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The Effect of Lithium on Inflammation-Associated Genes in Lipopolysaccharide-Activated Raw 264.7 Macrophages

机译:锂对脂多糖激活的原始264.7巨噬细胞炎症相关基因的影响

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Lithium remains the preferred Food and Drug Administration- (FDA-) approved psychiatric drug for treatment of bipolar disorders since its medical establishment more than half a century ago. Recent studies revealed a promising role for lithium in the regulation of inflammation, oxidative stress, and neurodegeneration albeit unclear about its exact mode of action. Thus, the intention of this study is to delineate the regulatory mechanisms of lithium on oxidative stress in lipopolysaccharide- (LPS-) activated macrophages by evaluating its effects on nuclear factor-κB (NF-κB) activity and mRNA expression of multiple oxidative stress-related NF-κB genes. Raw 264.7 macrophages were treated with up to 10?mM lithium, and no change in cell proliferation, viability, growth, and cell adhesion was observed in real time. Pretreatment with low doses of lithium was shown to reduce nitric oxide (NO) production in LPS-activated macrophages. A reduced internal H2DCFDA fluorescence intensity, indicative of reduced reactive oxygen species (ROS) production, was observed in LPS-activated Raw 264.7 macrophages treated with lithium. Lithium has been shown to lower the production of the chemokine RANTES; furthermore, this inhibitory action of lithium has been suggested to be independent of glycogen synthase kinase-3 β (GSK3β) activity. It is shown here that lithium modulates the expression of several inflammatory genes including IκB-α, TRAF3, Tollip, and NF-κB1/p50 which are regulators of the NF-κB pathway. Moreover, lithium inhibits NF-κB activity by lowering nuclear translocation of NF-κB in LPS-activated macrophages. This is the first study to associate Tollip, Traf-3, and IκB-α mRNA expression with lithium effect on NF-κB activity in LPS-activated Raw 264.7 macrophages. Although these effects were obtained using extratherapeutic concentrations of lithium, results of this study provide useful information towards understanding the mode of action of lithium. This study associates lithium with reduced oxidative stress in LPS-activated Raw 264.7 macrophages and further suggests candidate molecular targets for the regulation of oxidative stress-related diseases using lithium beyond bipolar disorders.
机译:锂仍然是优选的食品和药物施用 - (FDA-)批准的精神病药以来,以至于其医疗机构超过半个多世纪前的双极障碍。最近的研究揭示了锂在炎症,氧化应激和神经变性调节中的有希望的作用,尽管尚不清楚其确切的作用方式。因此,本研究的目的是通过评估其对多种氧化应激的核因子-κB(NF-κB)活性和mRNA表达的影响,描绘脂多糖 - (LPS-)活化巨噬细胞中氧化胁迫对氧化胁迫的调节机制。相关NF-κB基因。原料264.7巨噬细胞含有高达10μm的锂处理,并且实时观察到细胞增殖,活力,生长和细胞粘附的变化。显示低剂量锂的预处理,以减少LPS活化的巨噬细胞中的一氧化氮(NO)产生。在用锂处理的LPS-活化的原料264.7巨噬细胞中观察到降低的内部H2DCFDA荧光强度,指示降低的活性氧物质(ROS)产生。锂已被证明可以降低趋化因子咆哮的生产;此外,已经提出这种锂的这种抑制作用与糖原合酶激酶-3β(GSK3β)活性无关。这里示出了锂调节包括IκB-α,TRAF3,TULLIP和NF-κB1/ P50的几种炎症基因的表达,这是NF-κB途径的调节剂。此外,锂通过降低LPS活化的巨噬细胞中NF-κB的核易位来抑制NF-κB活性。这是第一种将Tollip,Traf-3和IκB-αmRNA表达与锂效应对LPS激活的原料264.7巨噬细胞的NF-κB活性相关联的研究。尽管使用锂的锂浓度获得了这些效果,但是本研究的结果提供了了解锂的作用方式的有用信息。本研究将锂与LPS激活的原料264.7巨噬细胞中的氧化胁迫降低,并进一步表明使用超越双极性疾病的锂调节氧化应激相关疾病的候选分子靶标。

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