Metz Stephan, Bonaterra Gabriel, Rudelius Martina, Settles Marcus, Rummeny Ernst J, Daldrup-Link Heike E
Department of Diagnostic Radiology, Technical University Munich, Munich, Germany.
Eur Radiol. 2004 Oct;14(10):1851-8. doi: 10.1007/s00330-004-2405-2. Epub 2004 Jul 13.
To evaluate the capacity of human monocytes to phagocytose various approved iron oxide based magnetic resonance (MR) contrast agents and to optimize in vitro labeling of these cells. Human monocytes were incubated with two superparamagnetic iron oxide particles (SPIO) as well as two ultrasmall SPIO (USPIO) at varying iron oxide concentrations and incubation times. Iron uptake in monocytes was proven by histology, quantified by atomic emission absorption spectrometry and depicted with T2* weighted fast field echo (FFE) MR images at 1.5 T. Additionally, induction of apoptosis in iron oxide labeled monocytes was determined by YO-PRO-1 staining. Cellular iron uptake was significantly (P<0.01) higher after incubation with SPIO compared with USPIO. For SPIO, the iron oxide uptake was significantly (P<0.01) higher after incubation with the ionic Ferucarbotran as compared with the non-ionic Ferumoxides. Efficient cell labeling was achieved after incubation with Ferucarbotran at concentrations > or = 500 microg Fe/ml and incubation times > or = 1 h, resulting in a maximal iron oxide uptake of up to 50 pg Fe/cell without impairment of cell viability. In vitro labeling of human monocytes for MR imaging is most effectively obtained with the approved SPIO Ferucarbotran. Potential subsequent in vivo cell tracking applications comprise, e.g. specific targeting of inflammatory processes.
评估人类单核细胞吞噬各种已获批的基于氧化铁的磁共振(MR)造影剂的能力,并优化这些细胞的体外标记。将人类单核细胞与两种超顺磁性氧化铁颗粒(SPIO)以及两种超小SPIO(USPIO)在不同的氧化铁浓度和孵育时间下进行孵育。通过组织学证实单核细胞对铁的摄取,用原子发射吸收光谱法定量,并在1.5 T下用T2*加权快速场回波(FFE)MR图像进行描绘。此外,通过YO-PRO-1染色确定氧化铁标记的单核细胞中凋亡的诱导情况。与USPIO相比,与SPIO孵育后细胞对铁的摄取显著更高(P<0.01)。对于SPIO,与非离子型的Ferumoxides相比,与离子型的Ferucarbotran孵育后氧化铁的摄取显著更高(P<0.01)。与Ferucarbotran在浓度≥500 μg Fe/ml和孵育时间≥1 h下孵育后可实现有效的细胞标记,导致最大氧化铁摄取量高达50 pg Fe/细胞,且不损害细胞活力。使用已获批的SPIO Ferucarbotran可最有效地实现用于MR成像的人类单核细胞的体外标记。潜在的后续体内细胞追踪应用包括,例如炎症过程的特异性靶向。