Simultaneous determination of carbonyl compounds related to thermal treatment and oxidative stability of infant formulas by gas-diffusion microextraction and high-performance liquid chromatography with ultraviolet detection

化学 乙二醛 婴儿配方奶粉 色谱法 丙二醛 丙烯醛 美拉德反应 有机化学 食品科学 催化作用 抗氧化剂
作者
Jorge A. Custodio‐Mendoza,Luis Muñoz-Menendez,M. Pilar España-Fariñas,Inês M. Valente,José A. Rodrigues,Paulo Almeida,R.A. Lorenzo,Antonia M. Carro
出处
期刊:Analytica Chimica Acta [Elsevier BV]
卷期号:1288: 342164-342164 被引量:3
标识
DOI:10.1016/j.aca.2023.342164
摘要

Infant formulae are the only possible alternative to breastfeeding during the first year of life, so it is crucial to assure their innocuousness. Infant formula undergoes heat treatments to ensure safety and shelf life. However, such processes impact health as they lead to the formation of malondialdehyde, acrolein, and α-dicarbonyl compounds, related to Maillard reaction. Thus, there is a need for improved analytical methods to ensure the safety, quality, and nutritional value of infant formulae, and also exploring the potential of specific compounds as indicators for quality control and monitoring purposes. We developed and validated a novel, efficient, and cost-effective method using gas-diffusion microextraction for the simultaneous quantification of carbonyl compounds in infant formula. Malondialdehyde, acrolein, glyoxal, methylglyoxal, and diacetyl were detected as o-phenylenediamine derivatives using HPLC with UV detection. Parameters influencing extraction efficiency were studied using an asymmetric screening design. The validated method has shown excellent linearity, sensitivity, accuracy, and precision. It was applied to analyze 26 infant formula samples, including starter, follow-up, and special formulated powdered infant formula. Methylglyoxal was found in all samples (0.201-3.153 μg mL

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