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Innovative Solutions for Food Analysis: Microextraction Techniques in Lipid Peroxidation Product Detection

Jorge A. Custodio‐Mendoza, Ana M. Ares-Fuentes, Antonia M. Carro

2023Separations18 citationsDOIOpen Access PDF

Abstract

Lipid peroxidation, the most aggressive reaction in food, results in the formation of reactive organic compounds that detrimentally impact food sensory qualities and consumers’ health. While controlled lipid peroxidation can enhance flavors and appearance in certain foods, secondary peroxidation products lead to sensory deterioration in a variety of products, such as oils, alcoholic beverages, and meat. This publication reviews the use of modern analytical techniques for detecting and quantifying carbonyl compounds, i.e., secondary lipid peroxidation products. The paper focuses specifically on microextraction-based methods: dispersive liquid-liquid microextraction (DLLME), solid-phase microextraction (SPME), and gas-diffusion microextraction (GDME). These techniques offer efficient and sensitive approaches to extracting and quantifying lipid oxidation products and contribute to the understanding of oxidative deterioration in various food products. The review outlines recent advancements, challenges, and limitations in these microextraction techniques, as well as emphasizes the potential for further innovation and improvement in the field of food analysis.

Topics & Concepts

Lipid peroxidationSolid-phase microextractionChemistryFood scienceFood productsFood industryLipid oxidationChromatographyGas chromatography–mass spectrometryBiochemistryOxidative stressAntioxidantMass spectrometryAdvanced Chemical Sensor TechnologiesIdentification and Quantification in FoodAnalytical chemistry methods development
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