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首页> 外文期刊>Biochemistry and Biophysics Reports >Effects of repetitive transcranial magnetic stimulation on ER stress-related genes and glutamate, γ-aminobutyric acid and glycine transporter genes in mouse brain
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Effects of repetitive transcranial magnetic stimulation on ER stress-related genes and glutamate, γ-aminobutyric acid and glycine transporter genes in mouse brain

机译:重复经颅磁刺激对小鼠内质网应激相关基因及谷氨酸,γ-氨基丁酸和甘氨酸转运蛋白基因的影响

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Repetitive transcranial magnetic stimulation (rTMS) is an emerging therapy for the treatment of psychiatric disorders. However, the mechanisms underlying the therapeutic effects of rTMS are still unclear, limiting its optimisation. Lasting effects suggest changes in disease-related genes, so we conducted gene chip and qRT-PCR analyses of genes associated with psychiatric diseases in the mouse brain at various times following 1, 20, 30 or 40 days of rTMS. Many genes were differentially expressed in the rTMS-treated mouse brain compared to sham controls, including genes encoding neurotransmitter transporters (upregulation of EAAT4, GLAST, GLT-1, GAT2, GAT4, GLYT1 and GLYT2), and endoplasmic reticulum (ER)-stress proteins (downregulation of IRE1α, IRE1β, and XBP1, upregulation of ATF6 and GRP78/Bip). Expression changes in many of these genes were also observed 10 days after the last rTMS treatment. In PC12 cells, rTMS upregulated GRP78/Bip mRNA and enhanced resistance against H2O2stress. These results suggest that rTMS differentially modulates multiple genes associated with psychiatric and neurodegenerative disorders. Sustained changes in the expression of these genes may underlie the therapeutic efficacy of chronic rTMS.
机译:重复经颅磁刺激(rTMS)是一种用于治疗精神疾病的新兴疗法。然而,rTMS治疗作用的潜在机制仍不清楚,限制了其最佳化。持久的影响提示疾病相关基因的变化,因此我们在rTMS的1、20、30或40天后的不同时间进行了与小鼠脑部精神疾病相关基因的基因芯片和qRT-PCR分析。与假对照组相比,许多在rTMS处理过的小鼠大脑中差异表达的基因,包括编码神经递质转运蛋白的基因(EAAT4,GLAST,GLT-1,GAT2,GAT4,GLYT1和GLYT2上调)和内质网应激蛋白(IRE1α,IRE1β和XBP1的下调,ATF6和GRP78 / Bip的上调)。在最后一次rTMS处理后10天,还观察到许多这些基因的表达变化。在PC12细胞中,rTMS上调GRP78 / Bip mRNA并增强了对H2O2胁迫的抵抗力。这些结果表明,rTMS差异调节与精神病和神经退行性疾病相关的多个基因。这些基因表达的持续变化可能是慢性rTMS疗效的基础。

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