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Cellular uptake of magnetic nanoparticle is mediated through energy-dependent endocytosis in A549 cells

机译:磁性纳米颗粒的细胞摄取是通过A549细胞中依赖能量的内吞作用介导的

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摘要

Biocompatible silica-overcoated magnetic nanoparticles containing an organic fluorescence dye, rhodamine B isothiocyanate (RITC), within a silica shell [50 nm size, MNP@SiO2(RITC)s] were synthesized. For future application of the MNP@SiO2(RITC)s into diverse areas of research such as drug or gene delivery, bioimaging, and biosensors, detailed information of the cellular uptake process of the nanoparticles is essential. Thus, this study was performed to elucidate the precise mechanism by which the lung cancer cells uptake the magnetic nanoparticles. Lung cells were chosen for this study because inhalation is the most likely route of exposure and lung cancer cells were also found to uptake magnetic nanoparticles rapidly in preliminary experiments. The lung cells were pretreated with different metabolic inhibitors. Our results revealed that low temperature disturbed the uptake of magnetic nanoparticles into the cells. Metabolic inhibitors also prevented the delivery of the materials into cells. Use of TEM clearly demonstrated that uptake of the nanoparticles was mediated through endosomes. Taken together, our results demonstrate that magnetic nanoparticles can be internalized into the cells through an energy-dependent endosomal-lysosomal mechanism.
机译:合成了生物相容的二氧化硅包覆的磁性纳米粒子,该粒子在二氧化硅壳中[50 nm,MNP @ SiO2(RITC)s]包含有机荧光染料,若丹明B异硫氰酸酯(RITC)。为了将MNP @ SiO2(RITC)应用于各种研究领域,例如药物或基因递送,生物成像和生物传感器,纳米颗粒细胞摄取过程的详细信息至关重要。因此,进行了这项研究以阐明肺癌细胞摄取磁性纳米颗粒的确切机制。选择肺细胞进行这项研究是因为吸入是最可能的接触途径,并且在初步实验中还发现肺癌细胞会迅速吸收磁性纳米颗粒。肺细胞用不同的代谢抑制剂预处理。我们的结果表明,低温干扰了磁性纳米颗粒对细胞的吸收。代谢抑制剂也阻止了物质向细胞内的传递。 TEM的使用清楚地表明,纳米颗粒的摄取是通过内体介导的。两者合计,我们的结果表明磁性纳米粒子可以通过能量依赖的内体-溶酶体机制内化到细胞中。

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