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首页> 外文期刊>ACS applied materials & interfaces >One-Step Facile Synthesis of Highly Magnetic and Surface Functionalized Iron Oxide Nanorods for Biomarker-Targeted Applications
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One-Step Facile Synthesis of Highly Magnetic and Surface Functionalized Iron Oxide Nanorods for Biomarker-Targeted Applications

机译:用于生物标志物靶向应用的高磁性和表面官能化氧化铁纳米棒的一步容易合成

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摘要

We report a one-step method for facile and sustainable synthesis of magnetic iron oxide nanorods (or IONRs) with mean lengths ranging from 25 to 50 nm and mean diameters ranging from 5 to 8 nm. The prepared IONRs are highly stable in aqueous media and can be surface functionalized for biomarker-targeted applications. This synthetic strategy involves the reaction of iron(III) acetylacetonate with polyethyleneimine in the presence of oleylamine and phenyl ether, followed by thermal decomposition. Importantly, the length and diameter as well as the aspect ratio of the prepared IONRs can be controlled by modulating the reaction parameters. We show that the resultant IONRs exhibit stronger magnetic properties compared to those of the widely used spherical iron oxide nanoparticles (IONPs) at the 80 same iron content. The increased magnetic properties are dependent on the aspect ratio, with the magnetic saturation gradually increasing from 10 to 75 emu g-1 when increasing length of the IONRs, 5 nm in diameter, from 25 to 50 nm. The magnetic resonance imaging (MRI) contrast-enhancing effect, as measured in terms of the transverse relaxivity, r(2), increased from 670.6 to 905.5 in M-1 s(-1), when increasing the length from 25 to 50 nm. When applied to the immunomagnetic cell separation of the transferrin receptor (TfR)-overexpressed medulloblastoma cells using transferrin (Tf) as the targeting ligand, Tf-conjugated IONRs can capture 92 +/- 3% of the targeted cells under a given condition (2.0 x 10(4) cells/mL, 0.2 mg Fe/mL concentration of magnetic materials, and 2.5 min of incubation time) compared to only 37 +/- 2% when using the spherical IONPs, and 14 +/- 2% when using commercially available magnetic beads, significantly improving the efficiency of separating the targeted cells.
机译:我们报告了一种磁性氧化铁纳米棒(或IONR)的容易和可持续合成的一步方法,其平均长度范围为25至50nm,平均直径范围为5至8nm。制备的IONR在水性介质中是高度稳定的,可以是用于生物标志物靶向应用的表面。这种合成策略涉及铁(III)乙酰丙酮与聚乙烯在甲胺和苯基存在下的聚乙烯反应,然后进行热分解。重要的是,可以通过调节反应参数来控制制备的IONRS的长度和直径以及纵横比。我们表明,与80相同的铁含量的广泛使用的球形氧化铁纳米粒子(IONP)相比,所得IONRS表现出较强的磁性。增加的磁性依赖于纵横比,磁饱和度在将10至50nm的长度增加5nm时逐渐增加到10至75 emu g-1。根据横向松弛率的磁共振成像(MRI)对比增强效果R(2),在M-1 S(-1)中增加到670.6至905.5,当增加25至50nm时。当应用于使用转铁蛋白(TF)作为靶向配体的转移素受体(TFR)-overzuck抑制的Medulloblastoma细胞的免疫细胞分离时,TF缀合的IONR可以在给定条件下捕获92 +/- 3%的靶细胞(2.0 X 10(4)磁性物质/ ml,0.2mg Fe / ml浓度,孵育时间为2.5分钟)与使用球形IONP时的37 +/- 2%相比,使用时14 +/- 2%市售的磁珠,显着提高了分离靶细胞的效率。

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