首页> 外文会议>SPIE Conference on Reporters, Markers, Dyes, Nanoparticles, and Molecular Probes for Biomedical Applications >Probing intra-cellular drug release event using activatable (OFF/ON) CdS:Mn/ZnS quantum dots (Qdots): spectroscopic studies to investigate interaction of Qdots with quencher
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Probing intra-cellular drug release event using activatable (OFF/ON) CdS:Mn/ZnS quantum dots (Qdots): spectroscopic studies to investigate interaction of Qdots with quencher

机译:使用可激活(OFF / ON)CDS:Mn / ZnS量子点(Qdots)探测细胞内药物释放事件:光谱研究,以研究Qdots与猝灭剂的相互作用

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摘要

In recent years, activatable Quantum Dots (AQdots) are gaining popularity in a number of chemical and biological sensing applications. A basic design of AQdot probes involves a suitable quencher which is capable of altering optical properties of the Qdots. In our previous studies we have shown that CdS:Mn/ZnS fluorescence can be effectively quenched using small molecule quenchers (such as dopamine, chemotherapeutic drug) as well as iron oxide nanoparticle via electron/energy transfer process. We have also shown that the quenched Qdot fluorescence can be restored when the Qdots are separated from the quencher. Using Qdot based activatable probes, we detected intracellular drug release event. Qdot fluorescence was restored upon interaction with the intracellular glutathione (GSH). In this paper, we report a GSH induced quenching of water-soluble N-Acetyl Cysteine (NAC) surface-conjugated Cds:Mn/ZnS Qdots. Quenching of NAC-Qdots was due to aggregation of Qdots in solution. This aggregation induced fluorescence quenching phenomenon resembles with the self-quenching phenomenon of traditional organic fluorescence dyes at high concentrations. UV-VIS and fluorescence emission spectroscopy data support the interaction and binding of GSH with the NAC-Qdots. Increase in particle size due to GSH induced aggregation of NAC-Qdots was confirmed by the Dynamic Light Scattering (DLS) data.
机译:近年来,可激活量子点(AQDOTS)在许多化学和生物传感应用中获得普及。 Aqdot探针的基本设计涉及合适的猝灭剂,其能够改变Qdots的光学性质。在我们以前的研究中,我们已经表明CDS:Mn / ZnS荧光可以使用小分子猝灭剂(例如多巴胺,化学治疗药物)以及通过电子/能量转移方法的氧化铁纳米颗粒有效地淬灭。我们还表明,当Qdo​​ts与猝灭剂分离时,可以恢复淬火Qdot荧光。使用基于QDOT的可活化探针,我们检测到细胞内的药物释放事件。在与细胞内谷胱甘肽(GSH)相互作用时恢复QDOT荧光。在本文中,我们报告了GSH诱导的水溶性N-乙酰半胱氨酸(NAC)表面缀合的CDS:Mn / ZnS Qdots的猝灭。 NAC-QDOTS的淬火是由于溶液中Qdots的聚集。该聚集诱导荧光猝灭现象类似于高浓度的传统有机荧光染料的自熄现象。 UV-VI和荧光发射光谱数据支持GSH与NAC-QDOTS的相互作用和结合。通过动态光散射(DLS)数据证实了由于GSH诱导的NAC-QDOTS的聚集而导致的粒度的增加。

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