Pimentel Lígia, Fontes Ana Luiza, Salsinha Sofia, Machado Manuela, Correia Inês, Gomes Ana Maria, Pintado Manuela, Rodríguez-Alcalá Luís Miguel
Universidade Católica Portuguesa, CBQF - Centro de Biotecnologia e Química Fina - Laboratório Associado, Escola Superior de Biotecnologia, Porto, Portugal.
CINTESIS - Centro de Investigação em Tecnologias e Sistemas de Informação em Saúde, Faculdade de Medicina da Universidade do Porto, Portugal.
Electrophoresis. 2018 Mar 8. doi: 10.1002/elps.201700425.
Lipids are gaining relevance over the last 20 years, as our knowledge about their role has changed from merely energy/structural molecules to compounds also involved in several biological processes. This led to the creation in 2003 of a new emerging research field: lipidomics. In particular the phospholipids have pharmacological/food applications, participate in cell signalling/homeostatic pathways while their analysis faces some challenges. Their fractionation/purification is, in fact, especially difficult, as they are amphiphilic compounds. Moreover, it usually involves SPE or TLC procedures requiring specific materials hampering their suitableness for routine analysis. Finally, they can interfere with the ionization of other molecules during mass spectrometry analysis. Thus, simple high-throughput reliable methods to selectively isolate these compounds based on the difference between chemical characteristics of lipids would represent valuable tools for their study besides that of other compounds. The current review work aims to describe the state-of-the-art related to the extraction of phospholipids using liquid-liquid methods for their targeted isolation. The technological and biological importance of these compounds and ion suppression phenomena are also reviewed. Methods by precipitation with acetone or isolation using methanol seem to be suitable for selective isolation of phospholipids in both biological and food samples.
在过去20年里,脂质的重要性日益凸显,因为我们对其作用的认识已从仅仅是能量/结构分子转变为还参与多种生物过程的化合物。这导致在2003年创建了一个新兴的研究领域:脂质组学。特别是磷脂具有药理学/食品应用,参与细胞信号传导/稳态途径,而对其分析面临一些挑战。事实上,由于它们是两亲性化合物,其分离/纯化尤其困难。此外,这通常涉及固相萃取(SPE)或薄层色谱(TLC)程序,需要特定材料,这妨碍了它们适用于常规分析。最后,它们在质谱分析过程中会干扰其他分子的电离。因此,基于脂质化学特性差异选择性分离这些化合物的简单高通量可靠方法,除了对其他化合物的研究外,对脂质研究也将是有价值的工具。当前的综述工作旨在描述使用液-液方法靶向分离磷脂的最新技术。还综述了这些化合物的技术和生物学重要性以及离子抑制现象。用丙酮沉淀或用甲醇分离的方法似乎适用于在生物和食品样品中选择性分离磷脂。