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Using Gold Nanoclusters As Selective Luminescent Probes for Phosphate-Containing Metabolites

机译:使用金纳米团簇作为含磷代谢物的选择性发光探针

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Glutathione-bound gold nanoclusters (AuNCs@GSH) can emit reddish photoluminescence under illumination of ultraviolet light. The luminescence of the AuNCs@GSH is quenched when chelating with iron ions (AuNCs@GSH-Fe~(3+)), presumably resulting from the effective electron transfer between the nanoclusters and iron ions. Nevertheless, we found that the luminescence of the gold nanoclusters can be restored in the presence of phosphate-containing molecules, which suggested the possibility of using AuNCs@GSH-Fe~(3+) complexes as the selective luminescent switches for phosphate-containing metabolites. Phosphate-containing metabolites such as adenosine-5'-triphosphate (ATP) and pyrophosphate play an important role in biological systems. In this study, we demonstrated that the luminescence of the AuNCs@GSH-Fe~(3+) is switched-on when mixing with ATP and pyrophosphate, which can readily be observed by the naked eye. It results from the high formation constants between phosphates and iron ions. When employing fluorescence spectroscopy as the detection tool, quantitative analysis for phosphate-containing metabolites such as ATP and pyrophosphate can be conducted. The linear range for ATP and pyrophosphate is 50 (mu)M to sub-millimolar, while the limit of detection for ATP and pyrophosphate are approx43 and approx28 (mu)M, respectively. Additionally, we demonstrated that the luminescence of the AuNCs@GSH-Fe~(3+) can also be turned on in the presence of phosphate-containing metabolites from cell lysates and blood plasma.
机译:谷胱甘肽结合的金纳米团簇(AuNCs @ GSH)在紫外线照射下会发出微红色的光致发光。当与铁离子(AuNCs @ GSH-Fe〜(3+))螯合时,AuNCs @ GSH的发光被淬灭,这大概是由于纳米团簇和铁离子之间的有效电子转移所致。然而,我们发现在含磷酸盐的分子存在下金纳米团簇的发光可以恢复,这表明使用AuNCs @ GSH-Fe〜(3+)配合物作为含磷酸盐的代谢物的选择性发光开关的可能性。 。含磷酸盐的代谢产物,如5'-三磷酸腺苷(ATP)和焦磷酸盐在生物系统中起重要作用。在这项研究中,我们证明了与ATP和焦磷酸盐混合时AuNCs @ GSH-Fe〜(3+)的发光是打开的,这可以用肉眼容易地观察到。这是由于磷酸盐和铁离子之间的高形成常数所致。当使用荧光光谱作为检测工具时,可以对含磷酸盐的代谢物(例如ATP和焦磷酸盐)进行定量分析。 ATP和焦磷酸盐的线性范围是50μM到亚毫摩尔,而ATP和焦磷酸盐的检出限分别是大约43和大约28μM。此外,我们证明了AuNCs @ GSH-Fe〜(3+)的发光也可以在细胞裂解液和血浆中含有磷酸盐的代谢产物存在的情况下开启。

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