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Gum Arabic-Coated Magnetic Nanoparticles for Potential Application in Simultaneous Magnetic Targeting and Tumor Imaging

机译:阿拉伯胶涂覆的磁性纳米粒子在同步磁性靶向和肿瘤成像中的潜在应用

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摘要

Magnetic iron oxide nanoparticles (MNP) coated with gum arabic (GA), a biocompatible phytochemical glycoprotein widely used in the food industry, were successfully synthesized and characterized. GA-coated MNP (GA-MNP) displayed a narrow hydrodynamic particle size distribution averaging about 100 nm; a GA content of 15.6% by dry weight; a saturation magnetization of 93.1 emu/g Fe; and a superparamagnetic behavior essential for most magnetic-mediated applications. The GA coating offers two major benefits: it both enhances colloidal stability and provides reactive functional groups suitable for coupling of bioactive compounds. In vitro results showed that GA-MNP possessed a superior stability upon storage in aqueous media when compared to commercial MNP products currently used in magnetic resonance imaging (MRI). In addition, significant cellular uptake of GA-MNP was evaluated in 9L glioma cells by electron spin resonance (ESR) spectroscopy, fluorescence microscopy, and MRI analyses. Based on these findings, it was hypothesized that GA-MNP might be utilized as a MRI-visible drug carrier in achieving both magnetic tumor targeting and intracellular drug delivery. Indeed, preliminary in vivo investigations validate this clinical potential. MRI visually confirmed the accumulation of GA-MNP at the tumor site following intravenous administration to rats harboring 9L glioma tumors under the application of an external magnetic field. ESR spectroscopy quantitatively revealed a 12-fold increase in GA-MNP accumulation in excised tumors when compared to contralateral normal brain. Overall, the results presented show promise that GA-MNP could potentially be employed to achieve simultaneous tumor imaging and targeted intra-tumoral drug delivery.
机译:成功地合成和表征了涂有阿拉伯树胶(GA)的磁性氧化铁纳米颗粒(MNP),该树胶是食品工业中广泛使用的生物相容性植物化学糖蛋白。涂有GA的MNP(GA-MNP)显示出窄的流体动力学粒径分布,平均约100 nm; GA含量为干重的15.6%; Fe的饱和磁化强度为93.1 emu / g;对大多数磁性介导的应用而言必不可少的超顺磁性行为。 GA涂层具有两个主要优点:既可以增强胶体稳定性,又可以提供适合偶联生物活性化合物的反应性官能团。体外结果表明,与目前在磁共振成像(MRI)中使用的商用MNP产品相比,GA-MNP在水性介质中存储时具有出色的稳定性。此外,通过电子自旋共振(ESR)光谱,荧光显微镜和MRI分析评估了9L胶质瘤细胞中GA-MNP的大量细胞摄取。基于这些发现,假设GA-MNP可以在实现磁性肿瘤靶向和细胞内药物递送方面用作MRI可见的药物载体。实际上,初步的体内研究证实了这种临床潜力。在外磁场的作用下,对藏有9L神经胶质瘤的大鼠静脉内给药后,MRI在视觉上证实了GA-MNP在肿瘤部位的蓄积。 ESR光谱定量显示与对侧正常脑相比,切除的肿瘤中GA-MNP积累增加了12倍。总体而言,提出的结果表明,有望将GA-MNP用于实现同步肿瘤成像和靶向肿瘤内药物递送。

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