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LIPID CHARACTERIZATION OF INDIVIDUAL PORCINE OOCYTES BY DUAL MODE DESI-MS AND DATA FUSION

机译:通过双模式DESI-MS和数据融合对单个卵囊进行脂质表征

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摘要

The development of sensitive measurements to analyze individual cells is of relevance to elucidate specialized roles or metabolic functions of each cell under physiological and pathological conditions. Lipids play multiple and critical roles in cellular functions and the application of analytical methods in the lipidomics area is of increasing interest. In this work, in vitro maturation of porcine oocytes was studied. Two independent sources of chemical information (represented by mass spectra in the positive and negative ion modes) from single oocytes (immature oocytes, 24-hour and 44-hour in vitro matured oocytes) were acquired by using desorption electrospray ionization-mass spectrometry (DESI-MS). Low and mid-level data fusion strategies are presented with the aim of better exploring the large amount of chemical information contained in the two mass spectrometric lipid profiles. Data were explored by principal component analysis (PCA) within the two multi-block approaches to include information on free fatty acids, phospholipids, cholesterol-related molecules, di- and triacylglycerols. After data fusion, clearer differences among immature and in vitro matured porcine oocytes were observed, which provide novel information regarding lipid metabolism throughout oocyte maturation. In particular, changes in TAG composition, as well as increase in fatty acid metabolism and membrane complexity were evidenced during the in vitro maturation process. This information can assist the improvement of in vitro embryo production for porcine species.
机译:开发用于分析单个细胞的灵敏测量与阐明生理和病理条件下每个细胞的特殊作用或代谢功能有关。脂质在细胞功能中起着多种关键作用,分析方法在脂质组学领域的应用越来越受到关注。在这项工作中,研究了猪卵母细胞的体外成熟。使用解吸电喷雾电离质谱法(DESI)从单个卵母细胞(未成熟​​卵母细胞,24小时和44小时体外成熟卵母细胞)获得了两个独立的化学信息源(以正离子和负离子模式的质谱表示) -多发性硬化症)。提出了低级和中级数据融合策略,目的是更好地探索两个质谱脂质谱中包含的大量化学信息。通过两种多嵌段方法中的主成分分析(PCA)探索数据,以包括有关游离脂肪酸,磷脂,胆固醇相关分子,二酰基和三酰基甘油的信息。数据融合后,观察到未成熟和体外成熟的猪卵母细胞之间的差异更加明显,这为整个卵母细胞成熟过程中脂质代谢提供了新的信息。特别是,在体外成熟过程中,TAG组成的变化以及脂肪酸代谢和膜复杂性的增加得到了证明。该信息可以帮助改善猪种的体外胚胎生产。

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