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Fluorescence Intensity and Lifetime Cell Imaging with Luminescent Gold Nanoclusters

机译:荧光强度和寿命细胞成像与荧光金纳米簇

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摘要

In this article, luminescent properties of gold nanoclusters (AuNCs) were studied at the single nanoparticle level and also used as novel imaging agents in cell media. Two types of water-soluble AuNCs which were stabilized with a monolayer composed of either mercaptosuccinic acid (MSA) or tiopronin thiolate ligands were synthesized by a chemical reduction reaction. These AuNCs were determined to have an average core diameter of less than 2 nm. On a time-resolved confocal microscope, the emission signals from the single AuNCs were distinctly recordable. The quantum yields of these AuNCs were measured to be ca. 5%. The lifetime of these AuNCs is also much longer than the lifetime of cellular autofluorescence in lifetime cell imaging as well as the lifetime of organic dye Alexa Fluor 488. After being derivatized with polyethylene glycol (PEG) moieties, the AuNCs were uploaded efficiently in the HeLa cells. Fluorescence intensity and lifetime cell images were recorded on the time-resolved confocal microscope in which the emission from the AuNCs was readily differentiated from the cellular autofluorescence background because of their relatively stronger emission intensities and longer lifetimes. These loaded nanoclusters in the cells were observed to widely distribute throughout the cells and especially densely loaded near the cell nucleuses. The AuNCs in the cells were also tested to have a better photostability relative to the organic fluorophores under the same conditions. We thus conclude that the AuNCs have a great potential as novel nanoparticle imaging agents, especially as lifetime imaging agents, in fluorescence imaging applications. We also prospect much broader applications of these AuNCs after further improvements of their luminescence quantum yields.
机译:在本文中,研究了金纳米团簇(AuNCs)在单个纳米颗粒水平上的发光特性,并将其用作细胞培养基中的新型成像剂。通过化学还原反应合成了由巯基琥珀酸(MSA)或硫普罗宁硫醇盐配体组成的单层稳定化的两种水溶性AuNC。确定这些AuNC的平均芯直径小于2nm。在时间分辨共聚焦显微镜上,可以清楚地记录单个AuNCs的发射信号。这些AuNCs的量子产率被测量为约。 5%。这些AuNCs的寿命也比寿命细胞成像中的细胞自体荧光的寿命以及有机染料Alexa Fluor 488的寿命长得多。用聚乙二醇(PEG)部分衍生后,AuNCs有效地上传到HeLa中细胞。荧光强度和寿命细胞图像记录在时间分辨共聚焦显微镜上,其中AuNCs的发射很容易与细胞自体荧光背景区分开,因为它们具有相对较强的发射强度和更长的寿命。观察到细胞中这些负载的纳米团簇广泛分布在整个细胞中,尤其是在细胞核附近密集负载。还测试了细胞中的AuNCs在相同条件下相对于有机荧光团具有更好的光稳定性。因此,我们得出结论,在荧光成像应用中,AuNCs作为新型纳米颗粒成像剂,尤其是作为终身成像剂,具有巨大的潜力。在进一步提高其发光量子产率之后,我们还期待这些AuNC的更广泛的应用。

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