Alltech European Bioscience Centre, Dunboyne, Ireland.
Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2023 Mar;40(3):373-380. doi: 10.1080/19440049.2023.2172214. Epub 2023 Feb 3.
Attenuated total reflectance Fourier transform infrared (ATR-FTIR) spectroscopy is an essential tool for the determination of mineral chelation in proteinates used as animal feed additives. With advances in feed formulations and stringent regulatory requirements to confirm the degree of chelation in animal feed supplements, the aim of this work was to further refine the method and demonstrate its applicability to newly formulated, higher concentration (20% (w/w)) manganese and zinc proteinates of industrial relevance. Calibration and prediction models were created using multivariate analysis with R > 0.99 for both mineral proteinates tested. Root mean square error of calibration (RMSEC) values were found to be 1.7% and 2.1% respectively for the manganese and zinc products. The refined method produced reliable data for various applications with excellent specificity, selectivity, and reproducibility. Consequently, the proposed refinements are expected to be of interest from a regulatory perspective and for those in the feed industry for conclusively determining the percentage chelation of minerals in high concentration proteinate products.
衰减全反射傅里叶变换红外(ATR-FTIR)光谱法是确定用作动物饲料添加剂的蛋白酸盐中矿物质螯合的重要工具。随着饲料配方的进步和严格的监管要求,以确认动物饲料补充剂中螯合的程度,本工作旨在进一步改进该方法,并证明其适用于新配方的、更高浓度(20%(w/w))的工业相关锰和锌蛋白酸盐。使用多元分析创建了校准和预测模型,对于测试的两种矿物质蛋白酸盐,R 值均大于 0.99。锰和锌产品的校准均方根误差(RMSEC)值分别为 1.7%和 2.1%。该改进方法为各种应用提供了可靠的数据,具有出色的特异性、选择性和重现性。因此,从监管角度和饲料行业的角度来看,预期这些改进将具有一定的意义,可用于确定高浓度蛋白酸盐产品中矿物质螯合的百分比。