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提取方法和运输条件对牛卵母细胞脂质谱的影响

Impact of Extraction Methods and Transportation Conditions on Lipid Profiles of Bovine Oocytes.

作者信息

de Lima Camila Bruna, Milazzotto Marcella Pecora, Vireque Alessandra Aparecida, Joaquim Daniel Carlino, Sobreira Tiago Jose Paschoal, Ferreira Christina Ramires

机构信息

Department of Animal Sciences, Université Laval, Québec, QC, Canada.

Center of Natural and Human Sciences, Universidade Federal Do ABC, Santo André, São Paulo, Brazil.

出版信息

Reprod Sci. 2024 Jul;31(7):1948-1957. doi: 10.1007/s43032-024-01524-9. Epub 2024 Apr 1.

Abstract

Lipids play numerous pivotal physiological roles in mammalian reproduction, being indispensable for oocyte competence acquisition and post-fertilization embryonic development. Profiling lipids in minute samples, such as oocytes, presents challenges but has been accomplished through mass spectrometry technologies like Multiple Reaction Monitoring (MRM) profiling. With the dual objectives of simplifying workflow and examining the influence of preanalytical conditions, we assessed whether transportation at room temperature affects the lipid profile of bovine oocytes. To this end, samples were prepared using either monophasic (methanol only) or biphasic liquid extraction protocols (Bligh & Dyer method) and transported either on dry ice or at room temperature inside sealed-vacuum packages to prevent lipid oxidation. Subsequently, employing a comprehensive method, we screened a list of 316 MRMs from 10 different lipid subclasses in oocyte lipid extracts. Principal Component Analysis (PCA) revealed similar lipid profiles concerning temperature during transportation, whereas clear differentiation among samples was observed based on the lipid extraction method. Univariate analysis indicated that the one-phase methanol extraction resulted in higher relative abundances of phospholipids, except for phosphatidylserines. Conversely, the Bligh & Dyer extraction favored the detection of neutral intracellular lipids (triacylglycerols, free fatty acids, cholesteryl esters, and acyl-carnitines). Consequently, lipid recovery was directly correlated with the polarity of lipid class and the extraction method. Regarding transportation temperature, phosphatidylethanolamine, triacylglycerol, and free fatty acids exhibited lower abundances when samples were transported at room temperature. Based on multivariate and univariate analyses, we conclude that if samples undergo the same lipid extraction protocol and are transported in the same batch at room temperature inside vacuum-sealed bags, it is feasible to analyze lipid extracts of bovine oocytes and still obtain informative lipid profiling results.

摘要

脂质在哺乳动物生殖过程中发挥着众多关键的生理作用,对于卵母细胞能力的获得以及受精后的胚胎发育不可或缺。对微量样本(如卵母细胞)中的脂质进行分析颇具挑战,但已通过多反应监测(MRM)分析等质谱技术得以实现。为了简化工作流程并研究分析前条件的影响这两个双重目标,我们评估了室温运输是否会影响牛卵母细胞的脂质谱。为此,使用单相(仅甲醇)或双相液体萃取方案(布莱-戴尔法)制备样本,并在干冰上运输或在室温下置于密封真空包装内运输,以防止脂质氧化。随后,我们采用一种综合方法,从卵母细胞脂质提取物中的10种不同脂质亚类中筛选了316个MRM列表。主成分分析(PCA)显示运输过程中的温度对脂质谱影响相似,而基于脂质提取方法观察到样本之间有明显差异。单变量分析表明,单相甲醇萃取导致磷脂(除磷脂酰丝氨酸外)的相对丰度更高。相反,布莱-戴尔萃取更有利于检测细胞内中性脂质(三酰甘油、游离脂肪酸、胆固醇酯和酰基肉碱)。因此,脂质回收率与脂质类别极性和提取方法直接相关。关于运输温度,当样本在室温下运输时,磷脂酰乙醇胺、三酰甘油和游离脂肪酸的丰度较低。基于多变量和单变量分析,我们得出结论,如果样本采用相同的脂质提取方案,并在室温下以同一批次置于真空密封袋内运输,那么分析牛卵母细胞的脂质提取物并获得信息丰富的脂质分析结果是可行的。

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