Institute for Biomedical Engineering, Department of Cell Biology, University Hospital RWTH Aachen University, Aachen, Germany.
Nanomedicine. 2012 Jul;8(5):682-91. doi: 10.1016/j.nano.2011.08.010. Epub 2011 Sep 3.
Iron oxide-based magnetic nanoparticles (MNPs) offer unique properties for cell tracking by magnetic resonance imaging (MRI) in cellular immunotherapy. In this study, we investigated the uptake of chemically engineered NPs into antigen-presenting dendritic cells (DCs). DCs are expected to perceive MNPs as foreign antigens, thus exhibiting the capability to immunologically sense MNP surface chemistry. To systematically evaluate cellular uptake and T2/T2(⁎) MR imaging properties of MNPs, we synthesized polymer-based MNPs by employing layer-by-layer (LbL) technology. Thereby, we achieved modification of particle shell parameters, such as size, surface charge, and chemistry. We found that subcellular packaging of MNPs rather than MNP content in DCs influences MR imaging quality. Increased local intracellular electron density as inferred from transmission electron microscopy (TEM) strongly correlated with enhanced contrast in MRI. Thus, LbL-tailoring of MNP shells using polyelectrolytes that impact on uptake and subcellular localization can be used for modulating MR imaging properties.
In this study, layer-by-layer tailoring of magnetic NP shells was performed using polyelectrolytes to improve uptake by dendritic cells for cell-specific MR imaging. The authors conclude that polyelectrolyte modified NP-s can be used for modulating improving MR imaging quality by increasing subcellular localization.
氧化铁基磁性纳米颗粒(MNPs)通过细胞免疫治疗中的磁共振成像(MRI)为细胞跟踪提供了独特的性质。在这项研究中,我们研究了化学工程 NPs 被抗原呈递树突状细胞(DCs)摄取的情况。预计 DC 会将 MNPs 视为外来抗原,从而表现出对 MNP 表面化学的免疫感知能力。为了系统地评估 MNPs 的细胞摄取和 T2/T2(⁎)MR 成像特性,我们通过层层(LbL)技术合成了基于聚合物的 MNPs。由此,我们实现了颗粒壳参数的修饰,例如大小、表面电荷和化学性质。我们发现,MNPs 在 DC 中的亚细胞包装而不是 MNP 含量会影响 MR 成像质量。透射电子显微镜(TEM)推断的局部细胞内电子密度的增加与 MRI 中对比度的增强强烈相关。因此,使用影响摄取和亚细胞定位的聚电解质对 MNP 壳进行 LbL 修饰可用于调节 MR 成像特性。
在这项研究中,使用聚电解质对磁性 NP 壳进行了逐层修饰,以提高树突状细胞对用于细胞特异性 MRI 的 NP 的摄取。作者得出结论,通过增加亚细胞定位,修饰后的 NP 可用于改善 MR 成像质量。