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InP/ZnS 量子点的细胞毒性与活性氧的产生有关。

Cytotoxicity of InP/ZnS quantum dots related to reactive oxygen species generation.

机构信息

Department of Biomedical Engineering, McGill University, 3775 Rue University, Montreal, QC H3A 2B4, Canada.

出版信息

Nanoscale. 2011 Jun;3(6):2552-9. doi: 10.1039/c1nr10131e. Epub 2011 Apr 21.

Abstract

Indium phosphide (InP) quantum dots (QDs) have emerged as a presumably less hazardous alternative to cadmium-based particles, but their cytotoxicity has not been well examined. Although their constituent elements are of very low toxicity to cells in culture, they nonetheless exhibit phototoxicity related to generation of reactive oxygen species by excited electrons and/or holes interacting with water and molecular oxygen. Using spin-trap electron paramagnetic resonance (EPR) spectroscopy and reporter assays, we find a considerable amount of superoxide and a small amount of hydroxyl radical formed under visible illumination of biocompatible InP QDs with a single ZnS shell, comparable to what is seen with CdTe. A double thickness shell reduces the reactive oxygen species concentration approximately two-fold. Survival assays in five cell lines correspondingly indicate a distinct reduction in toxicity with the double-shell InP QDs. Toxicity varies significantly across cell lines according to the efficiency of uptake, being overall significantly less than what is seen with CdTe or CdSe/ZnS. This indicates that InP QDs are a useful alternative to cadmium-containing QDs, while remaining capable of electron-transfer processes that may be undesirable or which may be exploited for photosensitization applications.

摘要

磷化铟 (InP) 量子点 (QDs) 作为一种潜在的危害性较小的镉基粒子替代品而出现,但它们的细胞毒性尚未得到充分研究。虽然它们的组成元素在培养的细胞中毒性非常低,但它们仍然表现出光毒性,这与受激电子和/或空穴与水和分子氧相互作用产生的活性氧物种有关。使用自旋捕获电子顺磁共振 (EPR) 光谱和报告基因检测,我们发现具有单个 ZnS 壳的生物相容性 InP QDs 在可见光照射下形成了相当数量的超氧阴离子和少量的羟基自由基,与 CdTe 相似。双层壳可将活性氧物种的浓度降低约两倍。在五种细胞系中的存活检测相应地表明,双层 InP QDs 的毒性明显降低。根据摄取效率,细胞系之间的毒性差异很大,总体上明显低于 CdTe 或 CdSe/ZnS。这表明 InP QDs 是一种替代含镉 QDs 的有用选择,同时仍然能够进行电子转移过程,这些过程可能是不期望的,或者可能被用于光致敏应用。

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