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Determination of labeled fatty acids content in milk products, infant formula, and adult/pediatric nutritional formula by capillary gas chromatography: collaborative study, final action 2012.13

机译:毛细管气相色谱法测定奶制品,婴儿配方食品和成人/儿童营养配方食品中标记的脂肪酸含量:协作研究,最终行动2012.13

摘要

A collaborative study was conducted on AOAC First Action Method 2012.13 >Determination of Labeled Fatty Acids Content in Milk Products and Infant Formula by Capillary Gas Chromatography,> which is based on an initial International Organization for Standardization (ISO)-International Dairy Federation (IDF) New Work Item that has been moved forward to ISO 16958:2015 | IDF 231:2015 in November 2015. It was decided to merge the two activities after the agreement signed between ISO and AOAC in June 2012 to develop common standards and to avoid duplicate work. The collaborative study was performed after having provided highly satisfactory single-laboratory validation results [Golay, P.A., & Dong, Y. (2015) J. AOAC Int. 98, 1679-1696] that exceeded the performance criteria defined in AOAC Standard Method Performance Requirement (SMPR®) 2012.011 (September 29, 2012) on 12 products selected by the AOAC Stakeholder Panel on Infant Formula (SPIFAN). After a qualification period of 1 month, 18 laboratories participated in the fatty acids analysis of 12 different samples in duplicate. Six samples were selected to meet AOAC SPIFAN requirements (i.e., infant formula and adult nutritionals in powder and liquid formats), and the other Six samples were selected to meet ISO-IDF requirements (i.e., dairy products such as milk powder, liquid milk, cream, butter, infant formula with milk, and cheese). The fatty acids were analyzed directly in all samples without preliminary fat extraction, except in one sample (cheese). Powdered samples were analyzed after dissolution (i.e., reconstitution) in water, whereas liquid samples (or extracted fat) were analyzed directly. After addition of the internal standards solution [C11:0 fatty acid methyl ester (FAME) and C13:0 triacylglycerols (TAG)] to the samples, fatty acids attached to lipids were transformed into FAMEs by direct transesterification using methanolic sodium methoxide. FAMEs were separated using highly polar capillary GLC and were identified by comparison with the retention times of pure analytical standards. Quantification of fatty acids was done relative to C11:0 FAME as internal standard and to instrument response factors (determined separately using calibration standards mixture). The performance of the method (i.e., transesterification) was monitored in all samples using the second internal standard, C13:0 TAG. RSDR values were summarized separately for labeled fatty acids in SPIFAN materials and ISO-IDF materials due to different expression of results. This method was applied to representative dairy, infant formula, and adult/pediatric nutritional products and demonstrated global acceptable reproducibility precision for all fatty acids analyzed (i.e., 46 individuals and/or groups) for these categories of products.
机译:开展了一项关于AOAC首次行动方法2012.13的合作研究>“通过毛细管气相色谱法测定奶制品和婴儿配方食品中标记的脂肪酸含量”,该方法基于最初的国际标准化组织(ISO)-国际奶业联合会(IDF)已移至ISO 16958:2015的新工作项目| IDF 231:2015于2015年11月发布。在ISO与AOAC于2012年6月签署协议以制定通用标准并避免重复工作后,决定合并两项活动。合作研究是在提供高度满意的单实验室验证结果后进行的[Golay,P.A.,&Dong,Y.(2015)J. AOAC Int。 [98,1679-1696]超出了AOAC婴儿配方奶粉利益相关方小组(SPIFAN)选择的12种产品的AOAC标准方法性能要求(SMPR®)2012.011(2012年9月29日)中定义的性能标准。经过1个月的资格审查后,有18个实验室一式两份地参与了12种不同样品的脂肪酸分析。选择了六个样品以满足AOAC SPIFAN的要求(即粉和液体形式的婴儿配方奶粉和成人营养品),另外六个样品被选择以满足ISO-IDF的要求(即奶粉,液态奶,奶油,黄油,婴儿配方奶和奶酪)。除一个样品(奶酪)外,所有样品中的脂肪酸均进行了直接分析,而无需进行初步的脂肪提取。粉末状样品在水中溶解(即复原)后进行分析,而液体样品(或提取的脂肪)则直接进行分析。在向样品中添加内标溶液[C11:0脂肪酸甲酯(FAME)和C13:0三酰甘油(TAG)]后,使用甲醇钠甲醇溶液进行直接酯交换反应,将与脂质连接的脂肪酸转化为FAME。使用高极性毛细管GLC分离FAME,并通过与纯分析标准品的保留时间进行比较来鉴定。相对于作为内标的C11:0 FAME和仪器响应因子(使用校准标准混合物分别确定),对脂肪酸进行了定量。使用第二种内标C13:0 TAG在所有样品中监测该方法的性能(即酯交换反应)。由于结果的不同表示,分别对SPIFAN材料和ISO-IDF材料中标记的脂肪酸的RSDR值进行了汇总。该方法适用于代表性的乳制品,婴儿配方食品和成人/儿科营养产品,并证明了针对这些类别产品分析的所有脂肪酸(即46个个人和/或组)的全球可接受的再现性精度。

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