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Increased Cellular Uptake of Biocompatible Superparamagnetic Iron Oxide Nanoparticles into Malignant Cells by an External Magnetic Field

机译:通过外部磁场增加细胞相容性的生物相容性超顺磁性氧化铁纳米颗粒对恶性细胞的吸收。

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摘要

Superparamagnetic iron oxide nanoparticles (SPIONs) are used as delivery systems for different therapeutics including nucleic acids for magnetofection-mediated gene therapy. The aim of our study was to evaluate physicochemical properties, biocompatibility, cellular uptake and trafficking pathways of the custom-synthesized SPIONs for their potential use in magnetofection. Custom-synthesized SPIONs were tested for size, shape, crystalline composition and magnetic behavior using a transmission electron microscope, X-ray diffractometer and magnetometer. SPIONs were dispersed in different aqueous media to obtain ferrofluids, which were tested for pH and stability using a pH meter and zetameter. Cytotoxicity was determined using the MTS and clonogenic assays. Cellular uptake and trafficking pathways were qualitatively evaluated by transmission electron microscopy and quantitatively by inductively coupled plasma atomic emission spectrometry. SPIONs were composed of an iron oxide core with a diameter of 8–9 nm, coated with a 2-nm-thick layer of silica. SPIONs, dispersed in 0.9% NaCl solution, resulted in a stable ferrofluid at physiological pH for several months. SPIONs were not cytotoxic in a broad range of concentrations and were readily internalized into different cells by endocytosis. Exposure to neodymium-iron-boron magnets significantly increased the cellular uptake of SPIONs, predominantly into malignant cells. The prepared SPIONs displayed adequate physicochemical and biomedical properties for potential use in magnetofection. Their cellular uptake was dependent on the cell type, and their accumulation within the cells was dependent on the duration of exposure to an external magnetic field.
机译:超顺磁性氧化铁纳米颗粒(SPIONs)用作不同治疗药物的递送系统,包括用于磁转染介导的基因治疗的核酸。我们研究的目的是评估定制合成的SPIONs在磁转染中的潜在用途的理化特性,生物相容性,细胞摄取和运输途径。使用透射电子显微镜,X射线衍射仪和磁力计测试了定制合成的SPION的尺寸,形状,晶体组成和磁性能。将SPIONs分散在不同的水性介质中以获得铁磁流体,使用pH计和Zetameter测试铁磁流体的pH和稳定性。使用MTS和克隆形成试验确定细胞毒性。通过透射电子显微镜定性评估细胞的摄取和运输途径,并通过电感耦合等离子体原子发射光谱法定量地评估细胞摄取和运输途径。 SPIONs由直径为8–9 nm的氧化铁芯组成,表面涂有2 nm厚的二氧化硅。分散在0.9%NaCl溶液中的SPIONs在生理pH值下稳定了几个月的铁磁流体。 SPIONs在很宽的浓度范围内都没有细胞毒性,很容易通过内吞作用内化到不同的细胞中。暴露于钕铁硼磁铁会显着增加SPIONs的细胞摄取,主要是进入恶性细胞。制备的SPIONs显示出足够的理化和生物医学特性,可用于磁转染。它们的细胞摄取取决于细胞类型,并且它们在细胞内的积累取决于暴露于外部磁场的持续时间。

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