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Aluminium hydroxide stabilised MnFe2O4 and Fe3O4 nanoparticles as dual-modality contrasts agent for MRI and PET imaging

机译:氢氧化铝稳定的MnFe2O4和Fe3O4纳米颗粒作为MRI和PET成像的双峰对比剂

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摘要

Magnetic nanoparticles (NPs) MnFe2O4 and Fe3O4 were stabilised by depositing an Al(OH)3 layer via a hydrolysis process. The particles displayed excellent colloidal stability in water and a high affinity to [18F]-fluoride and bisphosphonate groups. A high radiolabeling efficiency, 97% for 18F-fluoride and 100% for 64Cu-bisphosphonate conjugate, was achieved by simply incubating NPs with radioactivity solution at room temperature for 5min. The properties of particles were strongly dependant on the thickness and hardness of the Al(OH)3 layer which could in turn be controlled by the hydrolysis method. The application of these Al(OH)3 coated magnetic NPs in molecular imaging has been further explored. The results demonstrated that these NPs are potential candidates as dual modal probes for MR and PET. Invivo PET imaging showed a slow release of 18F from NPs, but no sign of efflux of 64Cu.
机译:磁性纳米颗粒(NPs)MnFe2O4和Fe3O4通过水解过程沉积Al(OH)3层而得以稳定。该颗粒在水中显示出优异的胶体稳定性,并且对[18F]-氟化物和双膦酸酯基团具有很高的亲和力。通过将NP与放射性溶液在室温下温育5分钟,可以实现高放射性标记效率(对于18F氟化物为97%,对于64Cu-双膦酸酯共轭物为100%)。颗粒的性质强烈取决于Al(OH)3层的厚度和硬度,而Al(OH)3层的厚度和硬度又可以通过水解方法来控制。这些Al(OH)3涂层的磁性纳米粒子在分子成像中的应用已得到进一步探索。结果表明,这些NPs有望作为MR和PET的双峰探针。 Invivo PET成像显示从NP中缓慢释放18F,但没有迹象表明64Cu流出。

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