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MDMA (N-methyl-34-methylenedioxyamphetamine) and its Stereoisomers: Similarities and Differences in Behavioral Effects in an Automated Activity Apparatus in Mice

机译:MDMA(N-甲基-34-亚甲基二氧基苯丙胺)及其立体异构体:在小鼠自动活动装置中行为影响的异同。

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摘要

Racemic MDMA (0.3 – 30 mg/kg), S(+)-MDMA (0.3 – 30 mg/kg), R(-)-MDMA (0.3 – 50 mg/kg) and saline vehicle (10 ml/kg) were comprehensively evaluated in fully automated and computer-integrated activity chambers, which were designed for mice, and provided a detailed analysis of the frequency, location, and/or duration of 18 different activities. The results indicated that MDMA and its isomers produced stimulation of motor actions, with S(+)-MDMA and (±)-MDMA usually being more potent than R(-)-MDMA in measures such as movement (time, distance, velocity), margin distance, rotation (clockwise and counterclockwise), and retraced activities. Interestingly, racemic MDMA appeared to exert a greater than expected potency and/or an enhanced effect on measures such as movement episodes, center actions (entries and distance), clockwise rotations, and jumps; actions that might be explained by additive or synergistic (i.e. potentiation) effects of the stereoisomers. In other measures, the enantiomers displayed different effects: S(+)-MDMA produced a preference to induce counterclockwise (versus clockwise) rotations, and each isomer exerted a different profile of effect on vertical activities and jumps. Furthermore, each isomer of MDMA appeared to attenuate the effect of its opposite enantiomer on some behaviors; antagonism effects that were surmised from a lack of expected activities by racemic MDMA. S(+)-MDMA (but not R(-)-MDMA), for example, produced an increase in vertical entries (rearing) and a preference to increase counterclockwise (versus clockwise) rotations; (±)-MDMA also should have induced such effects but did not. Apparently, R(-)-MDMA, when combined with S(+)-MDMA to form (±)-MDMA, prevented the appearance of those increases (from control) in activities. Similarly, R(-)-MDMA (but not S(+)-MDMA) produced increases in episodes (i.e. jumps) and vertical distance that racemic MDMA also should have, but were not, exhibited. Evidently, the presence of S(+)-MDMA in the racemic mixture inhibited the appearance of those increases (from control) in behavior. Taken together, the various and complex effects of MDMA and its stereoisomers are noted and a strategy is suggested for future studies that stresses the importance of steric effects and interplay, probable interaction(s) with various neurotransmitters, and interaction(s) with the particular behavioral or biological event (or action) being measured.
机译:外消旋的MDMA(0.3 – 30 mg / kg),S(+)-MDMA(0.3 – 30 mg / kg),R(-)-MDMA(0.3 – 50 mg / kg)和生理盐水(10 ml / kg)在专为小鼠设计的全自动和计算机集成活动室内进行了全面评估,并详细分析了18种不同活动的频率,位置和/或持续时间。结果表明,MDMA及其异构体刺激了运动,在运动(时间,距离,速度)等方面,S(+)-MDMA和(±)-MDMA通常比R(-)-MDMA更有效。 ,边距,旋转(顺时针和逆时针)和追溯活动。有趣的是,外消旋的MDMA似乎对运动发作,中心动作(进入和距离),顺时针旋转和跳跃等措施产生了超出预期的效力和/或增强了作用。可能由立体异构体的累加或协同(即增强)作用解释的作用。在其他方法中,对映异构体表现出不同的作用:S(+)-MDMA产生了诱导逆时针旋转(相对于顺时针旋转)的偏好,并且每个异构体对垂直活动和跳跃的作用均不同。此外,MDMA的每种异构体似乎都减弱了其相反对映异构体对某些行为的影响。外消旋的摇头丸缺乏预期的活动,推测有拮抗作用。例如,S(+)-MDMA(而不是R(-)-MDMA)导致垂直项增加(增加),并且优先选择逆时针(相对于顺时针)旋转。 (±)-MDMA也应该引起这种作用,但没有。显然,R(-)-MDMA与S(+)-MDMA结合形成(±)-MDMA时,阻止了活动中这些增加的出现(由于控制)。类似地,R(-)-MDMA(但不是S(+)-MDMA)产生了外消旋MDMA也应显示但未显示的情节(即跳跃)和垂直距离的增加。显然,外消旋混合物中S(+)-MDMA的存在抑制了行为的增加(对照)。两者合计,指出了MDMA及其立体异构体的各种复杂作用,并提出了用于未来研究的策略,该策略强调了空间效应和相互作用,与各种神经递质的可能相互作用以及与特定神经递质的相互作用的重要性。行为或生物事件(或动作)被测量。

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