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首页> 外文期刊>Sensors and Actuators >Toxicity analysis of graphene nanoflakes by cell-based electrochemical sensing using an electrode modified with nanocomposite of graphene and Nafion
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Toxicity analysis of graphene nanoflakes by cell-based electrochemical sensing using an electrode modified with nanocomposite of graphene and Nafion

机译:使用石墨烯和Nafion纳米复合材料修饰的电极,通过基于细胞的电化学传感对石墨烯纳米片进行毒性分析

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摘要

To evaluate the cytotoxicity of nanomaterials, cell-based electrochemical sensing of extracellular H_2O_2 with a nanocomposite-modified indium tin oxide (ITO) electrode was carried out. The ITO working electrode was modified with a nanocomposite film of Nafion and chemically-driven graphene (G) using the electrospray method. The cyclic voltammetric measurements of H_2O_2 molecules using the nanocomposite-modified electrode showed a high sensitivity (82.6 μAmM~(-1) cm~(-2)) due to the enhancement of the electrochemical signal by the nanocomposite. The mini-cell culture system integrated with the nanocomposite electrochemical transducer was used to carry out a toxicity analysis of G nanoflakes under size-, concentration- and time-dependent influences. Quantitative sensing of extracellular H_2O_2 released from HeLa cells treated with different sizes and concentrations of G nanoflakes was performed by cyclic voltammetry, and optical bioassays were also used to complement the electrochemical measurements. The H_2O_2 concentrations after treatment by nanoflakes with different concentrations continuously increased up to 1 M, 20-fold higher than the H_2O_2 concentration of about 50 mM for untreated cells after 24 h. The results also showed that the increased tendency in measured H_2O_2 concentration as the concentration of the G nanoflakes increased was consistent with the results of the toxicity analysis data obtained by optical bioassays. Also, we confirmed increased cytotoxicity for smaller G size at the same concentration. These toxicity analyses by cell-based electrochemical sensors are of great interest for the toxicity assessment of nanomaterials having various biomedical and environmental applications.
机译:为了评估纳米材料的细胞毒性,使用纳米复合材料修饰的铟锡氧化物(ITO)电极对细胞外H_2O_2进行了基于细胞的电化学传感。使用电喷雾法,用Nafion的纳米复合膜和化学驱动的石墨烯(G)修饰ITO工作电极。由于纳米复合材料增强了电化学信号,使用纳米复合材料修饰的电极对H_2O_2分子进行的循环伏安测量显示出高灵敏度(82.6μAmM〜(-1)cm〜(-2))。与纳米复合电化学换能器集成的微型细胞培养系统用于在大小,浓度和时间依赖性影响下对G纳米薄片进行毒性分析。通过循环伏安法对从用不同大小和浓度的G纳米薄片处理的HeLa细胞释放的细胞外H_2O_2进行定量感测,并使用光学生物测定法来补充电化学测量。用不同浓度的纳米薄片处理后,H_2O_2的浓度连续增加至1 M,比24小时后未处理细胞的H_2O_2浓度(约50 mM)高20倍。结果还表明,随着G纳米片浓度的增加,H_2O_2浓度的增加趋势与通过光学生物测定获得的毒性分析数据的结果一致。同样,我们确认了在相同浓度下,较小的G尺寸会增加细胞毒性。通过基于细胞的电化学传感器进行的这些毒性分析对于具有各种生物医学和环境应用的纳米材料的毒性评估非常感兴趣。

著录项

  • 来源
    《Sensors and Actuators 》 |2013年第11期| 454-461| 共8页
  • 作者单位

    School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Kyunggi-do 440-746, Republic of Korea;

    School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Kyunggi-do 440-746, Republic of Korea;

    School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Kyunggi-do 440-746, Republic of Korea;

    School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Kyunggi-do 440-746, Republic of Korea ,SKKU Advanced Institute of Nanotechnology and Samsung Advanced Institute for Health Sciences and Technology, Sungkyunkwan University, Suwon, Kyunggi-do 440-746, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Graphene; Electrochemical sensor; Graphene/Nafion modified electrode; HeLa cells; Toxicity analysis; H_2O_2;

    机译:石墨烯电化学传感器石墨烯/ Nafion修饰电极;HeLa细胞;毒性分析;H_2O_2;

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