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Different Storage Conditions Influence Biocompatibility and Physicochemical Properties of Iron Oxide Nanoparticles

机译:不同储存条件影响氧化铁纳米粒子的生物相容性和理化性质

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摘要

Superparamagnetic iron oxide nanoparticles (SPIONs) have attracted increasing attention in many biomedical fields. In magnetic drug targeting SPIONs are injected into a tumour supplying artery and accumulated inside the tumour with a magnet. The effectiveness of this therapy is thus dependent on magnetic properties, stability and biocompatibility of the particles. A good knowledge of the effect of storage conditions on those parameters is of utmost importance for the translation of the therapy concept into the clinic and for reproducibility in preclinical studies. Here, core shell SPIONs with a hybrid coating consisting of lauric acid and albumin were stored at different temperatures from 4 to 45 °C over twelve weeks and periodically tested for their physicochemical properties over time. Surprisingly, even at the highest storage temperature we did not observe denaturation of the protein or colloidal instability. However, the saturation magnetisation decreased by maximally 28.8% with clear correlation to time and storage temperature. Furthermore, the biocompatibility was clearly affected, as cellular uptake of the SPIONs into human T-lymphoma cells was crucially dependent on the storage conditions. Taken together, the results show that the particle properties undergo significant changes over time depending on the way they are stored.
机译:在许多生物医学领域中,超顺磁性氧化铁纳米颗粒(SPIONs)引起了越来越多的关注。在靶向磁性药物中,将SPIONs注入肿瘤供应动脉中,并用磁铁将其聚集在肿瘤内部。因此,该疗法的有效性取决于颗粒的磁性,稳定性和生物相容性。良好的存储条件对这些参数的影响的知识对于将治疗方案转化为临床以及在临床前研究中具有可重复性至关重要。在这里,具有由月桂酸和白蛋白组成的混合涂层的核壳SPION在12周内于4至45°C的不同温度下保存,并随时间定期测试其理化性质。令人惊讶的是,即使在最高储存温度下,我们也没有观察到蛋白质变性或胶体不稳定性。但是,饱和磁化强度最大降低了28.8%,与时间和存储温度有着明显的相关性。此外,生物相容性明显受到影响,因为SPIONs进入人T淋巴瘤细胞的细胞摄取关键取决于储存条件。两者合计,结果表明,粒子的特性会随着时间的推移发生显着变化,具体取决于它们的存储方式。

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