首页> 美国卫生研究院文献>Springer Open Choice >Both Stereoselective (R)- and (S)-1-Methyl-1234-tetrahydroisoquinoline Enantiomers Protect Striatal Terminals Against Rotenone-Induced Suppression of Dopamine Release
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Both Stereoselective (R)- and (S)-1-Methyl-1234-tetrahydroisoquinoline Enantiomers Protect Striatal Terminals Against Rotenone-Induced Suppression of Dopamine Release

机译:立体选择性(R)-和(S)-1-甲基-1234-四氢异喹啉对映体均能保护纹状体末端免受鱼藤酮诱导的多巴胺释放抑制

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摘要

1-Methyl-1,2,3,4-tetrahydroisoquinoline (1MeTIQ) is present in the human and rodent brain as a mixture of stereospecific (R)- and (S)-1MeTIQ enantiomers. The racemate, (R,S)-1MeTIQ, exhibits neuroprotective activity as shown in the earlier study by the authors, and In addition, it was suggested to play a crucial physiological role in the mammalian brain as an endogenous regulator of dopaminergic activity. In this article, we investigated the influence of stereospecific enantiomers of 1MeTIQ, (R)- and (S)-1MeTIQ (50 mg/kg i.p.) on rotenone-induced (3 mg/kg s.c.) behavioral and neurochemical changes in the rat. In behavioral study, in order to record dynamic motor function of rats, we measured locomotor activity using automated locomotor activity boxes. In biochemical studies, we analyzed in rat striatum the concentration of dopamine (DA) and its metabolites: intraneuronal DOPAC, extraneuronal 3-MT, and final HVA using HPLC with electrochemical detection. Otherwise, DA release was estimated by in vivo microdialysis study. The behavioral study has demonstrated that both acute and repeated (3 times) rotenone administration unimportantly depressed a basic locomotor activity in rat. (R)- and (S)-1MeTIQ stereoisomers (50 mg/kg i.p.) produced a modest behavioral activation both in naïve and rotenone-treated rats. The data from ex vivo neurochemical experiments have shown stereospecificity of 1MeTIQ enantiomers in respect of their effects on DA catabolism. (R)-1MeTIQ significantly increased both the level of the final DA metabolite, HVA (by about 70%), and the rate of DA metabolism (by 50%). In contrast to that, (S)-1MeTIQ significantly depressed DOPAC, HVA levels (by 60 and 40%, respectively), and attenuated the rate of DA metabolism (by about 60%). On the other hand, both the enantiomers increased the concentrations of DA and its extraneuronal metabolite, 3-MT in rat striatum. In vivo microdialysis study has shown that repeated but not acute administration of rotenone produced a deep and significant functional impairment of striatal DA release. Both (R)- and (S)- stereospecific enantiomers of 1MeTIQ antagonized rotenone-induced suppression of DA release; however, the effect of (R)-1MeTIQ was more strongly expressed in microdialysis study. In conclusion, we suggest that both chiral isomers of 1MeTIQ offer neuroprotection against rotenone-induced disturbances in the function of dopaminergic neurons and (R,S)-1MeTIQ will be useful as a drug with marked neuroprotective activity in the brain.
机译:1-甲基-1,2,3,4-四氢异喹啉(1MeTIQ)以立体特异性(R)-和(S)-1MeTIQ对映体的混合物形式存在于人和啮齿动物脑中。 (R,S)-1MeTIQ外消旋体具有神经保护活性,如作者先前的研究所示。此外,它被认为在哺乳动物脑中作为多巴胺能活性的内源性调节剂起着至关重要的生理作用。在本文中,我们研究了1MeTIQ,(R)-和(S)-1MeTIQ(50 mg / kg i.p.)立体定向对映异构体对鱼藤酮诱导的(3 mg / kg s.c.)行为和神经化学变化的影响。在行为研究中,为了记录大鼠的动态运动功能,我们使用自动运动活动盒测量了运动活动。在生化研究中,我们使用HPLC和电化学检测技术分析了大鼠纹状体中多巴胺(DA)及其代谢物的浓度:神经元内DOPAC,神经元外3-MT和最终HVA。否则,通过体内微透析研究估计DA释放。行为研究表明,急性和重复(3次)鱼藤酮给药均不重要地降低了大鼠的基本运动能力。 (R)-和(S)-1MeTIQ立体异构体(50 mg / kg i.p.)在幼稚和鱼藤酮处理的大鼠中均产生适度的行为激活。来自离体神经化学实验的数据显示,就其对DA分解代谢的影响而言,1MeTIQ对映异构体的立体特异性。 (R)-1MeTIQ显着提高了最终DA代谢产物HVA的水平(约70%)和DA代谢率(50%)。与此相反,(S)-1MeTIQ显着降低了DOPAC,HVA水平(分别降低了60%和40%),并削弱了DA代谢率(降低了约60%)。另一方面,两种对映体均增加了大鼠纹状体中DA及其神经外代谢产物3-MT的浓度。体内微透析研究表明,重复但非急性给予鱼藤酮会严重影响纹状体DA的释放。 1MeTIQ的(R)-和(S)-立体特异性对映体均拮抗鱼藤酮诱导的DA释放抑制;然而,(R)-1MeTIQ的作用在微透析研究中更为强烈地表达。总之,我们建议1MeTIQ的两个手性异构体都可提供针对鱼藤酮诱导的多巴胺能神经元功能紊乱的神经保护作用,而(R,S)-1MeTIQ可用作具有明显神经保护作用的药物。

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