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Rapid screening of acetylcholinesterase active contaminants in water: A solid phase microextraction-based ligand fishing approach.

Authors :
Huang, Zhoubing
He, Liwei
Li, Huizhen
Zhao, Junbo
Chen, Tianyang
Feng, Ziang
Li, Yangyang
You, Jing
Source :
Chemosphere. May2024, Vol. 356, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Effect-directed analysis (EDA) has been increasingly used for screening toxic contaminants in the environment, but conventional EDA procedures are often time-consuming and labor-extensive. This challenges the use of EDA for toxicant identification in the scenarios when quick answers are demanded. Herein, a solid phase microextraction ligand fishing (SPME-LF) strategy has been proposed as a rapid EDA approach for identifying acetylcholinesterase (AChE) active compounds in water. The feasibility of ligand fishing techniques for screening AChE active chemicals from environmental mixtures was first verified by a membrane separation method. Then, SPME fibers were prepared through self-assembly of boronic acid groups with AChE via co-bonding and applied for SPME-LF. As AChE coated SPME fibers selectively enriched AChE-active compounds from water, comparing sorbing compounds by the SPME fibers with and without AChE coating can quickly distinguish AChE toxicants in mixtures. Compared with conventional EDA, SPME-LF does not require repeating sample separations and bioassays, endowing SPME-LF with the merits of low-cost, labor-saving, and user-friendly. It is believed that cost-efficient and easy-to-use SPME-LF strategy can potentially be a rapid EDA method for screening receptor-specific toxicants in aquatic environment, especially applicable in time-sensitive screening. [Display omitted] • Ligand fishing is potentially used as a rapid effect-based analytical method. • AChE was immobilized on SPME fibers by self-assembly of boronic acid groups. • SPME-based ligand fishing method selectively adsorbed AChE active contaminants in water. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00456535
Volume :
356
Database :
Academic Search Index
Journal :
Chemosphere
Publication Type :
Academic Journal
Accession number :
176868390
Full Text :
https://doi.org/10.1016/j.chemosphere.2024.141976