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一种电化学适体传感器,整合沸石咪唑酯骨架用于高选择性检测生物气溶胶。

An Electrochemical Aptasensor Integrating Zeolitic Imidazolate Framework for Highly Selective Detection of Bioaerosols.

机构信息

Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education) and Dalian POCT Laboratory, School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, China.

出版信息

Biosensors (Basel). 2022 Sep 4;12(9):725. doi: 10.3390/bios12090725.

Abstract

Bioaerosols are the biological materials in the air, which may cause a continuous threat to human health. However, there are many challenges in monitoring bioaerosols such as lack of sensitivity and selectivity. Herein, we synthesized a series of nanohybrids containing zeolitic imidazolate frameworks (ZIFs) and covalent organic frameworks (COFs) to construct an electrochemical aptasensor for detecting adenosine triphosphate (ATP), a biomarker for bioaerosols. The synthesized nanohybrids can not only improve the selectivity of aptasensor because of the original crystal and chemical features of ZIF-67, but also boost its sensitivity due to the excellent conductivity of COFs. After optimizing the nanohybrids, the novel developed sensing platform achieved highly selective detection of ATP with an excellent detection limit of 0.11 nM in a wide linear range from 0.1 nM to 100 nM. Furthermore, this assay was applied to detect bioaerosols in real air samples, and the result showed a positive correlation with that of the culturing-based method, suggesting its potential applicability.

摘要

生物气溶胶是空气中的生物材料,可能会对人类健康造成持续威胁。然而,生物气溶胶的监测存在许多挑战,例如灵敏度和选择性不足。在此,我们合成了一系列含有沸石咪唑骨架(ZIFs)和共价有机骨架(COFs)的纳米杂化物,构建了一种电化学适体传感器,用于检测生物气溶胶的生物标志物三磷酸腺苷(ATP)。合成的纳米杂化物不仅由于 ZIF-67 的原始晶体和化学特性提高了适体传感器的选择性,而且由于 COFs 的优异导电性提高了其灵敏度。在优化纳米杂化物后,新型传感平台实现了对 ATP 的高选择性检测,在 0.1 nM 至 100 nM 的宽线性范围内检测限低至 0.11 nM。此外,该方法还用于检测实际空气样本中的生物气溶胶,其结果与基于培养的方法呈正相关,表明其具有潜在的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3965/9496278/22e90ee665a3/biosensors-12-00725-g001.jpg

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