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Mechanism of Cell Interactions with Water-Dispersed Carbon Nanohorns

机译:细胞与水分散的碳纳米角相互作用的机理

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The interaction of water-dispersed nanocarbon materials with mammalian cells has been a matter of great interest. Here, we show a possible mechanism of cell interaction with single-walled carbon nanohorns (CNHs). Individually isolated CNHs in H_2O, which were noncovalently modified with a polyethylene glycol (PEG)-doxorubicin conjugate, were visualized by atomic force microscopy. Upon treatment of four types of mammalian cells with the PEG-modified CNHs (PEG-d-CNHs), only two cell lines showed a strong affinity to CNHs. The cell interaction with PEG-d-CNHs was temperature-sensitive, suggesting the involvement of endocytosis in it. The CNHs were clearly observed on the ruffled plasma membranes as well as in the membrane compartments inside the cells by electron microscopy. Cell sorter analysis demonstrated that this cell interaction with PEG-d-CNHs was effectively inhibited by treatment with cytochalasin B, an inhibitor of membrane ruffling and macropinocytosis. Under our experimental conditions, no significant cytotoxicity was detected. These data suggest that macropinocytosis after membrane ruffling is responsible for the cell interaction.
机译:水分散的纳米碳材料与哺乳动物细胞的相互作用已经引起人们极大的兴趣。在这里,我们展示了细胞与单壁碳纳米角(CNHs)相互作用的可能机制。通过原子力显微镜观察到单独分离的H_2O中的CNH,该CNHs被聚乙二醇(PEG)-阿霉素结合物非共价修饰。用PEG修饰的CNH(PEG-d-CNHs)处理四种类型的哺乳动物细胞后,只有两种细胞系显示出对CNH的强亲和力。细胞与PEG-d-CNHs的相互作用对温度敏感,表明其参与了内吞作用。通过电子显微镜在褶皱的质膜以及细胞内部的膜室中清楚地观察到CNH。细胞分选分析表明,通过用细胞松弛素B(膜波纹和巨噬细胞增多的抑制剂)治疗,可有效抑制这种与PEG-d-CNHs的细胞相互作用。在我们的实验条件下,未检测到明显的细胞毒性。这些数据表明膜起皱后的巨胞饮作用是细胞相互作用的原因。

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