Risperidone Induced DNA Methylation Changes in Dopamine Receptor and Stathmin Genes in Mice Exposed to Social Defeat Stress

IF 2.4 4区 医学 Q3 NEUROSCIENCES Clinical Psychopharmacology and Neuroscience Pub Date : 2022-05-31 DOI:10.9758/cpn.2022.20.2.373
F. Rami, Thong Ba Nguyen, Young-Eun Oh, Maryam Karamikheirabad, Thi-Hung Le, Y. Chung
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引用次数: 1

Abstract

Objective Understanding complex epigenetic mechanisms is necessary to fully elucidate the effects of antipsychotic drug. This study investigated DNA methylation and mRNA expression levels of dopamine D2 and D1 receptor (Drd2 and Drd1, respectively), nuclear receptor subfamily 3, group C, member 1 (Nr3c1) and stathmin 1 (Stmn1) in brain regions of mice exposed to social defeat stress (SDS) and effects of risperidone on altered methylation and mRNA expression levels induced by SDS. Methods Following SDS for 10 days, risperidone (0.2 mg/kg) or vehicle was administered to adult mice for 7 days. Brain tissues from the prefrontal cortex (PFC), hippocampus (HIP) and amygdala (AMY) were processed to measure methylation and mRNA levels of Drd2, Drd1, Nr3c1 and Stmn1 using pyrosequencing and real time-polymerase chain reaction. Results We found altered methylation status of Nr3c1 and Stmn1 in the HIP and AMY of mice exposed to SDS. These changes were reversed by risperidone treatment. In addition, different methylation patterns of Drd2 and Drd1 in the PFC and AMY between defeated and control mice were identified with risperidone treatment. Conclusion These findings suggest that risperidone can cause epigenetic changes in Drd2, Drd1, Nr3c1 and Stmn1 in defeated mice. These changes could be epigenetic mechanisms underlying antipsychotic efficacy.
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利培酮诱导社交失败应激小鼠多巴胺受体和安定素基因的DNA甲基化变化
目的了解复杂的表观遗传学机制是全面阐明抗精神病药物作用的必要条件。本研究研究了暴露于社交失败应激(SDS)的小鼠大脑区域中多巴胺D2和D1受体(分别为Drd2和Drd1)、核受体亚家族3、C组、成员1(Nr3c1)和stathmin 1(Stmn1)的DNA甲基化和mRNA表达水平,以及利培酮对SDS诱导的甲基化和信使核糖核酸表达水平改变的影响。方法成年小鼠服用利培酮(0.2mg/kg)或赋形剂,连续7天。处理前额叶皮层(PFC)、海马体(HIP)和杏仁核(AMY)的脑组织,使用焦磷酸测序和实时聚合酶链式反应测量Drd2、Drd1、Nr3c1和Stmn1的甲基化和mRNA水平。结果SDS暴露小鼠的HIP和AMY中Nr3c1和Stmn1的甲基化状态发生了改变。利培酮治疗逆转了这些变化。此外,通过利培酮治疗,确定了失败小鼠和对照小鼠PFC和AMY中Drd2和Drd1的不同甲基化模式。结论利培酮可引起小鼠Drd2、Drd1、Nr3c1和Stmn1的表观遗传学变化。这些变化可能是抗精神病药物疗效的表观遗传学机制。
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来源期刊
Clinical Psychopharmacology and Neuroscience
Clinical Psychopharmacology and Neuroscience NEUROSCIENCESPHARMACOLOGY & PHARMACY-PHARMACOLOGY & PHARMACY
CiteScore
4.70
自引率
12.50%
发文量
81
期刊介绍: Clinical Psychopharmacology and Neuroscience (Clin Psychopharmacol Neurosci) launched in 2003, is the official journal of The Korean College of Neuropsychopharmacology (KCNP), and the associate journal for Asian College of Neuropsychopharmacology (AsCNP). This journal aims to publish evidence-based, scientifically written articles related to clinical and preclinical studies in the field of psychopharmacology and neuroscience. This journal intends to foster and encourage communications between psychiatrist, neuroscientist and all related experts in Asia as well as worldwide. It is published four times a year at the last day of February, May, August, and November.
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