IMEC, Leuven, Belgium; Department of Imaging and Pathology, Biomedical MRI/Mosaic, KU Leuven, Leuven, Belgium.
Department of Imaging and Pathology, Biomedical MRI/Mosaic, KU Leuven, Leuven, Belgium.
Biomaterials. 2014 Feb;35(5):1627-35. doi: 10.1016/j.biomaterials.2013.11.006. Epub 2013 Nov 15.
Magnetic nanoparticle (MNP) enabled cell visualization with magnetic resonance imaging (MRI) is currently an intensively studied area of research. In the present study, we have synthesized polyethylene glycolated (PEG) MNPs and validated their suitability as MR cell labeling agents in in vitro and in vivo experiments. The labeling of therapeutic potent mesenchymal stem cells (MSCs) with small core and large core MNPs was evaluated. Both MNPs were, in combination with a transfection agent, stably internalized into the MSCs and didn't show an effect on cell metabolism. The labeled cells showed high contrast in MRI phantom studies. For quantification purposes, the MRI contrast generating properties of cells labeled with small core MNPs were compared with large core MNPs and with the commercial contrast agent Endorem. MSCs labeled with the large core MNPs showed the highest contrast generating properties in in vitro phantom studies and in in vivo intracranial stereotactic injection experiments, confirming the size-relaxivity relationship in biological systems. Finally, the distribution of MSCs pre-labeled with large core PEGylated MNPs was visualized non-invasively with MRI in a glioma model.
磁性纳米粒子(MNP)增强磁共振成像(MRI)的细胞可视化目前是一个研究热点。在本研究中,我们合成了聚乙二醇化(PEG)的 MNPs,并验证了它们作为 MRI 细胞示踪剂在体外和体内实验中的适用性。评估了小核和大核 MNPs 对治疗潜能间充质干细胞(MSCs)的标记效果。两种 MNPs 与转染试剂结合后,可稳定地被内吞进入 MSCs,并且对细胞代谢没有影响。标记的细胞在 MRI 体模研究中显示出高对比度。为了定量目的,将小核 MNPs 标记的细胞的 MRI 对比生成特性与大核 MNPs 和商业对比剂 Endorem 进行了比较。在体外体模研究和颅内立体定向注射实验中,大核 MNPs 标记的 MSCs 显示出最高的对比生成特性,证实了生物体系中的尺寸弛豫率关系。最后,用 MRI 非侵入性地可视化了预先用大核聚乙二醇化 MNPs 标记的 MSCs 在胶质瘤模型中的分布。