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Photoluminescence and photostability investigations of biocompatible semiconductor nanocrystals coated with glutathione using low laser power

机译:使用低激光功率的谷胱甘肽包覆的生物相容性半导体纳米晶体的光致发光和光稳定性研究

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摘要

Great efforts are currently devoted to fabricate high-quality quantum dots (QDs) in aqueous solutions for biomedical applications. Two biocompatible systems consisting of core (CdSe) and core/ shell (CdSe/ZnS) QDs surface modified with glutathione (GSH), named CdSe-GSH and CdSe/ZnSGSH, respectively, were built. Upon photoirradiation using low laser power, both systems in HEPES buffer (pH 7.2) showed significant photoluminescence (PL) enhancements. CdSe/ZnS-GSH showed much less blue shifts in excitonic absorption and emission peaks without photobleaching compared with CdSe-GSH QDs system. X-ray diffraction showed that there is no change in the crystalline phase structure of the CdSe/ ZnS-GSH QDs system after 1 h irradiation. Cell viability assessment, in the dark, demonstrated that no cytotoxic effects were shown upon incubation CdSe/ZnS-GSH QDs with normal human skin cell line for periods up to 72 h and at concentrations up to 100 nM. The present study demonstrates that CdSe/ ZnS-GSH QDs system exhibits a high photostability with a relatively high PL efficiency in aqueous medium following low intensity photoexcitation, without dark cytotoxicity, making this system attractive for several important biomedical applications.
机译:目前,人们致力于在生物医学应用的水溶液中制造高质量的量子点(QD)。建立了两个由谷胱甘肽(GSH)表面修饰的核(CdSe)和核/壳(CdSe / ZnS)QD组成的生物相容性系统,分别称为CdSe-GSH和CdSe / ZnSGSH。使用低激光功率进行光辐照后,HEPES缓冲液(pH 7.2)中的两个系统均显示出显着的光致发光(PL)增强。与CdSe-GSH QDs系统相比,CdSe / ZnS-GSH在没有光致漂白的情况下,激子吸收和发射峰的蓝移少得多。 X射线衍射表明,照射1 h后CdSe / ZnS-GSH QDs系统的晶相结构没有变化。在黑暗中的细胞生存能力评估表明,将CdSe / ZnS-GSH QD与正常人皮肤细胞系孵育长达72小时,浓度高达100 nM后,未显示细胞毒性作用。本研究表明,CdSe / ZnS-GSH QDs系统在低强度光激发后在水性介质中表现出较高的光稳定性和相对较高的PL效率,而没有暗细胞毒性,这使得该系统对几种重要的生物医学应用具有吸引力。

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