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亲水作用液相色谱联用电喷雾质谱法在食品分析中对小极性化合物的应用

Hydrophilic interaction liquid chromatography coupled to electrospray mass spectrometry of small polar compounds in food analysis.

作者信息

Schlichtherle-Cerny Hedwig, Affolter Michael, Cerny Christoph

机构信息

Nestle Research Center, Nestec Ltd., Vers-chez-les-Blanc, P.O. Box 44, CH-1000 Lausanne 26, Switzerland.

出版信息

Anal Chem. 2003 May 15;75(10):2349-54. doi: 10.1021/ac026313p.

Abstract

Reversed-phase liquid chromatography (RPLC) is commonly used to analyze nonvolatile components in food. However, polar low-molecular-weight compounds such as hydrophilic amino acids, di- and tripeptides, and organic acids are often not sufficiently retained and represent a challenge for RPLC. Hydrophilic interaction liquid chromatography in combination with electrospray mass spectrometry (HILIC-ESI-MS) on a carbamoyl-derivatized stationary phase was successfully employed to separate free amino acids and small polar peptides in complex food matrixes such as wheat gluten hydrolysate and Parmesan cheese. Glutamyl dipeptides were separated in a sequence-specific order with peptides with N-terminal glutamic acid residues eluting prior to their reverse sequence analogues. ESI-MSn detection in the positive ionization mode provided the necessary information to unambiguously identify isobaric peptides due to their characteristic fragmentation patterns. The technique also proved useful to separate and identify glycoconjugates between amino acids and reducing sugars (Amadori compounds). The investigation of organic acids present in food used a mobile phase comprising ammonium acetate buffer at pH 7 and mass spectrometric detection in the negative ionization mode.

摘要

反相液相色谱法(RPLC)常用于分析食品中的非挥发性成分。然而,极性低分子量化合物,如亲水性氨基酸、二肽和三肽以及有机酸,往往不能被充分保留,这对RPLC来说是一个挑战。在氨甲酰基衍生化固定相上,亲水相互作用液相色谱与电喷雾质谱联用(HILIC-ESI-MS)成功用于分离复杂食品基质(如小麦面筋水解物和帕尔马干酪)中的游离氨基酸和小极性肽。谷氨酰二肽按序列特异性顺序分离,N端谷氨酸残基的肽在其反向序列类似物之前洗脱。正离子模式下的ESI-MSn检测提供了必要信息,可根据其特征性裂解模式明确鉴定等压肽。该技术还被证明可用于分离和鉴定氨基酸与还原糖之间的糖缀合物(阿马多里化合物)。对食品中存在的有机酸的研究使用了pH值为7的乙酸铵缓冲液作为流动相,并在负离子模式下进行质谱检测。

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