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Assessment of cytotoxicity of quantum dots and gold nanoparticles using cell-based impedance spectroscopy

机译:基于细胞的阻抗谱法评估量子点和金纳米颗粒的细胞毒性

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摘要

A continuous online technique based on electric cellsubstrate impedance sensing (ECIS) was demonstrated for measuring the concentration and time response function of fibroblastic V79 cells exposed to nanomaterials such as quantum dots (QDs) and fluorescent gold nanoparticles. The half-inhibition concentration, (ECIS50), the required concentration to attain 50% inhibition of the cytotoxic response, was estimated from the response function to ascertain cytotoxicity during the course of measurement. The ECIS50 values agreed well with the results obtained using the standard neutral red assay. Cadmium selenide quantum dots showed direct cytoxicity with the ECIS assay. For the cadmium telluride quantum dots, significant toxicity could be assigned to free cadmium, although additional toxicity could be attributed to the QDs per se. The QDs synthesized with indium gallium phosphide and the fluorescent gold nanoparticles were not cytotoxic.
机译:连续在线技术被证明可用于测量暴露于纳米材料(例如量子点(QD)和荧光金纳米颗粒)的成纤维细胞V79细胞的浓度和时间响应功能。从抑制功能确定在测量过程中的细胞毒性,估算半抑制浓度(ECIS50),以达到抑制细胞毒性反应50%所需的浓度。 ECIS50值与使用标准中性红分析获得的结果非常吻合。硒化镉量子点在ECIS分析中显示出直接的细胞毒性。对于碲化镉量子点,可以将明显的毒性赋予游离镉,尽管其他毒性可能归因于量子点本身。用磷化铟镓和荧光金纳米颗粒合成的量子点没有细胞毒性。

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