Chinese Academy of Inspection and Quarantine, Beijing 100176, PR China.
Chinese Academy of Inspection and Quarantine, Beijing 100176, PR China; School of Food Science and Engineering, Jilin Agricultural University, Changchun 130118, PR China.
Food Chem. 2024 Mar 15;436:137736. doi: 10.1016/j.foodchem.2023.137736. Epub 2023 Oct 13.
Milk is one of the oldest natural dairies with high value, which has different species including cow, camel, donkey, goat, sheep, buffalo, yak and et al. However, economically motivated adulteration of non-cow milk with cheaper cow milk occurs frequently. To develop a high-throughput approach for milk species authentication, integration of shotgun proteomics and scheduled multiple reaction monitoring (MRM) was developed. In total, 37 specific peptides were screened as unique to different species. Specific peptides processing stability was investigated under different treatment (heat, pressure, fermentation). Subsequently, four quantitative ion pairs of peptides from cow milk and six quantitative ion pairs of peptides from six non-cow milks were selected for the adulteration quantitative analysis. The method is capable of detection adulteration in the range of 1%-100%, and the quantitative recoveries ranged from 91.07% to 111.75%. The results suggested that combination of shotgun proteomics and MRM had potential for the milk species authentication.
牛奶是最古老的天然乳制品之一,具有很高的价值,其种类包括牛、骆驼、驴、山羊、绵羊、水牛、牦牛等。然而,为了经济利益,经常会将非牛奶与更便宜的牛奶混合。为了开发一种高通量的牛奶物种鉴定方法,我们开发了一种 shotgun 蛋白质组学和预定多重反应监测(MRM)的集成方法。总共筛选出 37 种特定肽段作为不同物种的独特肽段。研究了不同处理(热、压、发酵)下特定肽段的处理稳定性。随后,选择了来自牛奶的 4 对定量离子对肽和来自 6 种非牛奶的 6 对定量离子对肽用于掺假定量分析。该方法能够检测 1%-100%的掺假情况,定量回收率范围为 91.07%-111.75%。结果表明,shotgun 蛋白质组学和 MRM 的结合具有用于牛奶物种鉴定的潜力。