Simultaneous analysis of multiple classes of antimicrobials in environmental water samples using SPE coupled with UHPLC-ESI-MS/MS and isotope dilution

A robust and sensitive analytical method was developed for the simultaneous analysis of 21 target antimicrobials in different environmental water samples. Both single SPE and tandem SPE cartridge systems were investigated to simultaneously extract multiple classes of antimicrobials. Experimental res...

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Veröffentlicht in:Talanta (Oxford) 2016-10, Vol.159, p.163-173
Hauptverfasser: Tran, Ngoc Han, Chen, Hongjie, Do, Thanh Van, Reinhard, Martin, Ngo, Huu Hao, He, Yiliang, Gin, Karina Yew-Hoong
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Sprache:eng
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Zusammenfassung:A robust and sensitive analytical method was developed for the simultaneous analysis of 21 target antimicrobials in different environmental water samples. Both single SPE and tandem SPE cartridge systems were investigated to simultaneously extract multiple classes of antimicrobials. Experimental results showed that good extraction efficiencies (84.5–105.6%) were observed for the vast majority of the target analytes when extraction was performed using the tandem SPE cartridge (SB+HR-X) system under an extraction pH of 3.0. HPLC-MS/MS parameters were optimized for simultaneous analysis of all the target analytes in a single injection. Quantification of target antimicrobials in water samples was accomplished using 15 isotopically labeled internal standards (ILISs), which allowed the efficient compensation of the losses of target analytes during sample preparation and correction of matrix effects during UHPLC-MS/MS as well as instrument fluctuations in MS/MS signal intensity. Method quantification limit (MQL) for most target analytes based on SPE was below 5ng/L for surface waters, 10ng/L for treated wastewater effluents, and 15ng/L for raw wastewater. The method was successfully applied to detect and quantify the occurrence of the target analytes in raw influent, treated effluent and surface water samples. [Display omitted] •Multiple classes of antimicrobials were simultaneously quantified by UHPLC-MS/MS.•UHPLC-MS/MS parameters for simultaneous analysis of antimicrobials were optimized.•A tandem SPE system was used to extract antimicrobials from environmental samples.•Matrix effects in UHPLC-MS/MS were corrected by isotope-labeled internal standards.•Applicability of method was demonstrated by analyzing environmental water samples.
ISSN:0039-9140
1873-3573
DOI:10.1016/j.talanta.2016.06.006