| Literature DB >> 24351721 |
Zheng Han, Emmanuel K Tangni, José Diana Di Mavungu, Lynn Vanhaecke, Sarah De Saeger, Aibo Wu1, Alfons Callebaut.
Abstract
Ochratoxin A (OTA), one of the most toxic mycotoxins, can contaminate a wide range of food and feedstuff. To date, the data on its conjugates via glucuronidation request clarification and consolidation. In the present study, the combined approaches of ultra high performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS), UHPLC-Orbitrap-high resolution mass spectrometry (HRMS) and liquid chromatography-multiple stage mass spectrometry (LC-MS(n)) were utilized to investigate the metabolic profile of OTA in rat liver microsomes. Three conjugated products of OTA corresponding to amino-, phenol- and acyl-glucuronides were identified, and the related structures were confirmed by hydrolysis with β-glucuronidase. Moreover, OTA methyl ester, OTα and OTα-glucuronide were also found in the reaction solution. Based on these results, an in vitro metabolic pathway of OTA has been proposed for the first time.Entities:
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Year: 2013 PMID: 24351721 PMCID: PMC3873705 DOI: 10.3390/toxins5122671
Source DB: PubMed Journal: Toxins (Basel) ISSN: 2072-6651 Impact factor: 4.546
Figure 1Full scan chromatograph of the Reaction 1 solution in positive electrospray ionization (ESI+) mode.
Ultra performance liquid chromatography-high resolution mass spectrometry (UHPLC-HRMS) data obtained from the four metabolites in HESI+ and HESI− mode. Compounds, polarity, chemical configuration, observed masses, calculated masses and mass error of the molecular are reported.
| Compound | Polarity | Ion formula | Observed m/z (Da) | Calculated m/z (Da) | Mass error (ppm) |
|---|---|---|---|---|---|
| 1-3 | + | C26 H27 O12 N Cl | 580.12042 | 580.12219 | −0.59 |
| 1-3 | − | C26 H25 O12 N Cl | 578.10812 | 578.10651 | 2.14 |
| 4 | + | C21 H21 O6 N Cl | 418.10428 | 418.10574 | −0.91 |
| 4 | − | C21 H19 O6 N Cl | 416.09120 | 416.09009 | 1.66 |
Figure 2Product ion spectra of Compound 1 (a); Compound 2 (b); Compound 3 (c); and Compound 4 (d) using ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS).
Figure 3MSn spectra of Compounds 1–3 (a, b, c) and Compound 4 (d, e, f). (a) MS2 (+) 580; (b) MS3 (+) 580→562; (c) MS4 (+) 580→562→404; (d) MS2 (+) 418; (e) MS3 (+) 418→386; (f) MS4 (+) 418→386→358 using LC ion trap MS.
Figure 4The proposed fragmentation pathways for Compounds 1–3.
The parameters and collision energies of precursor ions, product ions for the targeted analytes.
| Names | Precursor ion (m/z) | Primary product ion (m/z) | Collision energy (eV) | Secondary product ion (m/z) | Collision energy (eV) | Ionization mode |
|---|---|---|---|---|---|---|
| Compound 1–3 | 580 | 358 | 20 | 239 | 38 | ESI+ |
| OTA methyl ester | 418 | 358 | 18 | 239 | 32 | ESI+ |
| OTα | 257 | 221 | 20 | 102 | 40 | ESI+ |
Figure 5The proposed metabolic pathway for ochratoxin A (OTA) via glucuronidation by rat liver microsomes.