Clausing P, Bloom D, Newport G D, Holson R R, Slikker W, Bowyer J F
Division of Neurotoxicology, National Center for Toxicological Research, Jefferson, AR 72079, USA.
Psychopharmacology (Berl). 1996 Oct;127(3):187-94.
It has been postulated that differences in pharmacokinetics do not contribute to the well-known individual variability in response to amphetamine (AMPH), but this is yet to be investigated thoroughly. Therefore, rotational behavior of outbred rats (Sprague-Dawley, 4 months old) was recorded during microdialysis sessions and striatal microdialysate was analyzed concomitantly for AMPH and dopamine concentrations after a single injection of 2.5 mg/kg AMPH SC. Three hours later these rats received three doses of 5 mg/kg AMPH SC (spaced 2 h apart) and their brain temperature was recorded every 20 min. The most important findings were: 1) the increase in extracellular dopamine was highly correlated with the corresponding peak AMPH levels in the microdialysate; 2) the peak dopamine level in response to 2.5 mg/kg AMPH was predictive of the hyperthermic response observed during 3 x 5 mg/kg AMPH and 3) high versus low rotators differed neither in their AMPH nor in their dopamine extracellular striatal concentrations.
据推测,药代动力学差异并非导致苯丙胺(AMPH)反应中众所周知的个体变异性的原因,但这一点尚未得到充分研究。因此,在微透析过程中记录了远交系大鼠(Sprague-Dawley,4个月大)的旋转行为,并在单次皮下注射2.5mg/kg AMPH后,同时分析纹状体微透析液中的AMPH和多巴胺浓度。三小时后,这些大鼠接受三次5mg/kg AMPH皮下注射(间隔2小时),并每20分钟记录一次脑温。最重要的发现是:1)细胞外多巴胺的增加与微透析液中相应的AMPH峰值水平高度相关;2)对2.5mg/kg AMPH反应的多巴胺峰值水平可预测在3×5mg/kg AMPH期间观察到的体温过高反应;3)高旋转者和低旋转者在AMPH或纹状体细胞外多巴胺浓度方面均无差异。