Matches in SemOpenAlex for { <https://semopenalex.org/work/W2742524206> ?p ?o ?g. }
- W2742524206 endingPage "20" @default.
- W2742524206 startingPage "9" @default.
- W2742524206 abstract "A fast and high-throughput method is proposed for the determination of total microcystins (ΣMC) in environmental surface waters. After a 1-h Lemieux-von Rudloff oxidation step to yield the 2-methyl-3-methoxy-4-phenylbutyric acid (MMPB) moiety, samples were quenched, filtered, and directly analyzed. This was achieved via solid phase extraction (SPE) coupled on-line to ultra-high performance liquid chromatography electrospray ionization triple stage quadrupole mass spectrometry. The choice of on-line SPE settings was conducted using experimental designs. Given the matrix complexity of oxidation extracts, the on-line desalting step was found to be a critical parameter to ensure suitable method robustness. The on-line sample loading volume was 5 mL, and the wash volume applied for on-line desalting was 3 mL. Instrumental analysis was performed in just 8 min. The method limit of quantification was 0.5 ng L−1 ΣMC (i.e. 2000 times lower than the current World Health Organization − WHO drinking water guideline). Excellent determination coefficients were observed for matrix-free and matrix-based calibration curves alike, and the linearity range tested spanned ∼ 4 orders of magnitude. Accuracy and intermediate precision did not depend on the spike level and proved satisfactory (in the range of 93–110% and 3–6%, respectively). A thorough assessment of instrumental matrix effects was conducted by comparing standard additions curves in several lake and river oxidation extracts with the matrix-free reference. Regardless of the internal standard used (4-PB or D3-MMPB), instrumental matrix effects were efficiently compensated. The matrix effect that may occur at the earlier sample preparation stage was evaluated separately. While the oxidation step was generally not complete (yield ∼ 65%), the conversion rates of MCs into MMPB remained within a consistent range of values regardless of matrix type. No significant back-pressure was observed upon consecutive injections of oxidation-based samples, while the instrumental sensitivity remained unaffected. The herein described method could therefore be eligible for future large-scale monitoring surveys. The method was applied to a selection of surface water samples (n = 30) collected across the province of Québec, Canada, and the results were compared to those achieved by an individual variant analysis of 8 MC congeners and a commercial ELISA kit." @default.
- W2742524206 created "2017-08-17" @default.
- W2742524206 creator A5003172054 @default.
- W2742524206 creator A5006414792 @default.
- W2742524206 creator A5043898068 @default.
- W2742524206 creator A5077764215 @default.
- W2742524206 creator A5079010139 @default.
- W2742524206 date "2017-09-01" @default.
- W2742524206 modified "2023-10-10" @default.
- W2742524206 title "Analysis of individual and total microcystins in surface water by on-line preconcentration and desalting coupled to liquid chromatography tandem mass spectrometry" @default.
- W2742524206 cites W1965576875 @default.
- W2742524206 cites W1969048724 @default.
- W2742524206 cites W1971288431 @default.
- W2742524206 cites W1975356469 @default.
- W2742524206 cites W1990031184 @default.
- W2742524206 cites W1990142729 @default.
- W2742524206 cites W1991864047 @default.
- W2742524206 cites W1993249423 @default.
- W2742524206 cites W1993720126 @default.
- W2742524206 cites W1998921988 @default.
- W2742524206 cites W2002389652 @default.
- W2742524206 cites W2004421674 @default.
- W2742524206 cites W2008898744 @default.
- W2742524206 cites W2010979956 @default.
- W2742524206 cites W2014504470 @default.
- W2742524206 cites W2017433119 @default.
- W2742524206 cites W2020660495 @default.
- W2742524206 cites W2025620886 @default.
- W2742524206 cites W2032479107 @default.
- W2742524206 cites W2035755503 @default.
- W2742524206 cites W2040973886 @default.
- W2742524206 cites W2041018918 @default.
- W2742524206 cites W2044897674 @default.
- W2742524206 cites W2052646909 @default.
- W2742524206 cites W2059195287 @default.
- W2742524206 cites W2063186126 @default.
- W2742524206 cites W2066943051 @default.
- W2742524206 cites W2069032214 @default.
- W2742524206 cites W2072930156 @default.
- W2742524206 cites W2079949962 @default.
- W2742524206 cites W2090433048 @default.
- W2742524206 cites W2094137333 @default.
- W2742524206 cites W2097227009 @default.
- W2742524206 cites W2098234130 @default.
- W2742524206 cites W2128564967 @default.
- W2742524206 cites W215567972 @default.
- W2742524206 cites W2197583531 @default.
- W2742524206 cites W2203605755 @default.
- W2742524206 cites W2265859413 @default.
- W2742524206 cites W2406572215 @default.
- W2742524206 cites W2572488315 @default.
- W2742524206 cites W2727826363 @default.
- W2742524206 cites W948745648 @default.
- W2742524206 doi "https://doi.org/10.1016/j.chroma.2017.07.096" @default.
- W2742524206 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28822574" @default.
- W2742524206 hasPublicationYear "2017" @default.
- W2742524206 type Work @default.
- W2742524206 sameAs 2742524206 @default.
- W2742524206 citedByCount "37" @default.
- W2742524206 countsByYear W27425242062018 @default.
- W2742524206 countsByYear W27425242062019 @default.
- W2742524206 countsByYear W27425242062020 @default.
- W2742524206 countsByYear W27425242062021 @default.
- W2742524206 countsByYear W27425242062022 @default.
- W2742524206 countsByYear W27425242062023 @default.
- W2742524206 crossrefType "journal-article" @default.
- W2742524206 hasAuthorship W2742524206A5003172054 @default.
- W2742524206 hasAuthorship W2742524206A5006414792 @default.
- W2742524206 hasAuthorship W2742524206A5043898068 @default.
- W2742524206 hasAuthorship W2742524206A5077764215 @default.
- W2742524206 hasAuthorship W2742524206A5079010139 @default.
- W2742524206 hasConcept C106487976 @default.
- W2742524206 hasConcept C113196181 @default.
- W2742524206 hasConcept C119128265 @default.
- W2742524206 hasConcept C162356407 @default.
- W2742524206 hasConcept C185592680 @default.
- W2742524206 hasConcept C23531484 @default.
- W2742524206 hasConcept C31827203 @default.
- W2742524206 hasConcept C43617362 @default.
- W2742524206 hasConcept C64489805 @default.
- W2742524206 hasConcept C81426234 @default.
- W2742524206 hasConceptScore W2742524206C106487976 @default.
- W2742524206 hasConceptScore W2742524206C113196181 @default.
- W2742524206 hasConceptScore W2742524206C119128265 @default.
- W2742524206 hasConceptScore W2742524206C162356407 @default.
- W2742524206 hasConceptScore W2742524206C185592680 @default.
- W2742524206 hasConceptScore W2742524206C23531484 @default.
- W2742524206 hasConceptScore W2742524206C31827203 @default.
- W2742524206 hasConceptScore W2742524206C43617362 @default.
- W2742524206 hasConceptScore W2742524206C64489805 @default.
- W2742524206 hasConceptScore W2742524206C81426234 @default.
- W2742524206 hasFunder F4320319952 @default.
- W2742524206 hasFunder F4320334593 @default.
- W2742524206 hasLocation W27425242061 @default.
- W2742524206 hasLocation W27425242062 @default.
- W2742524206 hasOpenAccess W2742524206 @default.
- W2742524206 hasPrimaryLocation W27425242061 @default.
- W2742524206 hasRelatedWork W1968381290 @default.