Aggregated single-walled carbon nanotubes attenuate the behavioural and neurochemical effects of methamphetamine in mice

聚集的单壁碳纳米管减弱甲基苯丙胺对小鼠的行为和神经化学影响

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作者:Xue Xue, Jing-Yu Yang, Yi He, Li-Rong Wang, Ping Liu, Li-Sha Yu, Guo-Hua Bi, Ming-Ming Zhu, Yue-Yang Liu, Rong-Wu Xiang, Xiao-Ting Yang, Xin-Yu Fan, Xiao-Min Wang, Jia Qi, Hong-Jie Zhang, Tuo Wei, Wei Cui, Guang-Lu Ge, Zheng-Xiong Xi, Chun-Fu Wu, Xing-Jie Liang

Abstract

Methamphetamine (METH) abuse is a serious social and health problem worldwide. At present, there are no effective medications to treat METH addiction. Here, we report that aggregated single-walled carbon nanotubes (aSWNTs) significantly inhibited METH self-administration, METH-induced conditioned place preference and METH- or cue-induced relapse to drug-seeking behaviour in mice. The use of aSWNTs alone did not significantly alter the mesolimbic dopamine system, whereas pretreatment with aSWNTs attenuated METH-induced increases in extracellular dopamine in the ventral striatum. Electrochemical assays suggest that aSWNTs facilitated dopamine oxidation. In addition, aSWNTs attenuated METH-induced increases in tyrosine hydroxylase or synaptic protein expression. These findings suggest that aSWNTs may have therapeutic effects for treatment of METH addiction by oxidation of METH-enhanced extracellular dopamine in the striatum.

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