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脂质组学:探寻心血管疾病中的分子脂质生物标志物

Lipidomics: quest for molecular lipid biomarkers in cardiovascular disease.

作者信息

Hinterwirth Helmut, Stegemann Christin, Mayr Manuel

机构信息

From the King's British Heart Foundation Centre, King's College, London, United Kingdom.

出版信息

Circ Cardiovasc Genet. 2014 Dec;7(6):941-54. doi: 10.1161/CIRCGENETICS.114.000550.

Abstract

Lipidomics is the comprehensive analysis of molecular lipid species, including their quantitation and metabolic pathways. The huge diversity of native lipids and their modifications make lipidomic analyses challenging. The method of choice for sensitive detection and quantitation of molecular lipid species is mass spectrometry, either by direct infusion (shotgun lipidomics) or coupled with liquid chromatography. Although shotgun lipidomics allows for high-throughput analysis, low-abundant lipid species are not detected. Previous separation of lipid species by liquid chromatography increases ionization efficiency and is better suited for quantifying low abundant and isomeric lipid species. In this review, we will discuss the potential of lipidomics for cardiovascular research. To date, cardiovascular research predominantly focuses on the role of lipid classes rather than molecular entities. An in-depth knowledge about the molecular lipid species that contribute to the pathophysiology of cardiovascular diseases may provide better biomarkers and novel therapeutic targets for cardiovascular disease.

摘要

脂质组学是对分子脂质种类进行全面分析,包括对它们的定量以及代谢途径的研究。天然脂质及其修饰的巨大多样性使得脂质组学分析具有挑战性。用于灵敏检测和定量分子脂质种类的首选方法是质谱分析法,可通过直接进样(鸟枪法脂质组学)或与液相色谱联用。尽管鸟枪法脂质组学能够实现高通量分析,但无法检测到低丰度脂质种类。此前通过液相色谱对脂质种类进行分离可提高电离效率,并且更适合定量低丰度和同分异构脂质种类。在这篇综述中,我们将讨论脂质组学在心血管研究中的潜力。迄今为止,心血管研究主要集中在脂质类别而非分子实体的作用上。深入了解那些促成心血管疾病病理生理学的分子脂质种类,可能会为心血管疾病提供更好的生物标志物和新的治疗靶点。

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