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Surface engineering of SPIONs: role of phosphonate ligand multivalency in tailoring their efficacy

机译:酱表面工程:膦酸盐配体多价剪裁疗效的作用

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摘要

We report the design of scaffolds containing mono-, bis-, and tris-phosphonate coordinating groups, and a polyethylene glycol chain, for stabilizing superparamagnetic iron oxide nanoparticles (SPIONs), using simple and versatile chemistry. We demonstrate that the number of anchoring phosphonate sites on the ligand influence the colloidal stability, magnetic and biological properties of SPIONs, and the latter do not solely depend on attaching moieties that can enhance their aqueous dispersion. These parameters can be tailored by the number of conjugation sites on the ligand, as evidenced from dynamic light scattering at various salt concentrations, magnetic relaxivities and cell viability studies.
机译:我们报告了使用简单且通用的化学的含有单次,双膦和三膦酸酯配位组和聚乙二醇链的支架的设计,以及稳定超顺磁性氧化铁纳米颗粒(酱)。 我们证明,配体上的锚固膦酸盐位点的数量会影响胶片的胶体稳定性,磁性和生物学性质,并且后者不仅仅取决于可以增强其水分散体的附着部分。 这些参数可以由配体上的共轭位点的数量来定制,如在各种盐浓度,磁性放松和细胞活力研究的动态光散射中所证明的。

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