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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Effect of the nanoparticle synthesis method on dendronized iron oxides as MRI contrast agents
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Effect of the nanoparticle synthesis method on dendronized iron oxides as MRI contrast agents

机译:纳米粒子合成方法对树枝状氧化铁作为MRI造影剂的影响

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Aqueous suspensions of dendronized iron oxide nanoparticles (NPs) have been obtained after functionalization, with two types of dendrons, of NPs synthesized either by coprecipitation (leading to naked NPs in water) or by thermal decomposition (NPs in situ coated by oleic acid in an organic solvent). Different grafting strategies have been optimized depending on the NPs synthetic method. The size distribution, the colloidal stability in isoosmolar media, the surface complex nature as well as the preliminary biokinetic studies performed with optical imaging, and the contrast enhancement properties evaluated through in vitro and in vivo MRI experiments, have been compared as a function of the nature of both dendrons and NPs. All functionalized NPs displayed good colloidal stability in water, however the ones bearing a peripheral carboxylic acid function gave the best results in isoosmolar media. Whereas the grafting rates were similar, the nature of the surface complex depended on the NPs synthetic method. The in vitro contrast enhancement properties were better than commercial products, with a better performance of the NPs synthesized by coprecipitation. On the other hand, the NPs synthesized by thermal decomposition were more efficient in vivo. Furthermore, they both displayed good biodistribution with renal and hepatobiliary elimination pathways and no consistent RES uptake.
机译:通过共沉淀(在水中导致裸露的NP)或通过热分解(NPs原位被油酸包被),将两种类型的树枝状分子官能化后,获得了树枝状氧化铁纳米颗粒(NPs)的水悬浮液。有机溶剂)。根据NP的合成方法,已优化了不同的接枝策略。已将尺寸分布,等渗介质中的胶体稳定性,表面复合物性质以及通过光学成像进行的初步生物动力学研究以及通过体外和体内MRI实验评估的对比增强特性进行了比较树突和NP的本质。所有官能化的NP在水中都显示出良好的胶体稳定性,但是带有外围羧酸功能的NP在等渗介质中的效果最佳。尽管接枝率相似,但表面复合物的性质取决于NPs的合成方法。体外对比增强特性优于商业产品,具有通过共沉淀合成的NP的更好性能。另一方面,通过热分解合成的NP在体内更有效。此外,它们都表现出良好的生物分布,具有肾脏和肝胆消除途径,并且没有一致的RES吸收。

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