College of Chemistry, Nanchang University, Nanchang, 330031, China.
Environmental Protection Materials and Equipment Engineering Technology Center of Jiangxi, College of Materials and Chemical Engineering, Pingxiang University, Pingxiang, 337055, China.
Mikrochim Acta. 2019 Jan 4;186(1):45. doi: 10.1007/s00604-018-3125-7.
A ratiometric fluorometric method is described for the determination of arsenate via its inhibitory effect on the activity of the enzyme acid phosphatase. A nanoprobe was designed that consists of CdSe/ZnS quantum dots (QDs) coated with the terbium(III) complex of guanosine monophosphate (Tb-GMP). The nanoprobe was synthesized from carboxylated QDs, Tb(III) and GMP via binding of Tb(III) by both the carboxy and the phosphate groups. The nanoprobe, under single-wavelength excitation (at 280 nm), displays dual (red and green) emission, with peaks at around 652 nm from the QDs, and at 547 nm from the Tb-GMP coordination polymers. It is shown to be a viable nanoprobe for fluorometric determination of As(V) detection through it inhibitory action on the activity of acid phosphatase (ACP). The enzyme destroys the Tb-GMP structure via hydrolysis of GMP, and hence the fluorescence of the Tb-GMP complex is quenched. In contrast, the fluorescence of the CdSe/ZnS QDs remains inert to ACP. It therefore can serve as an internal reference signal. In the presence of arsenate (an analog of phosphate), the activity of ACP is inhibited due to competitive binding. Thus, hydrolysis of GMP is prevented. These findings were used to design a ratiometric fluorometric method for the quantification of As(V). The ratio of fluorescences at 547 and 652 nm increases linearly in the 0.5 to 200 ppb As(V) concentation range, and the limit of detection is 0.39 ppb. Under a UV lamp, the probe shows distinguishable color from green to red on increasing the concentration of As(V). Graphical abstract Schematic illustration of CdSe/ZnS quantum dot coated with carboxy-PEG and modified with the terbium(III)-GMP complex as a fluorescent nanoprobe for ratiometric determination of arsenate via its inhibition of ACP activity.
一种比率荧光法用于通过其对酸性磷酸酶活性的抑制作用来测定砷酸盐。设计了一种纳米探针,它由 CdSe/ZnS 量子点 (QD) 涂覆三价铽(III)与单磷酸鸟苷的复合物(Tb-GMP)组成。纳米探针是通过 QD 上的羧基和磷酸基团与 Tb(III)的结合,从羧基化 QD、Tb(III)和 GMP 合成的。在单波长激发(在 280nm)下,纳米探针显示出双(红和绿)发射,QD 约 652nm 处的峰和 Tb-GMP 配位聚合物约 547nm 处的峰。结果表明,它是一种可行的纳米探针,可通过抑制酸性磷酸酶(ACP)的活性来进行荧光测定砷酸盐(磷酸盐的类似物)的检测。酶通过 GMP 的水解破坏 Tb-GMP 结构,因此 Tb-GMP 配合物的荧光被猝灭。相反,CdSe/ZnS QD 的荧光对 ACP 保持惰性。因此,它可以作为内部参考信号。在存在砷酸盐的情况下,由于竞争性结合,ACP 的活性受到抑制。因此,GMP 的水解被阻止。这些发现被用于设计用于定量测定 As(V)的比率荧光法。在 0.5 至 200ppb As(V)浓度范围内,547nm 和 652nm 处的荧光强度比线性增加,检测限为 0.39ppb。在紫外灯下,随着 As(V)浓度的增加,探针的颜色从绿色变为红色,具有可区分的颜色。