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Protein Corona Composition of Superparamagnetic Iron Oxide Nanoparticles with Various Physico-Chemical Properties and Coatings

机译:具有不同物理化学性质和涂层的超顺磁性氧化铁纳米粒子的蛋白质电晕组成

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Because of their biocompatibility and unique magnetic properties, superparamagnetic iron oxide nanoparticles NPs (SPIONs) are recognized as some of the most prominent agents for theranostic applications. Thus, understanding the interaction of SPIONs with biological systems is important for their safe design and efficient applications. In this study, SPIONs were coated with 2 different polymers: polyvinyl alcohol polymer (PVA) and dextran. The obtained NPs with different surface charges (positive, neutral, and negative) were used as a model study of the effect of surface charges and surface polymer materials on protein adsorption using a magnetic separator. We found that the PVA-coated SPIONs with negative and neutral surface charge adsorbed more serum proteins than the dextran-coated SPIONs, which resulted in higher blood circulation time for PVA-coated NPs than the dextran-coated ones. Highly abundant proteins such as serum albumin, serotransferrin, prothrombin, alpha-fetoprotein, and kininogen-1 were commonly found on both PVA- and dextran-coated SPIONs. By increasing the ionic strength, soft- and hard-corona proteins were observed on 3 types of PVA-SPIONs. However, the tightly bound proteins were observed only on negatively charged PVA-coated SPIONs after the strong protein elution.
机译:由于它们的生物相容性和独特的磁性,超顺磁性氧化铁纳米颗粒NP(SPION)被公认为是治疗治疗应用中最突出的药物。因此,了解SPION与生物系统的相互作用对于其安全设计和有效应用很重要。在这项研究中,SPIONs涂有2种不同的聚合物:聚乙烯醇聚合物(PVA)和葡聚糖。获得的具有不同表面电荷(正电荷,中性电荷和负电荷)的NPs被用作模型研究,研究了表面电荷和表面聚合物材料对使用磁选机吸附蛋白质的影响。我们发现具有负电荷和中性表面电荷的PVA包被的SPIONs比葡聚糖包被的SPIONs吸收更多的血清蛋白,这导致PVA包被的NPs比葡聚糖包被的NP更长的血液循环时间。在PVA和葡聚糖包被的SPION上通常都发现高度丰富的蛋白,例如血清白蛋白,血清转铁蛋白,凝血酶原,甲胎蛋白和激肽原-1。通过增加离子强度,可以在3种类型的PVA-SPIONs上观察到软冠和硬冠蛋白。但是,在强蛋白洗脱后,仅在带负电荷的PVA包被的SPION上观察到紧密结合的蛋白。

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