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首页> 外文期刊>Journal of Evolutionary Biochemistry and Physiology: A Journal of Original Papers and Reviews on Evolutionary, Comparative, and Ecological Aspects of Physiology, Biochemistry, and Morphology >Migration and Differentiation of Gonadotropin-Releasing Hormone-Producing Neurons in the Brain of Mouse Fetus Exposed to Excess of Serotonin
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Migration and Differentiation of Gonadotropin-Releasing Hormone-Producing Neurons in the Brain of Mouse Fetus Exposed to Excess of Serotonin

机译:血清素过量导致小鼠胎儿脑中促性腺激素释放激素产生神经元的迁移和分化

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The work has been carried out on mice of the Tg8 line with knockout of gene of monoam-ineoxidase A with an increase of serotonin and noradrenaline content in the brain, and on mice of the C3H line with unchanged genome and normal concentration of monoamines. An immunocy-tochemical study has been performed of development of neurons producing gonadotropin-releas-ing hormone (GnRH) under conditions of excess of serotonin and noradrenaline in the mice in embryogenesis. The GnRH-neurons were revealed at the 18th day of embryonic development in telencephalon along trajectory of their migration from olfactory bulbs to the retrochiasmatic area. In telencephalon of mouse embryos of the Tg8 line, a redistribution of the GnRH-neurons along their migration trajectory was observed as compared with embryos of the C3H line mice. The percent of the GnRH-neurons in the Tg8 mouse embryos in caudal parts of the migration trajectory was lower than in rostral parts, the opposite distribution of the neurons being observed in the C3H line mouse embryos; at the excess of serotonin and noradrenaline in the Tg8 line mouse embryos, the total amount of GnRH-neurons in the brain was lower than in the C3H mice. In males of the Tg8 line mice under conditions of excess of serotonin and noradrenaline the optical density of neurons, which correlated with the GnRH concentration in the cell, was higher than in control mice. Thus, in the Tg8 mice under conditions of the serotonin and noradrenaline excess, migration of the GnRH-neurons to their final anlage in hypothalamus is accelerated as well as the total number of the GnRH-neurons decreases, which indicates a decrease of proliferation of cells-precursors and the earlier differentiation of neurons.
机译:已经对Tg8系的小鼠进行了研究,该小鼠的单胺氧化酶A基因的敲除导致大脑中5-羟色胺和去甲肾上腺素含量的增加,而C3H系的小鼠则具有不变的基因组和正常的单胺浓度。在胚胎发生过程中,在血清素和去甲肾上腺素过量的条件下,已经进行了产生促性腺激素释放激素(GnRH)的神经元发育的免疫细胞化学研究。 GnRH神经元是在端脑中胚胎发育的第18天沿其从嗅球迁移到裂口后区域的轨迹显示的。在Tg8系小鼠胚胎的端脑中,与C3H系小鼠的胚胎相比,观察到了GnRH神经元沿其迁移轨迹的重新分布。在Tg8小鼠胚胎中,迁移轨迹尾部的GnRH-神经元百分比低于延髓部,在C3H系小鼠胚胎中观察到了相反的神经元分布。在Tg8系小鼠胚胎中5-羟色胺和去甲肾上腺素过量时,大脑中GnRH-神经元的总量低于C3H小鼠。在血清素和去甲肾上腺素过量的条件下,Tg8系雄性小鼠的神经元光密度与细胞中GnRH浓度相关,高于对照组。因此,在5-羟色胺和去甲肾上腺素过量的条件下的Tg8小鼠中,GnRH-神经元向下丘脑最终analage的迁移加速,并且GnRH-神经元的总数减少,这表明细胞增殖的减少前体和神经元的早期分化。

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