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利用多种化学参数对山羊奶粉进行制造商鉴别。

Identification of goat milk powder by manufacturer using multiple chemical parameters.

作者信息

McLeod Rebecca J, Prosser Colin G, Wakefield Joshua W

机构信息

Oritain Global Ltd., Private Bag 50034, Mosgiel, Otago 9053 New Zealand.

Dairy Goat Co-operative, 18 Gallagher Drive, Hamilton, 3206 New Zealand.

出版信息

J Dairy Sci. 2016 Feb;99(2):982-993. doi: 10.3168/jds.2015-9627. Epub 2015 Dec 17.

Abstract

Concentrations of multiple elements and ratios of stable isotopes of carbon and nitrogen were measured and combined to create a chemical fingerprint of production batches of goat whole milk powder (WMP) produced by different manufacturers. Our objectives were to determine whether or not differences exist in the chemical fingerprint among samples of goat WMP produced at different sites, and assess temporal changes in the chemical fingerprint in product manufactured at one site. In total, 58 samples of goat WMP were analyzed by inductively coupled plasma-mass spectrometry as well as isotope ratio mass spectrometry and a suite of 13 elements (Li, Na, Mg, K, Ca, Mn, Cu, Zn, Rb, Sr, Mo, Cs, and Ba), δ(13)C, and δ(15)N selected to create the chemical fingerprint. Differences in the chemical fingerprint of samples between sites and over time were assessed using principal components analysis and canonical analysis of principal coordinates. Differences in the chemical fingerprints of samples between production sites provided a classification success rate (leave-one-out classification) of 98.1%, providing a basis for using the approach to test the authenticity of product manufactured at a site. Within one site, the chemical fingerprint of samples produced at the beginning of the production season differed from those produced in the middle and late season, driven predominantly by lower concentrations of Na, Mg, K, Mn, and Rb, and higher concentrations of Ba and Cu. This observed temporal variability highlights the importance of obtaining samples from throughout the season to ensure a representative chemical fingerprint is obtained for goat WMP from a single manufacturing site. The reconstitution and spray drying of samples from one manufacturer by the other manufacturer enabled the relative influence of the manufacturing process on the chemical fingerprint to be examined. It was found that such reprocessing altered the chemical fingerprint, although the degree of alteration varied among samples and individual elements. The findings of this study support the use of trace elements and stable isotope ratios to test the authenticity of goat WMP, which can likely be applied to other dairy goat products. This approach could be used test to the factory of origin (and potentially batch of origin) of products in the supply chain, thus providing the ability to audit the supply chain and monitor for fraudulent activity.

摘要

测量了多种元素的浓度以及碳和氮的稳定同位素比率,并将其结合起来,以创建不同制造商生产的山羊全脂奶粉(WMP)生产批次的化学指纹图谱。我们的目标是确定不同产地生产的山羊WMP样品的化学指纹图谱是否存在差异,并评估一个产地生产的产品中化学指纹图谱的时间变化。总共对58份山羊WMP样品进行了电感耦合等离子体质谱以及同位素比率质谱分析,并选择了一组13种元素(锂、钠、镁、钾、钙、锰、铜、锌、铷、锶、钼、铯和钡)、δ(13)C和δ(15)N来创建化学指纹图谱。使用主成分分析和主坐标典型分析评估不同产地和不同时间样品化学指纹图谱的差异。不同生产地点样品化学指纹图谱的差异提供了98.1%的分类成功率(留一法分类),为使用该方法检验某一地点生产的产品的真实性提供了依据。在一个产地内,生产季节开始时生产的样品的化学指纹图谱与中期和后期生产的样品不同,主要原因是钠、镁、钾、锰和铷的浓度较低,而钡和铜的浓度较高。观察到的这种时间变异性凸显了在整个季节采集样品的重要性,以确保从单个生产地点获得具有代表性的山羊WMP化学指纹图谱。由另一家制造商对一家制造商的样品进行重构和喷雾干燥,能够检验制造过程对化学指纹图谱的相对影响。结果发现,这种再加工改变了化学指纹图谱,尽管不同样品和单个元素的改变程度有所不同。本研究结果支持使用微量元素和稳定同位素比率来检验山羊WMP的真实性,这可能也适用于其他奶山羊产品。这种方法可用于检验供应链中产品的原产工厂(以及潜在的原产批次),从而能够对供应链进行审计并监测欺诈活动。

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