Photophysics of dopamine-modified quantumdots and effects on biological systems

被引:257
作者
Clarke, SJ
Hollmann, CA
Zhang, ZJ
Suffern, D
Bradforth, SE
Dimitrijevic, NM
Minarik, WG
Nadeau, JL [1 ]
机构
[1] McGill Univ, Dept Biomed Engn, Montreal, PQ H3A 2B4, Canada
[2] Univ So Calif, Dept Chem, Los Angeles, CA 90089 USA
[3] Argonne Natl Lab, Chem Dept, Argonne, IL 60439 USA
[4] McGill Univ, Dept Earth & Planetary Sci, Montreal, PQ H3A 2B4, Canada
基金
加拿大健康研究院; 美国能源部;
关键词
D O I
10.1038/nmat1631
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Semiconductor quantum dots ( QDs) have been widely used for fluorescent labelling. However, their ability to transfer electrons and holes to biomolecules leads to spectral changes and effects on living systems that have yet to be exploited. Here we report the first cell-based biosensor based on electron transfer between a small molecule ( the neurotransmitter dopamine) and CdSe/ZnS QDs. QD-dopamine conjugates label living cells in a redox-sensitive pattern: under reducing conditions, fluorescence is only seen in the cell periphery and lysosomes. As the cell becomes more oxidizing, QD labelling appears in the perinuclear region, including in or on mitochondria. With the most-oxidizing cellular conditions, QD labelling throughout the cell is seen. Phototoxicity results from the creation of singlet oxygen, and can be reduced with antioxidants. This work suggests methods for the creation of phototoxic drugs and for redox-specific fluorescent labelling that are generalizable to any QD conjugated to an electron donor.
引用
收藏
页码:409 / 417
页数:9
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