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Lithium response in bipolar disorders and core clock genes expression

机译:双极性疾病和核心时钟基因表达中的锂响应

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Objectives: We examine whether the lithium response is associated with changes in the expression of core clock genes. Methods: The effect of a therapeutic concentration of lithium (1 mM) on the expression levels of 17 circadian genes was examined in lymphoblastoid cell lines (LCLs) derived from two well-characterized groups of bipolar disorder patients, defined as lithium non-responders (NR, n = 20) or excellent responders (ER, n = 16). Quantitative real-time PCR (qRT-PCR) was conducted at 2, 4 and 8 days (d2, d4 and d8) with and without lithium exposure. Results: At d2, in ER only, BHLHE41, RORA, PER1, ARNTL, CRY2, BHLHE40 and CSNK1D were upregulated, whereas NR1D1 was downregulated. At d4, in ER only, CRY1 was downregulated. At d8, in NR only, GSK3 beta was upregulated and DBP, TIMELESS and CRY1 were downregulated. Significant Group x Lithium interactions existed for NR1D1 at d2 (P = 0.02), and CRY1 at d4 (P = 0.02). Longitudinal analyses showed differential temporal evolutions between NR and ER (significant Time x Group interaction) for PER3, NR1D1, DBP, RORA, CSNK1D and TIMELESS; and a significant Time x Lithium interaction for NR1D1. Coexpression data analyses suggested distinct groups of circadian genes concurrently modulated by lithium. Conclusions: In LCLs, lithium influences expression of circadian genes with differences in amplitude and kinetics according to the patient's lithium response status.
机译:目的:我们检查锂响应是否与核心时钟基因表达的变化有关。方法:锂(1mm)治疗浓度对17型昼夜组织细胞系(LCLS)的表达水平的影响,衍生自三种特征的双相障碍患者,定义为锂非响应者( NR,N = 20)或优秀的响应者(ER,N = 16)。定量实时PCR(QRT-PCR)在2,4和8天(D2,D4和D8),无锂暴露。结果:在ER中,在ER中,BHLHE41,RORA,PER1,ARNTL,CRY2,BHLHE40和CSNK1D被上调,而NR1D1已下调。在D4,仅在ER中,Cry1被下调。在D8,仅在NR中,GSK3 Beta被上调,DBP,无期不加区和Cry1被下调。在D2(P = 0.02)的NR1D1中存在显着的X锂相互作用,并在D4的CRY1(P = 0.02)。纵向分析显示NR和ER(IR ER(显着时间X组相互作用)的差异时间演变,NR1D1,DBP,RORA,CSNK1D和永恒;和NR1D1的显着时间X锂相互作用。共表达数据分析建议锂酸型同时调节的昼夜昼夜基因。结论:在LCLS中,锂根据患者的锂响应状态影响昼夜振幅和动力学差异的表达。

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