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Inhibitory Effect of Multiwalled Carbon Nanotubes on SH-SY5Y Cells

机译:多壁碳纳米管对SH-SY5Y细胞的抑制作用

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Carbon nanotubes (CNTs) are widely used in fields as diverse as engineering, physics and medicine. CNTs' unique physical properties and strength play a major part in such a wide application. However, there have been concerns on the deleterious effects of CNTs as a delivery tool for therapeutic proteins, peptides and genes in biomedicine. CNTs disturb normal neuronal function, and accumulate and cause brain damage. Unfunctionalized CNTs were reported to cause toxicity in cells rather than functionalized CNTs. Thus, effects of CNTs on cells should be rigorously tested. In the present study, unfunctionalized multiwall CNTs were introduced to human neuroblastoma (SH-SY5Y) cells to investigate the toxicity effect. The neurotoxicity test showed that cell viability was above 80 % for CNT at 100 pg/ml - 1 mg/ml. The neuroprotective test revealed that viability of cells was less than 40 % and 50 % at 1 μg/ml - 1 mg/ml and 1 pg/ml - 100 ng/ml concentration range, respectively. The number of viable cells was decreased, with increase in the concentration of CNT using a reactive oxygen species (ROS) test. These findings provide useful information in elucidating the inhibitory effect of CNTs as a tool of drug delivery.
机译:碳纳米管(CNT)广泛应用于各种作为工程,物理和医学的领域。 CNTS的独特物理性质和力量在如此广泛的应用中发挥着重要部分。然而,涉及CNT作为生物医学中治疗蛋白,肽和基因的输送工具的有害影响。 CNT扰动正常的神经元功能,积累并导致脑损伤。据报道,未官能化的CNT在细胞中引起毒性而不是官能化的CNT。因此,应严格测试CNT对细胞对细胞的影响。在本研究中,将未官能化的多壁CNT引入人神经母细胞瘤(SH-SY5Y)细胞中以研究毒性效应。神经毒性试验表明,在100pg / ml -1mg / ml下CNT的细胞活力高于80%。神经保护试验显示,分别在1μg/ ml -1mg / ml和1pg / ml - 100ng / ml浓度范围内小于40%和50%的能量小于40%和50%。随着使用反应性氧(ROS)试验的CNT浓度的增加,降低了活细胞的数量。这些发现提供了有用的信息,阐明CNT作为药物递送工具的抑制作用。

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