带正电的磁性纳米粒子

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摘要

Magnetic resonance imaging (MRI) using magnetic nanoparticles has been used to diagnose vascular diseases as well as to monitor transplanted cells and tissues. In this study, we synthesized magnetic iron oxide nanoparticles (TMADM-03), electrically charged by the presence of a cationic end-group substitution of dextran, and observed these nanoparticles inside three-dimensional models of HepG2 spheroids, which mimic tissues. Patterned cell array glass disks were prepared to visualize the presence of TMADM-03 uptaken by HepG2 spheroids using transmission electron microscopy (TEM). The HepG2 cells (2 × 105 cells) were inoculated onto Cell-able™ 12-well plates. After 48 h of culture, the cells were incubated with 75 µg Fe/ml TMADM-03 in culture medium for 24 h. To investigate the cellular function of the HepG2 spheroids, the albumin secretion was evaluated by an ELISA. The albumin secretion after incubation for 24 h was reduced compared with the secretion prior to the addition of TMADM-03. TEM image samples were prepared in a planar direction or a vertical direction to the HepG2 spheroids on patterned cell array glass disks. The incorporation of TMADM-03 inside the HepG2 spheroids was confirmed. In addition, TMADM-03 could be observed in the deeper layers of the spheroids, and this was localized in the lysosomes. These data suggest that the novel magnetic iron oxide nanoparticles invade three-dimensional HepG2 spheroids.
机译:使用磁性纳米颗粒的磁共振成像(MRI)已被用于诊断血管疾病以及监测移植的细胞和组织。在这项研究中,我们合成了磁性氧化铁纳米粒子(TMADM-03),该葡聚糖通过右旋糖酐的阳离子端基取代的存在而带电,并在模拟组织的HepG2椭球的三维模型中观察了这些纳米粒子。制备图案化的细胞阵列玻璃盘以使用透射电子显微镜(TEM)可视化被HepG2球体摄取的TMADM-03的存在。将HepG2细胞(2×10 5 细胞)接种到Cell-able™12孔板上。培养48小时后,将细胞与75μgFe / ml TMADM-03在培养基中温育24小时。为了研究HepG2球体的细胞功能,通过ELISA评价白蛋白分泌。与添加TMADM-03之前的分泌相比,孵育24小时后的白蛋白分泌减少。在图案化的细胞阵列玻璃盘上,在相对于HepG2椭球的平面方向或垂直方向上制备TEM图像样本。证实将TMADM-03掺入HepG2椭球中。此外,在球状体的较深层中可以观察到TMADM-03,并且其位于溶酶体中。这些数据表明新型磁性氧化铁纳米粒子侵入三维HepG2球体。

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