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Updated: Jan 15, 2026

Semi-Targeted Ultra-High-Performance Chromatography Coupled to Mass Spectrometry Analysis of Phenolic Metabolites in Plasma of Elderly Adults
Published on: April 22, 2022
Total Synthesis and Analysis of Phenolic Phytoprostanes, Oxidized Derivatives of Lipophenols
M Jordan Lehoux1, Ángel Sánchez-Illana2, Pablo Miralles3
1Institut des Biomolécules Max Mousseron, IBMM, Université de Montpellier, CNRS, ENSCM, 1919 route de Mende, Montpellier, 34293, France.
Abstract:
Lipophenols, or phenolipids, are compounds that combine polyphenols with fatty acids, offering the antioxidant properties of polyphenols alongside the neuroprotective and cardioprotective benefits of omega-3 polyunsaturated fatty acids (PUFAs). Hydroxytyrosol (HT)-based lipophenols have recently been identified in olive oil. Depending on their structure, these compounds were differently affected by storage conditions. While the concentrations of HT-oleate and HT-linoleate increase with higher storage temperatures, HT-α-linolenate (HT-ALA) did not follow the same trend. Given the high oxidative susceptibility of α-linolenic acid (ALA), which leads to oxidation products known as phytoprostanes (PhytoPs), we hypothesize that HT-ALA may be oxidized into covalently bound PhytoP conjugates of HT (PhytoPs-HT) under various oxidative conditions, including, for example, suboptimal storage. This study aims to develop the first total synthesis of two series of PhytoPs-HT as analytical standards to explore the oxidative transformation of HT-ALA lipophenols into potential oxylipin metabolites. The synthesis of four ALA-derived PhytoPs-HT and their identification during in vitro oxidation of HT-ALA by UHPLC-HRMS/MS are presented here. These synthetic standards are essential for the reliable identification and quantification of HT-PhytoPs within complex mixtures of regio- and stereoisomers generated during oxylipin formation.
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