Suppr超能文献

鉴定和定量分析高果糖玉米糖浆中 6 种主要α-二羰基化合物加工污染物。

Identification and quantification of six major α-dicarbonyl process contaminants in high-fructose corn syrup.

机构信息

Department of Chemistry and Pharmacy, Food Chemistry, Emil Fischer Center, University of Erlangen-Nuremberg, Germany.

出版信息

Anal Bioanal Chem. 2012 Jul;403(10):2923-31. doi: 10.1007/s00216-012-5817-x. Epub 2012 Mar 1.

Abstract

High-fructose corn syrup (HFCS) is a widely used liquid sweetener produced from corn starch by hydrolysis and partial isomerization of glucose to fructose. During these processing steps, sugars can be considerably degraded, leading, for example, to the formation of reactive α-dicarbonyl compounds (α-DCs). The present study performed targeted screening to identify the major α-DCs in HFCS. For this purpose, α-DCs were selectively converted with o-phenylendiamine to the corresponding quinoxaline derivatives, which were analyzed by liquid chromatography with hyphenated diode array-tandem mass spectrometry (LC-DAD-MS/MS) detection. 3-Deoxy-D-erythro-hexos-2-ulose (3-deoxyglucosone), D-lyxo-hexos-2-ulose (glucosone), 3-deoxy-D-threo-hexos-2-ulose (3-deoxygalactosone), 1-deoxy-D-erythro-hexos-2,3-diulose (1-deoxyglucosone), 3,4-dideoxyglucosone-3-ene, methylglyoxal, and glyoxal were identified by enhanced mass spectra as well as MS/MS product ion spectra using the synthesized standards as reference. Addition of diethylene triamine pentaacetic acid and adjustment of the derivatization conditions ensured complete derivatization without de novo formation for all identified α-DCs in HFCS matrix except for glyoxal. Subsequently, a ultra-high performance LC-DAD-MS/MS method was established to quantify 3-deoxyglucosone, glucosone, 3-deoxygalactosone, 1-deoxyglucosone, 3,4-dideoxyglucosone-3-ene, and methylglyoxal in HFCS. Depending on the α-DC compound and concentration, the recovery ranged between 89.2% and 105.8% with a relative standard deviation between 1.9% and 6.5%. Subsequently, the α-DC profiles of 14 commercial HFCS samples were recorded. 3-Deoxyglucosone was identified as the major α-DC with concentrations up to 730 μg/mL HFCS. The total α-DC content ranged from 293 μg/mL to 1,130 μg/mL HFCS. Significantly different α-DC levels were not detected between different HFCS specifications, but between samples of various manufacturers indicating that the α-DC load is influenced by the production procedures.

摘要

高果糖玉米糖浆(HFCS)是一种广泛使用的液体甜味剂,由玉米淀粉通过水解和葡萄糖部分异构化生成果糖制成。在这些加工步骤中,糖会发生相当大的降解,例如导致形成反应性α-二羰基化合物(α-DC)。本研究进行了靶向筛选,以鉴定 HFCS 中的主要α-DC。为此,α-DC 用邻苯二胺选择性转化为相应的喹喔啉衍生物,并用液相色谱-二极管阵列-串联质谱(LC-DAD-MS/MS)检测分析。3-脱氧-D-赤己糖-2-ulose(3-脱氧葡萄糖酮)、D-吡咯己糖-2-ulose(葡萄糖酮)、3-脱氧-D-苏己糖-2-ulose(3-脱氧半乳糖酮)、1-脱氧-D-赤己糖-2,3-二ulose(1-脱氧葡萄糖酮)、3,4-二脱氧葡萄糖酮-3-烯、甲基乙二醛和乙二醛通过增强质谱以及使用合成标准品作为参考的 MS/MS 产物离子光谱被鉴定为存在。加入二亚乙基三胺五乙酸并调整衍生化条件,确保在 HFCS 基质中除乙二醛外,所有鉴定出的α-DC 都完全衍生化,而没有新形成的物质。随后,建立了超高效 LC-DAD-MS/MS 方法来定量测定 HFCS 中的 3-脱氧葡萄糖酮、葡萄糖酮、3-脱氧半乳糖酮、1-脱氧葡萄糖酮、3,4-二脱氧葡萄糖酮-3-烯和甲基乙二醛。根据α-DC 化合物和浓度的不同,回收率在 89.2%至 105.8%之间,相对标准偏差在 1.9%至 6.5%之间。随后,记录了 14 种商业 HFCS 样品的α-DC 图谱。3-脱氧葡萄糖酮被鉴定为主要的α-DC,浓度高达 730μg/mL HFCS。总α-DC 含量范围为 293μg/mL 至 1130μg/mL HFCS。不同 HFCS 规格之间未检测到α-DC 水平的显著差异,但不同制造商的样品之间存在差异,表明α-DC 负荷受生产工艺的影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验