| Literature DB >> 31965248 |
Franz Mlynek1, Markus Himmelsbach2, Wolfgang Buchberger2, Christian W Klampfl2.
Abstract
Investigations into the interaction of xenobiotics with plants (and in particular edible plants) have gained substantial interest, as water scarcity due to climate-change-related droughts requires the more frequent use of reclaimed wastewaters for irrigation in agriculture. Non-steroidal anti-inflammatory drugs are common contaminants found in wastewater treatment plant effluents. For this reason, the interaction of nine edible plants with diclofenac (DCF), a widely used representative of this group of drugs, was investigated. For this purpose, plants were hydroponically grown in a medium containing DCF. For the detection of unknown DCF-related metabolites formed in the plant upon uptake of the parent drug' a new workflow based on the use of HPLC coupled to drift-tube ion-mobility quadrupole time-of-flight/mass spectrometry (DTIM QTOF-MS) was developed. Thereby' for chromatographic peaks eluting from the HPLC, drift times were recorded, and analytes were subsequently fragmented in the DTIM QTOF-MS to provide significant fragments. All information available (retention times, drift times, fragment spectra, accurate mass) was finally combined' allowing the suggestion of molecular formulas for 30 DCF-related metabolites formed in the plant, whereby 23 of them were not yet known from the literature.Entities:
Keywords: Diclofenac; Drift-tube ion-mobility mass spectrometry; Environmental analysis; Pharmaceuticals; Plant metabolism
Mesh:
Substances:
Year: 2020 PMID: 31965248 PMCID: PMC7048865 DOI: 10.1007/s00216-020-02429-7
Source DB: PubMed Journal: Anal Bioanal Chem ISSN: 1618-2642 Impact factor: 4.142
Fig. 1MS and DTIM data for a peak at 6.8 min in an onion sample. (a) shows the mass spectrum from 6.67 to 6.86 min, (b) the drift spectrum for the selected range of 22.2 to 34.4 ms, and (c) the corresponding DT versus m/z plot. The peak at 6.8 min was found to be DCF-Glc-Mal
Fig. 2MS and DTIM data for a peak at 4.1 min in a maize sample. (a) shows the mass spectrum from retention time 4.04 to 4.16 min, (b) the drift spectrum for the selected range of 25.1 to 38.5 ms, and (c) the corresponding DT versus m/z plot. The peak at 4.1 min was found to be DCF-Lac-OH-Glc-GlcA
Fig. 3MS/MS spectrum of DCF-Lac-OH-Glc-GlcA (m/z 632.09) in a maize sample fragmented with a collision energy of 10 V
Overview of tentative formulas for DCF phase I and II metabolites found in various root extracts of C3 and C4 plants
| Name | Formula | RT | m/z [M+H]+ | delta m/z ppm | CCS (Å2) | RSD CCS % | n | Salad C3 | Tomato C3 | Onion C3 | Millet C4 | Sorghum C4 | Maize C4 | Pea C3 | Amaranth C4 | Rice C3 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| DCF-OH-Glc-Glc-Mal-Mal | C32H35Cl2NO19 | 4.9 | 808.1252 | − 0.1 | 264.5 | 0.5 | 9 | Yes | × | Yes | × | × | × | × | Ye | × |
| DCF-Glc-Glc-Mal-Mal | C32H35Cl2NO18 | 6.3 | 792.1314 | 1.2 | 250.5 | 0.3 | 3 | × | × | Yes | × | × | × | × | × | × |
| DCF-OH-Glc-Glc-Mal | C29H33Cl2NO16 | 5.4 | 722.1257 | 1.2 | 249.4 | 0.3 | 3 | × | Yes | × | × | × | × | × | × | × |
| DCF-OH-Glc-Glc-Mal | C29H33Cl2NO16 | 5.3 | 722.1253 | 0.6 | 258.7 | 0.1 | 3 | × | × | × | × | × | × | × | × | Yes |
| DCF-OH-Glc-Glc-Mal | C29H33Cl2NO16 | 4.1 | 722.1250 | 0.1 | 255.8 | 0.6 | 21 | Yes | Yes | Yes | × | Yes | Yes | × | Yes | Yes |
| DCF-Glc-GlcA-Mal | C29H31Cl2NO16 | 6.0 | 720.1100 | 1.0 | 248.2 | 0.0 | 3 | × | × | × | × | × | × | × | Yes | × |
| DCF-Glc-Glc-Mal | C29H33Cl2NO15 | 5.8 | 706.1302 | 0.2 | 243.9 | 0.2 | 12 | × | Yes | Yes | × | Yes | × | × | × | Yes |
| DCF-Glc-Glc-Mal | C29H33Cl2NO15 | 6.4 | 706.1295 | − 0.7 | 245.7 | 0.1 | 3 | × | × | × | × | Yes | × | × | × | × |
| DCF-Glc-Glc-Mal | C29H33Cl2NO15 | 6.3 | 706.1291 | − 1.3 | 253.6 | 0.2 | 2 | × | × | × | × | × | Yes | × | × | × |
| DCF-Lac-OH-Glc-Glc-Mal | C29H31Cl2NO15 | 5.2 | 704.1139 | − 0.7 | 253.7 | 0.4 | 6 | × | × | × | × | Yes | × | × | × | Yes |
| DCF-OH-Glc-GlcA | C26H29Cl2NO14 | 5.6 | 650.1049 | 1.6 | 233.7 | 0.0 | 3 | × | × | × | × | × | Yes | × | × | × |
| DCF-OH-Glc-GlcA | C26H29Cl2NO14 | 4.2 | 650.1047 | 1.4 | 234.1 | 0.1 | 3 | × | × | × | × | × | Yes | × | × | × |
| DCF-OH-Glc-Glc | C26H31Cl2NO13 | 4.1 | 636.1251 | 0.9 | 229.5 | 0.2 | 3 | × | Yes | × | × | × | × | × | × | × |
| DCF-OH-Glc-Glc | C26H31Cl2NO13 | 3.0 | 636.1250 | 0.8 | 234.1 | 0.2 | 5 | × | × | × | × | × | Yes | Yes | × | × |
| DCF-OH-Glc-Glc | C26H31Cl2NO13 | 3.0 | 636.1248 | 0.4 | 229.1 | 0.1 | 9 | × | × | × | Yes | Yes | × | × | × | Yes |
| DCF-Glc-GlcA | C26H29Cl2NO13 | 5.3 | 634.1088 | − 0.2 | 235.5 | 0.5 | 3 | × | × | × | × | × | × | × | yes | × |
| DCF-Lac-OH-Glc-GlcA | C26H27Cl2NO13 | 4.1 | 632.0943 | 1.7 | 233.4 | 0.1 | 3 | × | × | × | × | × | Yes | × | × | × |
| DCF-Glc-Glc | C26H31Cl2NO12 | 5.2 | 620.1299 | 0.5 | 232.1 | 0.1 | 3 | × | Yes | × | × | × | × | × | × | × |
| DCF-Lac-OH-Glc-Glc | C26H29Cl2NO12 | 5.4 | 618.1140 | 0.0 | 229.7 | 0.6 | 18 | × | Yes | × | Yes | Yes | Yes | Yes | Yes | × |
| DCF-Lac-Glc-Glc | C26H29Cl2NO11 | 5.4 | 602.1189 | − 0.2 | 230.5 | 0.5 | 8 | Yes | Yes | Yes | × | × | × | × | × | × |
| DCF-OH-Glc-Mal | C23H23Cl2NO11 | 5.7 | 560.0724 | 0.6 | 214.2 | 0.3 | 27 | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes |
| DCF-Glc-Mal | C23H23Cl2NO10 | 6.7 | 544.0770 | − 0.4 | 211.6 | 0.3 | 23 | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes | × |
| DCF-Lac-OH-Glc-Mal | C23H21Cl2NO10 | 5.5 | 542.0618 | 0.5 | 210.8 | 0.2 | 24 | Yes | × | Yes | Yes | Yes | Yes | Yes | Yes | Yes |
| DCF-diOH-Glc | C20H21Cl2NO9 | 3.5 | 490.0650 | − 3.2 | 216.2 | 0.4 | 3 | × | Yes | × | × | × | × | × | × | × |
| DCF-diOH-Glc | C20H21Cl2NO9 | 3.6 | 490.0670 | 0.7 | 212.4 | 0.1 | 12 | × | × | × | Yes | Yes | Yes | Yes | × | × |
| DCF-OH-Glc | C20H21Cl2NO8 | 4.9 | 474.0720 | 0.7 | 211.4 | 0.2 | 27 | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes |
| DCF-Lac-OH-Glc | C20H19Cl2NO7 | 4.7 | 456.0614 | 0.7 | 197.5 | 0.2 | 18 | × | × | × | Yes | Yes | Yes | Yes | Yes | Yes |
| DCF-OH | C14H11Cl2NO3 | 7.9 | 312.0191 | 0.6 | 164.4 | 0.1 | 27 | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes |
| DCF | C14H11Cl2NO2 | 8.6 | 296.0244 | 1.5 | 159.3 | 0.1 | 27 | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes |
| DCF-Lac-OH | C14H9Cl2NO2 | 7.6 | 294.0088 | 1.5 | 159.5 | 0.1 | 24 | Yes | Yes | × | Yes | Yes | Yes | Yes | Yes | Yes |
| DCF-Lac | C14H9Cl2NO | 7.6 | 278.0139 | 1.8 | 154.6 | 0.1 | 27 | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes | Yes |