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一锅法构建载酸磷酸酶和血红素的多功能金属-有机框架纳米片用于比率荧光砷酸盐传感。

One-pot construction of acid phosphatase and hemin loaded multifunctional metal-organic framework nanosheets for ratiometric fluorescent arsenate sensing.

机构信息

School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China; Institute of Green Chemistry and Chemical Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

Institute of Green Chemistry and Chemical Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

出版信息

J Hazard Mater. 2021 Jun 15;412:124407. doi: 10.1016/j.jhazmat.2020.124407. Epub 2020 Oct 29.

Abstract

Exploring high-performance sensors for toxic arsenic detection is highly desired because of its great threat to the environment. Herein, we report a ratiometric fluorescent biosensor based on acid phosphatase and hemin loaded multifunctional Zn-based metal-organic framework (ACP/hemin@Zn-MOF) for high-performance arsenate (As(Ⅴ)) sensing. ACP/hemin@Zn-MOF is constructed by self-assembly, where hemin exhibits peroxidase-like activity and 2-aminoterephthalic acid ligand endows ACP/hemin@Zn-MOF with an intrinsic fluorescence (452 nm). When ACP/hemin@Zn-MOF catalyzes the oxidation of o-phenylenediamine (OPD), fluorescent 2,3-diaminophenazine (DAP) with an emission signal (564 nm) is produced and weakens ACP/hemin@Zn-MOF intrinsic fluorescence (452 nm) due to inner filter effect; after adding ascorbic acid 2-phosphate (AAP), ACP can hydrolyze AAP and produce ascorbic acid, which competitively suppresses the oxidation of OPD, resulting in the decrease of DAP signal (564 nm) and the recovery of ACP/hemin@Zn-MOF signal (452 nm); when As(V) is added, it irreversibly poisons ACP against hydrolyzing AAP, and the fluorescence signal at 564 nm recovers and the one at 452 nm is suppressed again. High-sensitivity and high-selectivity detection of As(V) (3.33-300 μg L) is realized, with a detection limit of 1.05 μg L. The biosensor was also successfully employed to detect total arsenic and As(V) in rice.

摘要

探索用于检测有毒砷的高性能传感器是非常必要的,因为砷对环境有巨大威胁。在此,我们报告了一种基于酸性磷酸酶和血红素负载多功能锌基金属有机骨架(ACP/血红素@Zn-MOF)的比率荧光生物传感器,用于高性能砷酸盐(As(V))检测。ACP/血红素@Zn-MOF 通过自组装构建,其中血红素表现出过氧化物酶样活性,2-氨基对苯二甲酸配体赋予 ACP/血红素@Zn-MOF 固有荧光(452nm)。当 ACP/血红素@Zn-MOF 催化邻苯二胺(OPD)的氧化时,会产生具有发射信号(564nm)的荧光 2,3-二氨基吩嗪(DAP),由于内滤效应,会削弱 ACP/血红素@Zn-MOF 固有荧光(452nm);加入抗坏血酸 2-磷酸酯(AAP)后,ACP 可以水解 AAP 并产生抗坏血酸,从而竞争性抑制 OPD 的氧化,导致 DAP 信号(564nm)降低和 ACP/血红素@Zn-MOF 信号(452nm)恢复;当加入 As(V)时,它会不可逆地使 ACP 失活,无法水解 AAP,564nm 的荧光信号恢复,452nm 的荧光信号再次被抑制。实现了对 As(V)(3.33-300μg L)的高灵敏度和高选择性检测,检测限为 1.05μg L。该生物传感器还成功用于检测大米中的总砷和 As(V)。

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