首页> 外文期刊>Journal of psychiatric research >Effects of dietary-induced alterations in rat brain docosahexaenoic acid accrual on phospholipid metabolism and mitochondrial bioenergetics: An in?vivo 31 P MRS study
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Effects of dietary-induced alterations in rat brain docosahexaenoic acid accrual on phospholipid metabolism and mitochondrial bioenergetics: An in?vivo 31 P MRS study

机译:膳食诱导的改变在大鼠脑Docosahexeno酸的影响对磷脂代谢和线粒体生物烯烯酸的作用:in?体内31 PRS研究

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Abstract Evidence from 31 P magnetic resonance spectroscopy ( 31 P MRS) studies suggest that different psychiatric disorders, which typically emerge during adolescence and young adulthood, are associated with abnormalities in mitochondrial bioenergetics and membrane phospholipid metabolism. These disorders are also associated with deficits in omega-3 polyunsaturated fatty acids ( n -3 PUFA), including docosahexaenoic acid (DHA) which accumulates in mitochondrial and synaptic membranes. The present study investigated the effects of dietary-induced alterations in brain DHA accrual during adolescence on phospholipid metabolism and bioenergetics in the adult rat brain using 31 P MRS. During the peri-adolescent period (P21-P90), male rats were fed a diet with no n -3 fatty acids (Deficient, DEF, n?=?20), a diet fortified with preformed DHA (fish oil, FO, n?=?20), or a control diet fortified with alpha-linolenic acid (18:3 n -3, n?=?20). On P90, 31 P MRS was performed under isoflurane anesthetic using a 7?T Bruker Biospec system. Compared with controls, brain DHA levels were significantly lower in adult rats fed the DEF diet (?17%, p?≤?0.0001) and significantly higher in rats fed the FO diet (+14%, p?≤?0.0001). There were no significant group differences for indices of bioenergetics, including adenosine triphosphate and phosphocreatine levels, or indices of membrane phospholipid metabolism including phosphomonoesters and phosphodiesters. Therefore, the present 31 P MRS data suggest that rat brain DHA levels are not a significant predictor of mitochondrial bioenergetics or membrane phospholipid metabolism.
机译:摘要从31个P磁共振光谱(31 PRS)研究表明,通常在青春期和青年期间出现的不同精神病疾病与线粒体生物植物和膜磷脂代谢的异常相关。这些疾病也与Omega-3多不饱和脂肪酸(N-3 PUFA)中的缺陷相关,包括在线粒体和突触膜中积聚的二十二碳甲酸(DHA)。本研究研究了31例MRS的白细胞脑DHA脑DHA脑DHA脑死中脑DHA和生物植物生物遗传学的影响。在PERI - 青少年时期(P21-P90)期间,雄性大鼠饲喂N-3脂肪酸的饮食(缺陷,DEF,N?= 20),用预先形成的DHA(鱼油,佛罗里达州, ?=?20),或用α-亚麻酸强化的控制饮食(18:3 n-3,n?= 20)。在P90,31上,使用7βTBruker Biospec系统在异氟醚麻醉剂下进行。与对照组相比,成年大鼠脑DHA水平显着降低,FED饮食(α17%,p≤≤0101),大鼠喂食(+ 14%,P≤≤0101)。生物能源索引没有显着的群体差异,包括三磷酸三磷酸和磷酸分泌物,或磷脂代谢的索引,包括磷酸族酯和磷化剂。因此,本31 PRS数据表明,大鼠脑DHA水平不是线粒体生物植物或磷脂代谢的显着预测因子。

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