Xu Zhiwei, Hou Bing, Gao Yan, He Fuchu, Zhang Chenggang
Beijing Institute of Radiation Medicine, Beijing 100850, China.
Exp Neurol. 2007 Apr;204(2):714-9. doi: 10.1016/j.expneurol.2006.12.027. Epub 2007 Jan 27.
Drug addiction and abuse have been extremely serious problems in our society. The effect of different environmental conditions on the susceptibility of human to drug addiction and abuse is still not fully understood. It was recently reported that enriched environment can trigger long-term modification in neural functions and might prevent the occurrence of pathogenic behaviors. Here we investigated the effects of enriched environment on morphine-induced reward in mice. We found that the enriched environment attenuated the acute morphine (10 mg/kg)-induced hyperlocomotion and repeated morphine (10 mg/kg)-induced behavioral sensitization. Moreover, the environmental condition blocked the conditioned place preference (CPP) of the mice induced by morphine (5 mg/kg). Associated with behavioral alterations, the expression of FosB-like proteins in the nucleus accumbens of the brain was down-regulated in the mice housed in the enriched environmental condition, but not in the standard environment. Taken together, these results indicate that enriched environmental condition leads to decrease in sensitivity of the mice to morphine-induced reward.
药物成瘾和滥用一直是我们社会中极其严重的问题。不同环境条件对人类药物成瘾和滥用易感性的影响仍未得到充分了解。最近有报道称,丰富环境可引发神经功能的长期改变,并可能预防致病行为的发生。在此,我们研究了丰富环境对小鼠吗啡诱导奖赏效应的影响。我们发现,丰富环境减弱了急性吗啡(10毫克/千克)诱导的运动亢进以及重复吗啡(10毫克/千克)诱导的行为敏化。此外,这种环境条件阻断了吗啡(5毫克/千克)诱导的小鼠条件性位置偏爱(CPP)。与行为改变相关的是,处于丰富环境条件下的小鼠大脑伏隔核中FosB样蛋白的表达下调,而处于标准环境中的小鼠则未出现这种情况。综上所述,这些结果表明,丰富环境条件导致小鼠对吗啡诱导奖赏效应的敏感性降低。