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首页> 外文期刊>Lipids >Plasma Phosphatidylethanolamine and Triacylglycerol Fatty Acid Concentrations are Altered in Major Depressive Disorder Patients with Seasonal Pattern
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Plasma Phosphatidylethanolamine and Triacylglycerol Fatty Acid Concentrations are Altered in Major Depressive Disorder Patients with Seasonal Pattern

机译:血浆磷脂酰乙醇胺和三酰基甘油脂肪酸浓度在季节性模式的主要抑郁症患者中改变

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Disturbances in peripheral and brain lipid metabolism, including the omega-3 fatty acid docosahexaenoic acid (DHA), have been reported in major depressive disorder (MDD). However, these changes have yet to be confirmed in MDD with seasonal pattern (MDD-s), a subtype of recurrent MDD. The present exploratory study quantified plasma plasmalogen and diacyl-phospholipid species, and fatty acids within total phospholipids, cholesteryl esters, triacylglycerols and free fatty acids in non-medicated MDD-s participants (n = 9) during euthymia in summer or fall, and during depression in winter in order to screen for potential high sensitivity lipid biomarkers. Triacylglycerol alpha-linolenic acid concentration was significantly decreased, and myristoleic acid concentration was significantly increased, during winter depression compared to summer-fall euthymia. 1-stearyl-2-docosahexaenoyl-sn-glycero-3-phosphoethanolamine, a diacyl-phospholipid containing stearic acid and DHA, was significantly decreased in winter depression. Concentrations of cholesteryl ester oleic acid and several polyunsaturated fatty acids between summer/fall and winter increased in proportion to the increase in depressive symptoms. The observed changes in lipid metabolic pathways in winter-type MDD-s offer new promise for lipid biomarker development.
机译:在重大抑郁症(MDD)中报道了外周血和脑脂质代谢的疾病,包括ω-3脂肪酸二十二醇烯酸(DHA)。然而,这些变化尚未以MDD在季节性模式(MDD-S)中,其复发MDD的亚型证实。本探索性研究在夏季或秋季的Euthymia期间在非药物MDD-S参与者(N = 9)中总磷脂,胆汁纤维酯,三酰基甘油和游离脂肪酸内的脂肪酸,脂肪酸在夏季或跌落期间冬季抑郁症是为了筛选潜在的高敏感性脂质生物标志物。冬季抑郁症与夏季下降肠炎相比,三酰基甘油α-亚麻酸浓度显着下降,冬季抑郁症期间显着增加。 1-硬脂酰-2-二十二烷己烯酰-a-甘油-3-磷乙醇胺,冬季抑郁症含有硬脂酸和DHA的二酰基 - 磷脂,显着降低。夏季/秋季与冬季之间的胆汁甾醇酯油酸和几种多不饱和脂肪酸的浓度与抑郁症状的增加成比例地增加。冬季MDD-S中脂质代谢途径的观察到改变为脂质生物标志物发育提供了新的承诺。

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