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通过基于注入的 shotgun 质谱法和锂离子诱导的碎片化定量乳制品中的神经鞘磷脂。

Quantifying Sphingomyelin in Dairy through Infusion-Based Shotgun Mass Spectrometry with Lithium-Ion-Induced Fragmentation.

机构信息

Grand Forks Human Nutrition Research Center, Agricultural Research Service (ARS), United States Department of Agriculture (USDA), 2420 Second Avenue North, Grand Forks, North Dakota 58203, United States.

Beltsville Agricultural Research Center, Agricultural Research Service (ARS), United States Department of Agriculture (USDA), 10300 Baltimore Avenue, Beltsville, Maryland 20705, United States.

出版信息

J Agric Food Chem. 2022 Oct 26;70(42):13808-13817. doi: 10.1021/acs.jafc.2c04587. Epub 2022 Oct 14.

Abstract

Quantifying sphingomyelin (SM) species by infusion-based mass spectrometry (MS) is complicated by the presence of isobaric phosphatidylcholine (PC) species, which generate a common / 184 product ion in the presence of ammonium ions as a result of the phosphocholine headgroup. Lithium ion adducts of SM undergo a selective dehydration [Li + HO + (CH)NCHPO] with a corresponding neutral loss of -207 Da. This neutral loss was employed to create a SM-selective method for identifying target species, which were quantitated using multiple reaction monitoring (MRM). SM-selective fragments in MS were used to characterize the sphingosine base and acyl chain. These methods were used to identify 50 individual SM species in bovine milk ranging from SM 28:1 to SM 44:2, with d16:1, d17:1, d18:1, d19:1, and d20:1 bases, and acyl fatty acids ranging from 10 to 25 carbons and 0-1 desaturations. Spiked SM standards into milk had a recovery of 99.7%, and endogenous milk SM had <10% coefficient of variation for both intra- and interday variability, with limits of detection of 1.4-5.55 nM and limits of quantitation of 11.8-178.1 nM. This MS-MRM method was employed to accurately and precisely quantify SM species in dairy products, including bovine-derived whole milk, half and half, whipping cream, and goat milk.

摘要

通过基于灌注的质谱(MS)定量鞘磷脂(SM)的种类比较复杂,因为存在等质量的磷脂酰胆碱(PC)种类,这些物质在存在铵离子的情况下,由于膦酸胆碱头基,会产生一个共同的/184 产物离子。SM 的锂离子加合物经历选择性脱水 [Li + HO + (CH)NCHPO],伴随着 -207 Da 的相应中性损失。这种中性损失被用来创建一种用于识别目标物质的 SM 选择性方法,使用多重反应监测(MRM)进行定量。MS 中的 SM 选择性碎片用于表征神经酰胺碱基和酰基链。这些方法用于鉴定牛乳中 50 种不同的 SM 种类,从 SM 28:1 到 SM 44:2,具有 d16:1、d17:1、d18:1、d19:1 和 d20:1 碱基,以及酰基脂肪酸从 10 到 25 个碳原子和 0-1 个去饱和。将 SM 标准品加入牛奶中,回收率为 99.7%,内源性牛奶 SM 的日内和日间变异系数均<10%,检测限为 1.4-5.55 nM,定量限为 11.8-178.1 nM。这种 MS-MRM 方法用于准确、精确地定量乳制品中的 SM 种类,包括牛源全脂牛奶、半脱脂牛奶、搅打奶油和山羊奶。

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