Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.
Immunity, Inflammation, and Disease Laboratory, National Institute of Environmental Health Sciences, Durham, NC, USA.
Anal Bioanal Chem. 2024 Oct;416(25):5423-5429. doi: 10.1007/s00216-024-05351-4. Epub 2024 May 30.
The importance of lipids in biology continues to grow with their recent linkages to more diseases and conditions, microbiome fluctuations, and environmental exposures. These associations have motivated researchers to evaluate lipidomic changes in numerous matrices and studies. Lipidomic analyses, however, present numerous challenges as lipid species have broad chemistries that require different extraction methods and instrumental analyses to evaluate and separate their many isomers and isobars. Increasing knowledge about different lipid characteristics is therefore crucial for improving their separation and identification. Here, we present a multidimensional database for lipids analyzed on a platform combining reversed-phase liquid chromatography, drift tube ion mobility spectrometry, collision-induced dissociation, and mass spectrometry (RPLC-DTIMS-CID-MS). This platform and the different separation characteristics it provides enables more confident lipid annotations when compared to traditional tandem mass spectrometry platforms, especially when analyzing highly isomeric molecules such as lipids. This database expands on our previous publication containing only human plasma and bronchoalveolar lavage fluid lipids and provides experimental RPLC retention times, IMS collision cross section (CCS) values, and m/z information for 877 unique lipids from additional biofluids and tissues. Specifically, the database contains 1504 precursor [M + H], [M + NH], [M + Na], [M-H], [M-2H], [M + HCOO], and [M + CHCOO] ion species and their associated CID fragments which are commonly targeted in clinical and environmental studies, in addition to being present in the chloroform layer of Folch extractions. Furthermore, this multidimensional RPLC-DTIMS-CID-MS database spans 5 lipid categories (fatty acids, sterols, sphingolipids, glycerolipids, and glycerophospholipids) and 24 lipid classes. We have also created a webpage (tarheels.live/bakerlab/databases/) to enhance the accessibility of this resource which will be populated regularly with new lipids as we identify additional species and integrate novel standards.
脂质在生物学中的重要性不断增加,因为它们最近与更多的疾病和状况、微生物组波动以及环境暴露有关。这些关联促使研究人员评估了众多基质和研究中的脂质组变化。然而,脂质组分析存在许多挑战,因为脂质种类具有广泛的化学性质,需要不同的提取方法和仪器分析来评估和分离其许多异构体和同量异位体。因此,增加对不同脂质特征的了解对于改善其分离和鉴定至关重要。在这里,我们提出了一个多维数据库,用于分析在结合反相液相色谱、漂移管离子淌度质谱、碰撞诱导解离和质谱(RPLC-DTIMS-CID-MS)的平台上分析的脂质。与传统的串联质谱平台相比,该平台及其提供的不同分离特性可以更自信地注释脂质,尤其是在分析高度异构的分子(如脂质)时。该数据库扩展了我们之前仅包含人类血浆和支气管肺泡灌洗液脂质的出版物,并提供了来自其他生物流体和组织的 877 种独特脂质的实验 RPLC 保留时间、IMS 碰撞截面 (CCS) 值和 m/z 信息。具体来说,该数据库包含 1504 种独特的前体 [M+H]+、[M+NH]+、[M+Na]+、[M-H]−、[M-2H]−、[M+HCOO]−和 [M+CHCOO]−离子物种及其相关的 CID 片段,这些离子物种通常是临床和环境研究的目标,并且存在于 Folch 提取的氯仿层中。此外,这个多维 RPLC-DTIMS-CID-MS 数据库跨越了 5 个脂质类别(脂肪酸、甾醇、鞘脂、甘油酯和甘油磷脂)和 24 个脂质类。我们还创建了一个网页 (tarheels.live/bakerlab/databases/),以增强该资源的可访问性,随着我们识别更多的物种并整合新的标准,该网页将定期添加新的脂质。