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用氨基酸耗竭混合物对 C57BL/6J 小鼠进行 5-羟色胺能和多巴胺能功能的饮食干预。

Dietary manipulation of serotonergic and dopaminergic function in C57BL/6J mice with amino acid depletion mixtures.

机构信息

Clinic for Child and Adolescent Psychiatry, Psychosomatics and Psychotherapy, RWTH Aachen University, Neuenhofer Weg 21, 52074, Aachen, Nordrhein-Westfalen, Germany,

出版信息

J Neural Transm (Vienna). 2014 Feb;121(2):153-62. doi: 10.1007/s00702-013-1083-0. Epub 2013 Sep 24.

Abstract

Amino acid (AA) depletion techniques have been used to decrease serotonin (5-HT) and/or dopamine (DA) synthesis after administration of a tryptophan (acute tryptophan depletion, ATD) or phenylalanine/tyrosine-free (phenylalanine-tyrosine depletion, PTD) AA formula and are useful as neurochemical challenge procedures to study the impact of DA and 5-HT in patients with neuropsychiatric disorders. We recently demonstrated that the refined Moja-De ATD paradigm decreases brain 5-HT synthesis in humans and mice and lowers brain 5-HT turnover. In the present study we validated the neurochemical effects of three developed AA formulas on brain 5-HT and DA function in mice. To distinguish the direct and indirect effects of such mixtures on 5-HT and DA and to determine whether additive depletion of both could be obtained simultaneously, we compared the effects of ATD for 5-HT, PTD for DA, and a combined monoamine depletion mixture (CMD) compared to a control condition consisting of a balanced amino acid mixture. Food-deprived male C57BL/6J mice were gavaged with AA mixtures. Serum and brain samples were collected and analyzed for determination of tryptophan (Trp), tyrosine (Tyr), 5-HT, 5-HIAA, DA, DOPAC and HVA levels. ATD was the most effective at decreasing Trp, 5-HT and 5-HIAA. In contrast, PTD reduced Tyr globally but HVA only in certain brain regions. Although CMD affected both 5-HT and DA synthesis, it was less effective when compared with ATD or PTD alone. The present results demonstrate that two newly developed PTD and CMD formulas differentially impact brain 5-HT and DA synthesis relative to 5-HT-specific ATD Moja-De. Different effects on 5-HT and DA function by these mixtures suggest that the exact composition may be a critical determinant for effectiveness with respect to the administered challenge procedure.

摘要

氨基酸(AA)耗竭技术已被用于在施用色氨酸(急性色氨酸耗竭,ATD)或苯丙氨酸/酪氨酸缺乏(苯丙氨酸-酪氨酸耗竭,PTD)AA 配方后降低 5-羟色胺(5-HT)和/或多巴胺(DA)的合成,并且作为神经化学挑战程序用于研究神经精神疾病患者中 DA 和 5-HT 的影响是有用的。我们最近证明,改良的 Moja-De ATD 范式可降低人类和小鼠大脑中的 5-HT 合成并降低大脑中的 5-HT 周转率。在本研究中,我们验证了三种开发的 AA 配方对小鼠大脑 5-HT 和 DA 功能的神经化学作用。为了区分这些混合物对 5-HT 和 DA 的直接和间接作用,并确定是否可以同时获得两者的叠加耗竭,我们比较了 ATD 对 5-HT、PTD 对 DA 的作用,以及与包含平衡氨基酸混合物的对照条件相比,单胺耗竭混合物(CMD)的作用。禁食的雄性 C57BL/6J 小鼠用 AA 混合物灌胃。收集血清和脑样本并进行分析以确定色氨酸(Trp)、酪氨酸(Tyr)、5-HT、5-HIAA、DA、DOPAC 和 HVA 水平。ATD 最有效地降低 Trp、5-HT 和 5-HIAA。相比之下,PTD 全局降低了 Tyr,但仅在某些大脑区域降低了 HVA。尽管 CMD 影响 5-HT 和 DA 的合成,但与单独的 ATD 或 PTD 相比,其效果较差。目前的结果表明,两种新开发的 PTD 和 CMD 配方相对于 5-HT 特异性 ATD Moja-De 对大脑 5-HT 和 DA 合成产生不同的影响。这些混合物对 5-HT 和 DA 功能的不同影响表明,确切的组成可能是对施用的挑战程序的有效性的关键决定因素。

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