Faculty of Applied Sciences, Universiti Teknologi MARA , Shah Alam, Selangor, Malaysia.
Food Division, National Public Health Laboratory, Ministry of Health Malaysia , Sungai Buloh, Selangor, Malaysia.
Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2021 Feb;38(2):223-236. doi: 10.1080/19440049.2020.1845400. Epub 2020 Dec 17.
The study aimed to establish the detection method for bound 3-, 2-MCPD, and glycidol using accelerated solvent extraction (ASE) and gas chromatography mass spectrometry (GC-MS). The ASE was modified for reduced solvent volume and process time to extract lipid from the chocolate spread, infant formula, potato chips, and sweetened creamer. The solvent selected for ASE was a mixture of iso-hexane and acetone at 100°C with the lipid and analyte recovery ranging from 96.9% to 98.6% and 84.1% to 107.5%, respectively. The derivatisation of analytes was adopted from the AOCS method Cd29a-13 for GC-MS analysis. The results showed that the coefficient of determination (R) of all analytes was >0.99. The limit of detection (LOD) was 0.1 mg kg expressed in lipid basis for both bound 3- and 2-MCPD and 0.2 mg kg expressed in lipid basis for bound glycidol. The limit of quantitation (LOQ) was 0.3 mg kg expressed in lipid basis for both bound 3- and 2-MCPD and 0.6 mg kg expressed in lipid basis for bound glycidol. A blank spiked with 3-monochloropropanediols fatty acid esters (MCPDE) and 2-MCPDE (0.3, 2.1, and 7.2 mg kg) and glycidol esters (0.6, 4.7, and 16.6 mg kg) were chosen for accuracy and precision tests. The recoveries were 91.7% to 105.9%. Both repeatability and within-laboratory reproducibility of the analysis were within the acceptable level of precision ranging from 1.7% to 16%. This is the first time that a full validation procedure extending to both accuracy and precision tests has been carried out for sweetened creamer and chocolate spread. Overall, the combined protocol of ASE and AOCS Cd29a-13 was successfully validated for both solid and liquid food samples with lipid content from 10% to 30%.
本研究旨在建立一种使用加速溶剂萃取(ASE)和气相色谱-质谱联用(GC-MS)检测结合的 3-MCPD、2-MCPD 和缩水甘油的方法。ASE 经过改良,以减少溶剂体积和处理时间,从巧克力酱、婴儿配方奶粉、薯片和甜奶油中提取脂质。ASE 中选用的溶剂是 100°C 的异己烷和丙酮的混合物,脂质和分析物的回收率分别为 96.9%至 98.6%和 84.1%至 107.5%。分析物的衍生化采用 AOCS 方法 Cd29a-13 进行 GC-MS 分析。结果表明,所有分析物的决定系数(R)均大于 0.99。在脂质基础上,结合的 3-MCPD 和 2-MCPD 的检测限(LOD)分别为 0.1mgkg,结合的缩水甘油的 LOD 为 0.2mgkg。在脂质基础上,结合的 3-MCPD 和 2-MCPD 的定量限(LOQ)分别为 0.3mgkg,结合的缩水甘油的 LOQ 为 0.6mgkg。选择空白样品,加入 3-单氯丙二醇脂肪酸酯(MCPDE)和 2-MCPDE(0.3、2.1 和 7.2mgkg)以及缩水甘油酯(0.6、4.7 和 16.6mgkg)进行准确度和精密度测试。回收率为 91.7%至 105.9%。分析的重复性和实验室内部再现性均在可接受的精密度范围内,范围为 1.7%至 16%。这是首次对甜奶油和巧克力酱进行全面的验证程序,包括准确度和精密度测试。总的来说,ASE 和 AOCS Cd29a-13 的联合方案成功地验证了脂质含量从 10%到 30%的固体和液体食品样品。