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首页> 外文期刊>The world journal of biological psychiatry: the official journal of the World Federation of Societies of Biological Psychiatry >Drugs used in the treatment of bipolar disorder and their effects on cholesterol biosynthesis ? A possible therapeutic mechanism
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Drugs used in the treatment of bipolar disorder and their effects on cholesterol biosynthesis ? A possible therapeutic mechanism

机译:用于治疗双相障碍的药物及其对胆固醇生物合成的影响? 可能的治疗机制

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摘要

Objectives: To understand the therapeutic mechanisms of bipolar disorder (BD) drugs at molecular and cellular levels. Methods: Next generation sequencing was used to determine the transcriptional effects of a combination of four commonly prescribed BD drugs (lithium, valproate, lamotrigine and quetiapine) or vehicle (0.2% DMSO) in NT2-N (human neuronal) cells and rats. Differential expression of genes and pathway analysis were performed using edgeR in R and Gene Set Enrichment Analysis software respectively. Free cholesterol levels and neurite outgrowth were quantified in NT2-N cells following combination and individual BD drug treatments. Results: Pathway analysis showed up-regulation of many elements of the cholesterol biosynthesis pathway in NT2-N cells and oxidative phosphorylation in rat brains. Intracellular cholesterol transport genes were upregulated (NPC1, NPC2 and APOE), while the cholesterol efflux gene (ABCA1) was downregulated. BD drug combination tended to increase intracellular cholesterol levels and neurite outgrowth, but these effects were not seen for the drugs when used individually. Conclusions: These data suggest that BD drug combination is increasing cholesterol biosynthesis and the newly synthesised cholesterol is being utilised within the cells, possibly for synthesis of new membranes to facilitate neurite outgrowth. This mechanism possibly underpins clinical efficacy in individuals with BD treated with polypharmacy.
机译:目的:了解双相障碍(BD)药物在分子和细胞水平的治疗机制。方法:下一代测序用于确定NT2-N(人神经元)细胞和大鼠中四种常规规定的Bd药物(锂,戊酸锂,叠氮)或载体(0.2%dmso)的组合的转录效应。使用R和基因设定富集分析软件中的edger进行基因和途径分析的差异表达。在组合和单独的BD药物处理之后,在NT2-N细胞中定量了游离胆固醇水平和神经突的出生。结果:途径分析显示NT2-N细胞中胆固醇生物合成途径的许多元素的上升调节,大鼠大脑中的氧化磷酸化。上调细胞内胆固醇转运基因(NPC1,NPC2和ApoE),而胆固醇流出基因(ABCA1)被下调。 BD药物组合倾向于增加细胞内胆固醇水平和神经突的产出,但在单独使用时,这些作用未被视为药物。结论:这些数据表明,BD药物组合正在增加胆固醇生物合成,并且在细胞内使用新合成的胆固醇,可能用于合成新膜以促进神经肌腱过剩。这种机制可能为具有多酚疾病治疗的BD的个体中的临床疗效。

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