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首页> 外文期刊>The Journal of toxicological sciences >Phagocytosis-dependent and independent mechanisms underlie the microglial cell damage caused by carbon nanotube agglomerates
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Phagocytosis-dependent and independent mechanisms underlie the microglial cell damage caused by carbon nanotube agglomerates

机译:依赖于吞噬作用的独立机制是碳纳米管团聚体引起的小胶质细胞损伤的基础

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Although carbon nanotubes (CNTs) are used in many fields, including energy, healthcare, environmental technology, materials, and electronics, the adverse effects of CNTs in the brain are poorly understood. In this study, we investigated the effects of CNTs on cultured microglia, as microglia are the first responders to foreign materials. We compared the effects of sonicated suspensions of 5 kinds of CNTs and their flow-through filtered with a 0.22 μm membrane filter on microglial viability. We found that sonicated suspensions caused microglial cell damage, but their flow-through did not. The number of microglial aggregates was well correlated with the extent of the damage. We also determined that the CNT agglomerates consisted of two groups: one was phagocytosed by microglia and caused microglial cell damage, and the other caused cell damage without phagocytosis. These results suggest that phagocytosis-dependent and independent mechanisms underlie the microglial cell damage caused by CNT agglomerates and it is important to conduct studies about the relationships between physical properties of nanomaterial-agglomerates and cell damage.
机译:尽管碳纳米管(CNTs)用于许多领域,包括能源,医疗保健,环境技术,材料和电子学,但人们对CNTs在大脑中的不良影响知之甚少。在这项研究中,我们调查了碳纳米管对培养的小胶质细胞的影响,因为小胶质细胞是异物的第一反应者。我们比较了5种CNT的超声处理悬浮液及其经0.22μm膜滤器过流过滤后对小胶质细胞活力的影响。我们发现,超声处理的悬浮液会引起小胶质细胞损伤,但它们的流通却没有。小胶质聚集体的数量与损伤程度密切相关。我们还确定了CNT团聚体由两组组成:一组被小胶质细胞吞噬并引起小胶质细胞损伤,另一组被吞噬而无吞噬作用。这些结果表明,吞噬作用依赖和独立的机制是由CNT团聚体引起的小胶质细胞损伤的基础,对纳米材料团聚体的物理性质与细胞损伤之间的关系进行研究非常重要。

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