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左甲素减轻了甲基苯丙胺的奖赏行为,并伴随降低了 ERK 磷酸化的激活作用在小鼠体内。

Levo-tetrahydropalmatine attenuates methamphetamine reward behavior and the accompanying activation of ERK phosphorylation in mice.

机构信息

School of Forensic Medicine, Shanxi Medical University, Taiyuan, 030001, PR China; Key Laboratory of Forensic Toxicology, Ministry of Public Security, Beijing, 100192, PR China.

School of Forensic Medicine, Shanxi Medical University, Taiyuan, 030001, PR China.

出版信息

Neurosci Lett. 2020 Jan 1;714:134416. doi: 10.1016/j.neulet.2019.134416. Epub 2019 Aug 6.

Abstract

Levo-tetrahydropalmatine (L-THP) is the main active ingredient of traditional Chinese herbal medicine Corydalis and Stephania, which have been used for sedative, neuroleptic, and analgesic purposes. Previous studies have demonstrated that L-THP has antagonistic activation on dopamine receptors. Despite its effectiveness on treating drug addiction, L-THP's underlying molecular mechanisms in modulating methamphetamine (METH) reward behavior remain unclear. In order to clarify the mechanisms behind, we designed an experiment of conditioned place preference (CPP) to investigate the effects of L-THP on METH-induced CPP in mice. We then dissected the underlying molecular mechanisms of L-THP in modulating METH-induced CPP by evaluating accompanying changes in expression of phosphorylated extracellular signal-regulated kinase (p-ERK) in reward-relevant brain regions, including nucleus accumbens (NAc), prefrontal cortex (PFc), caudate putamen (CPu), and hippocampus (Hip), which may mediate the effects of L-THP on METH-induced CPP. The results showed that 1.0 mg/kg METH could induce obvious CPP in mice; 10.0 mg/kg L-THP could significantly attenuate METH-induced CPP in mice, though it could not induce CPP or conditioned place aversion by itself. Moreover, the levels of p-ERK in NAc and PFc of the METH group were significantly higher than that of the saline group. Although there was no evident difference between the levels of p-ERK of the L-THP group with that of the saline group, the levels of p-ERK in NAc and PFc of the M + T group were significantly lower than that of the METH group. There was no striking difference among the levels of p-ERK in CPu and Hip of all experimental groups. Our research suggested that NAc and PFc function as circuits contributing to METH addiction, and the activation of the ERK phosphorylation plays an important role in the mechanisms of METH addiction. Besides, L-THP significantly decreased ERK phosphorylation's high expression induced by METH, which suggested that the inhibitory effect of L-THP on modulating METH reward behavior may be related to the suppression of ERK phosphorylation in NAc and PFc of mice. In conclusion, L-THP could suppress the reward properties of METH, therefore, it may be a promising candidate for the treatment of METH addiction.

摘要

左甲庚素(L-THP)是传统中药延胡索和千金藤的主要活性成分,用于镇静、抗精神病和镇痛。先前的研究表明,L-THP 对多巴胺受体具有拮抗激活作用。尽管 L-THP 治疗药物成瘾的效果显著,但它调节甲基苯丙胺(METH)奖励行为的潜在分子机制仍不清楚。为了阐明其背后的机制,我们设计了条件位置偏好(CPP)实验,以研究 L-THP 对小鼠 METH 诱导的 CPP 的影响。然后,我们通过评估奖励相关脑区(包括伏隔核(NAc)、前额叶皮层(PFc)、尾壳核(CPu)和海马(Hip))中磷酸化细胞外信号调节激酶(p-ERK)表达的伴随变化,来剖析 L-THP 调节 METH 诱导的 CPP 的潜在分子机制,这些改变可能介导了 L-THP 对 METH 诱导的 CPP 的影响。结果表明,1.0mg/kg METH 可诱导小鼠明显的 CPP;10.0mg/kg L-THP 可显著减轻小鼠 METH 诱导的 CPP,尽管它本身不能诱导 CPP 或条件性位置厌恶。此外,METH 组 NAc 和 PFc 中的 p-ERK 水平明显高于生理盐水组。尽管 L-THP 组与生理盐水组的 p-ERK 水平没有明显差异,但 M+T 组的 NAc 和 PFc 中的 p-ERK 水平明显低于 METH 组。各组 CPu 和 Hip 中的 p-ERK 水平无明显差异。我们的研究表明,NAc 和 PFc 作为参与 METH 成瘾的回路发挥作用,ERK 磷酸化的激活在 METH 成瘾机制中起着重要作用。此外,L-THP 显著降低了 METH 诱导的 ERK 磷酸化的高表达,这表明 L-THP 对调节 METH 奖励行为的抑制作用可能与抑制小鼠 NAc 和 PFc 中的 ERK 磷酸化有关。总之,L-THP 可抑制 METH 的奖励特性,因此,它可能是治疗 METH 成瘾的有前途的候选药物。

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