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一种集成于智能手机的细菌芽孢生物标志物多色荧光探针:天然粘土材料与金属有机框架的结合

A smartphone-integrated multicolor fluorescence probe of bacterial spore biomarker: The combination of natural clay material and metal-organic frameworks.

作者信息

Jia Lei, Chen Xiangzhen, Xu Jun, Zhang Lina, Guo Shengli, Bi Ning, Zhu Taofeng

机构信息

College of Chemistry and Chemical Engineering, Henan Polytechnic University, No. 2001 Shiji Road Jiaozuo, Henan, 454000, China.

College of Chemistry and Chemical Engineering, Henan Polytechnic University, No. 2001 Shiji Road Jiaozuo, Henan, 454000, China.

出版信息

J Hazard Mater. 2021 Jan 15;402:123776. doi: 10.1016/j.jhazmat.2020.123776. Epub 2020 Aug 24.

Abstract

The metal-organic frameworks (MOFs) functionalized palygorskite (Pal) hybrid as a novel multicolor fluorescence probe for the detection of bacterial spore biomarker-dipicolinic acid (DPA), had been prepared via in-situ growth. The MOFs can effectively encapsulate dye molecules on the surface of Pal, and the rich carboxyl groups on its surface can coordinate with europium ions (Eu), forming a highly sensitive recognition group. The results indicated that the limit of detection (LOD) of this multicolor fluorescence probe was as low as 9.3 nM and was obviously lower than the amount of anthrax spores infecting the human body (60 μM). Moreover, a wide linear range from 0 to 35 μM was obtained. The high specific surface area of Pal, as well as the permanent porosity and suitable binding sites of Eu-doped MOFs may play a major role in the sensitivity and linear detection range. The multicolor fluorescence strategy made full use of the diversity of fluorescence signals collected by dye molecules and lanthanide ions, which can realize the real-time and on-site detection through the smartphone with a color-scanning application (APP). The practicability of this probe was further verified by detecting DPA released by non-infectious Bacillus subtilis.

摘要

通过原位生长制备了金属有机框架(MOF)功能化的坡缕石(Pal)杂化物,作为一种用于检测细菌芽孢生物标志物吡啶二羧酸(DPA)的新型多色荧光探针。MOF 可以有效地将染料分子包裹在 Pal 表面,其表面丰富的羧基可以与铕离子(Eu)配位,形成高灵敏度的识别基团。结果表明,这种多色荧光探针的检测限低至 9.3 nM,明显低于感染人体的炭疽芽孢数量(60 μM)。此外,获得了 0 至 35 μM 的宽线性范围。Pal 的高比表面积以及 Eu 掺杂 MOF 的永久孔隙率和合适的结合位点可能在灵敏度和线性检测范围方面起主要作用。多色荧光策略充分利用了染料分子和镧系离子收集的荧光信号的多样性,通过带有颜色扫描应用程序(APP)的智能手机可实现实时现场检测。通过检测非感染性枯草芽孢杆菌释放的 DPA 进一步验证了该探针的实用性。

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