Stanicki Dimitri, Larbanoix Lionel, Boutry Sébastien, Vangijzegem Thomas, Ternad Indiana, Garifo Sarah, Muller Robert N, Laurent Sophie
General, Organic and Biomedical Chemistry Units, NMR and Molecular Imaging Laboratory, University of Mons, B-7000 Mons, Belgium.
J Mater Chem B. 2021 Jul 7;9(25):5055-5068. doi: 10.1039/d1tb00573a. Epub 2021 Jun 16.
Bimodal sub-5 nm superparamagnetic iron oxide nanoparticles (SPIO-5) coated with polyethylene glycol of different chain lengths (i.e. PEG-800, -2000 and -5000) have been prepared and characterized. Fluorescence properties have been obtained by mean of the grafting of a near-infrared-emitting dye (NIR-dye) onto the surface of the oxide, thanks to the carboxylic acid functions introduced towards an organosilane coating. Such modification allowed us to follow in vivo their biodistribution and elimination pathways by T-w and T-w high-field magnetic resonance imaging (MRI), as well as by optical and optoacoustic imaging. Interestingly, it has been highlighted that for a given composition, the thickness of the coating strongly influences the pharmacokinetic properties of the administrated SPIO-5.
已制备并表征了涂覆有不同链长聚乙二醇(即PEG - 800、- 2000和- 5000)的双峰亚5纳米超顺磁性氧化铁纳米颗粒(SPIO - 5)。通过将近红外发射染料(NIR - 染料)接枝到氧化物表面获得了荧光特性,这得益于向有机硅烷涂层引入的羧酸官能团。这种修饰使我们能够通过T2加权和T1加权高场磁共振成像(MRI)以及光学和光声成像来追踪其在体内的生物分布和消除途径。有趣的是,已经强调对于给定的组成,涂层的厚度强烈影响所给药的SPIO - 5的药代动力学性质。
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