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一种涉及芘的发光 MOF,用于监测 1-羟基芘,这是一种用于人体暴露于多环芳烃致癌物的生物标志物。

A pyrene-involved luminescent MOF for monitoring 1-hydroxypyrene, a biomarker for human intoxication of PAH carcinogens.

机构信息

Faculty of Materials Science and Chemical Engineering, Ningbo University, Ningbo 315211, Zhejiang, China.

出版信息

Analyst. 2018 Jul 23;143(15):3628-3634. doi: 10.1039/c8an00909k.

Abstract

1-Hydroxypyrene (1-HP) is a urinary metabolite of polycyclic aromatic hydrocarbons (PAHs), and can function as a convenient biomarker for human intoxication of PAH carcinogens. The development of simple 1-HP sensors with high sensitivity and fast response is highly desirable. Herein, we demonstrate that a robust microcrystalline MOF with fluorescent pyrene cores, NU-1000, exhibits sensitive luminescence detection of urinary 1-HP. The pyrene core within NU-1000 behaves as the signal converter, whose luminescence is significantly quenched upon coming into contact with 1-HP owing to the efficient π-π charge transfer interactions between highly conjugated 1-HP and pyrene cores in NU-1000. The pore confinement effect of the molecular-sized channel of NU-1000 facilitates the preconcentration of 1-HP within NU-1000, which makes 1-HP contact with NU-1000 more sufficient therefore enhancing the detection efficiency. The charge transfer-related quenching mechanism is elucidated by diffuse-reflectance UV-vis and electron paramagnetic resonance (EPR) measurements, and a radical pair state is observed in NU-1000 upon accommodation of 1-HP. This work provides important insights into the development of MOF-based luminescent sensors for 1-HP, and should stimulate further studies toward designing more efficient MOFs with highly conjugated luminescent cores for 1-HP sensing.

摘要

1-羟基芘(1-HP)是多环芳烃(PAHs)的尿液代谢物,可作为人类接触 PAH 致癌物的方便生物标志物。因此,开发具有高灵敏度和快速响应的简单 1-HP 传感器是非常可取的。在此,我们证明了具有荧光芘核心的坚固微晶体 MOF,NU-1000,对尿液 1-HP 表现出灵敏的发光检测。NU-1000 中的芘核心充当信号转换器,由于高度共轭的 1-HP 和 NU-1000 中的芘核心之间的有效π-π电荷转移相互作用,当与 1-HP 接触时,其发光会明显猝灭。NU-1000 的分子尺寸通道的孔限制效应有利于在 NU-1000 中预浓缩 1-HP,这使得 1-HP 与 NU-1000 接触更加充分,从而提高了检测效率。通过漫反射紫外可见和电子顺磁共振(EPR)测量阐明了电荷转移相关的猝灭机制,并在容纳 1-HP 时在 NU-1000 中观察到自由基对态。这项工作为基于 MOF 的 1-HP 发光传感器的开发提供了重要的见解,应该会激发更多研究设计具有高共轭发光核心的更高效 MOF 用于 1-HP 传感。

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