Target and non-target screening of biomarkers in wastewater: towards a unique analytical methodology for sample preparation.
Gauthier Bernier-TurpinThomas ThiebaultFabienne PetitEmmanuelle MeboldSabrina Guérin-RechdaouiMarcos OliveiraJulien Le RouxRégis MoilleronPublished in: Analytical methods : advancing methods and applications (2024)
This study aims to optimize a single preparation methodology based on solid-phase extraction (SPE) that could fit both target and non-target screening of organic biomarkers in raw wastewater, allowing the cross-comparison of results obtained from a same dataset. The efficiency of SPE sorbents used alone (HLB) or in combination in a multilayer cartridge was evaluated based on (i) the extraction recovery and matrix effect in environmental samples (surface water and wastewater) for a list of biomarkers (pharmaceuticals, licit and illicit drugs, artificial sweeteners, isoprostanes, polyphenols) and (ii) a number of detected features and their intensity in HRMS. The selected method uses a combination of three SPE sorbents mixed together (HLB, X-AW and X-CW) and seems to take full advantage of each, providing satisfactory validation parameters (recovery, instrumental limit of detection, linearity range and limit of quantification) over a large range of physico-chemical properties while ensuring promising results for non-target screening applications. Of the 65 targeted compounds, nearly all of them (47) were detected in wastewater influent samples with concentration above the limit of quantification, while at the same time over 10 000 features were recorded according to the high resolution mass spectrometry (HRMS) fingerprint, holding out the promise that a common protocol for these two analyses, with their very contrasting constraints and objectives, is possible.
Keyphrases
- solid phase extraction
- high resolution mass spectrometry
- liquid chromatography
- molecularly imprinted
- tandem mass spectrometry
- high performance liquid chromatography
- ultra high performance liquid chromatography
- liquid chromatography tandem mass spectrometry
- gas chromatography
- ms ms
- wastewater treatment
- mass spectrometry
- gas chromatography mass spectrometry
- simultaneous determination
- anaerobic digestion
- machine learning
- artificial intelligence
- real time pcr
- human health