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Simultaneous quantitative profiling of 20 isoprostanoids from omega-3 and omega-6 polyunsaturated fatty acids by LC-MS/MS in various biological samples

机译:通过LC-MS / MS同时定量分析各种生物样品中20种异前列腺素类化合物的欧米伽3和欧米伽6多不饱和脂肪酸

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摘要

Isoprostanoids are a group of non-enzymatic oxygenated metabolites of polyunsaturated fatty acids. It belongs to oxylipins group, which are important lipid mediators in biological processes, such as tissue repair, blood clotting, blood vessel permeability, inflammation and immunity regulation. Recently, isoprostanoids from eicosapentaenoic, docosahexaenoic, adrenic and α-linolenic namely F3-isoprostanes, F4-neuroprostanes, F2-dihomo-isoprostanes and F1-phytoprostanes, respectively have attracted attention because of their putative contribution to health. Since isoprostanoids are derived from different substrate of PUFAs and can have similar or opposing biological consequences, a total isoprostanoids profile is essential to understand the overall effect in the testing model. However, the concentration of most isoprostanoids range from picogram to nanogram, therefore a sensitive method to quantify 20 isoprostanoids simultaneously was formulated and measured by liquid chromatography-tandem mass spectrometry (LC-MS/MS). The lipid portion from various biological samples was extracted prior to LC-MS/MS evaluation. For all the isoprostanoids LOD and LOQ, and the method was validated on plasma samples for matrix effect, yield of extraction and reproducibility were determined. The methodology was further tested for the isoprostanoids profiles in brain and liver of LDLR(-/-) mice with and without docosahexaenoic acid (DHA) supplementation. Our analysis showed similar levels of total F2-isoprostanes and F4-neuroprostanes in the liver and brain of non-supplemented LDLR(-/-) mice. The distribution of different F2-isoprostane isomers varied between tissues but not for F4-neuroprostanes which were predominated by the 4(RS)-4-F4t-neuroprostane isomer. DHA supplementation to LDLR(-/-) mice concomitantly increased total F4-neuroprostanes levels compared to F2-isoprostanes but this effect was more pronounced in the liver than brain.
机译:异前列腺素类是多不饱和脂肪酸的一组非酶氧化代谢产物。它属于脂蛋白类,是生物过程中的重要脂质介体,如组织修复,凝血,血管通透性,炎症和免疫调节。最近,二十碳五烯酸,二十二碳六烯酸,肾上腺素和α-亚麻酸的异前列腺素类,由于它们对健康的假定贡献,分别引起了人们的注意,它们分别是F3-异前列腺素,F4-神经前列腺素,F2-二高异异前列腺素和F1-植物前列腺素。由于异前列腺素类来自PUFA的不同底物,并且可能具有相似或相反的生物学结果,因此,总的异前列腺素类对于了解测试模型中的总体效果至关重要。但是,大多数异前列腺素的浓度范围从皮克到纳克,因此制定了同时定量20种异前列腺素的灵敏方法,并通过液相色谱-串联质谱法(LC-MS / MS)进行了测定。在LC-MS / MS评估之前,先从各种生物样品中提取脂质部分。对于所有异前列腺素LOD和LOQ,该方法已在血浆样品上验证了基质效应,确定了提取得率和重现性。进一步测试了该方法的LDLR(-/-)小鼠在补充和不补充二十二碳六烯酸(DHA)的大脑和肝脏中的异前列腺素类成分。我们的分析显示,未补充LDLR(-/-)小鼠的肝脏和大脑中总F2-异前列腺素和F4-神经前列腺素水平相似。不同的F2-异前列腺素异构体在组织之间的分布有所不同,但对于以4(RS)-4-F4t-神经前列腺素异构体为主的F4-神经前列腺素则没有变化。与F2-异前列腺素相比,向LDLR(-/-)小鼠补充DHA会同时增加F4-神经前列腺素的总水平,但这种作用在肝脏中比在大脑中更为明显。

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