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Analysis of changes in gene expression and metabolic profiles induced by silica-coated magnetic nanoparticles

机译:二氧化硅包覆的磁性纳米粒子诱导的基因表达和代谢谱变化的分析

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Magnetic nanoparticles (MNPs) have proven themselves to be useful in biomedical research; however, previous reports were insufficient to address the potential dangers of nanoparticles. Here, we investigated gene expression and metabolic changes based on the microarray and gas chromatography-mass spectrometry with human embryo kidney 293 cells treated with MNPs@SiO _2(RITC), a silica-coated MNP containing Rhodamine B isothiocyanate (RITC). In addition, measurement of reactive oxygen species (ROS) and ATP analysis were performed to evaluate the effect of MNPs@SiO _2(RITC) on mitochondrial function. Compared to the nontreated control, glutamic acid was increased by more than 2.0-fold, and expression of genes related to the glutamic acid metabolic pathway was also disturbed in 1.0 μg/μL of MNPs@SiO _2(RITC)-treated cells. Furthermore, increases in ROS concentration and mitochondrial damage were observed in this MNPs@SiO _2(RITC) concentration. The organic acids related to the Krebs cycle were also disturbed, and the capacity of ATP synthesis was decreased in cell treated with an overdose of MNPs@SiO _2(RITC). Collectively, these results suggest that overdose (1.0 μg/μL) of MNPs caused transcriptomic and metabolic disturbance. In addition, we suggest that a combination of gene expression and metabolic profiles will provide more detailed and sensitive toxicological evaluation for nanoparticles.
机译:磁性纳米颗粒(MNP)已被证明可用于生物医学研究。然而,先前的报道不足以解决纳米颗粒的潜在危险。在这里,我们基于基因芯片和气相色谱-质谱法研究了人类胚胎肾293细胞的基因表达和代谢变化,该细胞经MNPs @ SiO _2(RITC)处理,二氧化硅包被的MNP含有罗丹明B异硫氰酸盐(RITC)。此外,进行了活性氧(ROS)的测量和ATP分析,以评估MNPs @ SiO _2(RITC)对线粒体功能的影响。与未处理的对照组相比,谷氨酸增加了2.0倍以上,并且在1.0μg/μL的MNPs @ SiO _2(RITC)处理的细胞中,谷氨酸代谢途径相关基因的表达也受到干扰。此外,在此MNPs @ SiO _2(RITC)浓度下,观察到ROS浓度增加和线粒体损伤。与克雷布斯循环有关的有机酸也受到干扰,在过量的MNPs @ SiO _2(RITC)处理的细胞中,ATP合成的能力降低。总体而言,这些结果表明,过量(1.0μg/μL)的MNP会导致转录组和代谢紊乱。另外,我们建议基因表达和代谢谱的组合将为纳米颗粒提供更详细和敏感的毒理学评估。

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