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未经修饰的 CdTe 量子点、金纳米粒子和碳纳米点对活细胞和绿豆芽的毒性效应的平行对比研究。

Parallel comparative studies on the toxic effects of unmodified CdTe quantum dots, gold nanoparticles, and carbon nanodots on live cells as well as green gram sprouts.

机构信息

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Talanta. 2013 Nov 15;116:237-44. doi: 10.1016/j.talanta.2013.05.022. Epub 2013 May 16.

Abstract

By using confocal fluorescence microscopy and direct visualization, a parallel comparative investigation has been systematically made on the relative toxicity of three common nanomaterials, such as unmodified CdTe quantum dots (QDs), Au nanoparticles (Au NPs) and carbon nanodots (C-dots), to live cells as well as green gram sprouts. Bare CdTe QDs exert the most toxic effect on a variety of cell lines (HeLa, MCF-7, NIH/3T3 cells) as well as live plants (green gram sprouts). For cells, this toxic effect leads to the partial death of cells, the decrease of cell metabolic activity, the shrinkage of cells, the breakage of chromatin, the damage of cell membrane integrity, and the fragmentation of mitochondria; for green gram sprouts, the presence of CdTe QDs markedly inhibits their growth. Moreover, the toxic behaviors of CdTe QDs are dose- and time-dependent. Under the same conditions, Au NPs only decrease the metabolic activity of cells to a small extent, and do not affect the appearance of cellular/subcellular structures and the plant growth; interestingly, C-dots exert no obvious toxicity to both live cells and the growth of green gram sprouts, showing good biocompatibility. These parallel comparative studies clearly reveal that the relative toxicity of the three nanomaterials in their native forms is bare CdTe QDs>>Au NPs>C-dots, whose IC50 values for normal NIH/3T3 cells are 0.98 μg/mL, 62 μg/mL, and >250 μg/mL, respectively. This quantitative information is of great importance for right choice of the nanomaterials in their practical applications.

摘要

通过使用共聚焦荧光显微镜和直接可视化,系统地对三种常见纳米材料(如未经修饰的碲化镉量子点(CdTe QDs)、金纳米颗粒(Au NPs)和碳点(C-dots))对活细胞和绿豆芽的相对毒性进行了平行比较研究。裸 CdTe QDs 对多种细胞系(HeLa、MCF-7、NIH/3T3 细胞)以及活体植物(绿豆芽)均表现出最强的毒性作用。对于细胞,这种毒性作用导致细胞部分死亡、细胞代谢活性降低、细胞收缩、染色质断裂、细胞膜完整性受损以及线粒体碎片化;对于绿豆芽,CdTe QDs 的存在显著抑制了其生长。此外,CdTe QDs 的毒性行为具有剂量和时间依赖性。在相同条件下,Au NPs 仅在小程度上降低细胞的代谢活性,而不影响细胞/亚细胞结构的外观和植物的生长;有趣的是,C-dots 对活细胞和绿豆芽的生长均无明显毒性,表现出良好的生物相容性。这些平行比较研究清楚地表明,这三种纳米材料在其原生形式下的相对毒性为裸 CdTe QDs>>Au NPs>C-dots,其对正常 NIH/3T3 细胞的 IC50 值分别为 0.98μg/mL、62μg/mL 和>250μg/mL。这些定量信息对于正确选择纳米材料在实际应用中的应用非常重要。

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