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Detection of Lipid Oxidation in Infant Formulas: Application of Infrared Spectroscopy to Complex Food Systems

机译:婴儿配方脂质氧化的检测:红外光谱对复杂食品系统的应用

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摘要

Fish- or algal oils have become a common component of infant formula products for their high docosahexaenoic acid (DHA) content. DHA is widely recognized to contribute to the normal development of the infant, and the European Commission recently regulated the DHA content in infant formulas. For many manufacturers of first-age early life nutrition products, a higher inclusion level of DHA poses various challenges. Long-chain polyunsaturated fatty acids (LC-PUFAs) such as DHA are very prone to oxidation, which can alter the organoleptic property and nutritional value of the final product. Traditional methods for the assessment of oxidation in complex systems require solvent extraction of the included fat, which can involve harmful reagents and may alter the oxidation status of the system. A rapid, efficient, non-toxic real-time method to monitor lipid oxidation in complex systems such as infant formula emulsions would be desirable. In this study, infrared spectroscopy was therefore chosen to monitor iron-induced oxidation in liquid infant formula, with conjugated dienes and headspace volatiles measured with GC-MS as reference methods. Infrared spectra of infant formula were recorded directly in mid- and near-infrared regions using attenuated total reflectance Fourier-transform (ATR-FTIR) and near-infrared (NIRS) spectrophotometers. Overall, good correlation coefficients (R2 > 0.9) were acquired between volatiles content and infrared spectroscopy. Despite the complex composition of infant formula containing proteins and sugars, infrared spectroscopy was still able to detect spectral changes unique to lipid oxidation. By comparison, near-infrared spectroscopy (NIRS) presented better results than ATR-FTIR: prediction error ATR-FTIR 18% > prediction error NIRS 9%. Consequently, NIRS demonstrates great potential to be adopted as an in-line or on-line, non-destructive, and sustainable method for dairy and especially infant formula manufacturers.
机译:鱼类或藻类油已成为其高十二碳六烯酸(DHA)含量的婴儿配方产品的共同组成部分。 DHA被广泛认可为婴儿的正常发展做出贡献,欧洲委员会最近监管了婴儿公式中的DHA含量。对于众多初期寿命营养产品的厂商,DHA的更高含有水平构成了各种挑战。长链多不饱和脂肪酸(如DHA)的脂肪酸(LC-PUFA)非常容易发生氧化,这可以改变最终产品的感官性质和营养价值。复杂系统中氧化评估的传统方法需要溶剂提取包含的脂肪,这可能涉及有害试剂,并可能改变系统的氧化状态。一种快速,高效,无毒的实时方法,可在诸如婴儿配方乳液等复杂系统中监测脂质氧化。因此,选择红外光谱,以监测液体婴儿配方中的铁诱导的氧化,用GC-MS测量的共轭二烯和顶空挥发物作为参考方法。使用衰减的总反射率傅里叶变换(ATR-FTIR)和近红外(NIRS)分光光度计,直接在中和近红外区域中直接记录婴幼儿配方的红外光谱。总的来说,在挥发物含量和红外光谱之间获得良好的相关系数(R2> 0.9)。尽管含有蛋白质配方的复杂组成含有蛋白质和糖,但红外光谱仍然能够检测脂质氧化独特的光谱变化。相比之下,近红外光谱(NIRS)呈现比ATR-FTIR的更好结果:预测误差ATR-FTIR 18%>预测误差网德9%。因此,NIR展示了耐用的乳制品和尤其是婴儿配方制造商在线或在线,无损性和可持续的方法。

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