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首页> 外文期刊>Journal of psychopharmacology >Tyrosine-free amino acid mixtures reduce physiologically-evoked release of dopamine in a selective and activity-dependent manner
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Tyrosine-free amino acid mixtures reduce physiologically-evoked release of dopamine in a selective and activity-dependent manner

机译:不含酪氨酸的氨基酸混合物以选择性和活性依赖性的方式减少多巴胺的生理诱发释放

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Depletion of the catecholamine precursor tyrosine using tyrosine-free amino acid mixtures is an important tool in neuropsychological studies, and often considered dopamine selective on the basis of neuropharmacological studies. However, little is known of the effects of tyrosine depletion when catecholamine neurons are activated physiologically. Here we investigated the effect of tyrosine-free amino acid mixtures on catecholamine release evoked in vivo using a stimulation paradigm aimed to approximate the phasic firing pattern of these neurons that accompanies cognitive and behavioural change. Dopamine and noradrenaline release was monitored by microdialysis in rat medial prefrontal cortex (mPFC) and striatum (chloral hydrate anaesthesia, perfusion medium containing 1 μM cocaine). Electrical stimulation of the medial forebrain bundle (MFB) caused a short-lasting, frequency-dependent increase in dopamine and noradrenaline. A full tyrosine-free amino acid mixture reduced the release of dopamine in mPFC and striatum, across a range of stimulation frequencies, and the effect was greater as stimulation frequency increased. Similar results were obtained using a smaller tyrosine-free amino acid mixture. In the same experiments showing decreased dopamine, neither tyrosine-free mixture of amino acids significantly altered stimulation-evoked release of noradrenaline. These results show that tyrosine depletion using tyrosine-free amino acid mixtures causes a selective, activity-dependent decrease in dopamine release when dopamine neurons are driven physiologically.
机译:使用不含酪氨酸的氨基酸混合物消耗儿茶酚胺前体酪氨酸是神经心理学研究中的重要工具,在神经药理研究的基础上经常认为多巴胺选择性。但是,当儿茶酚胺神经元被生理激活时,酪氨酸耗竭的影响知之甚少。在这里,我们使用刺激范式研究了无酪氨酸氨基酸混合物对体内诱发的儿茶酚胺释放的影响,该刺激范式旨在近似伴随认知和行为变化的这些神经元的相继放电模式。在大鼠内侧前额叶皮层(mPFC)和纹状体(水合氯醛麻醉,含1μM可卡因的灌注培养基)中通过微透析监测多巴胺和去甲肾上腺素的释放。内侧前脑束(MFB)的电刺激引起多巴胺和去甲肾上腺素的短暂,频率依赖性增加。在一系列刺激频率范围内,完全不含酪氨酸的氨基酸混合物可降低多巴胺在mPFC和纹状体中的释放,并且随着刺激频率的增加,效果会更大。使用较小的无酪氨酸氨基酸混合物可获得相似的结果。在显示多巴胺减少的相同实验中,氨基酸的不含酪氨酸的混合物均未显着改变去甲肾上腺素的刺激诱发释放。这些结果表明,在生理上驱动多巴胺神经元时,使用不含酪氨酸的氨基酸混合物消耗酪氨酸会导致多巴胺释放的选择性,活性依赖性降低。

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