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首页> 外文期刊>Biotechnic and Histochemistry >Appearance and differentiation of NADPH-d-positive neurons in rat prefrontal cortex following exposure to retinoic acid
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Appearance and differentiation of NADPH-d-positive neurons in rat prefrontal cortex following exposure to retinoic acid

机译:在接触视黄酸后大鼠前额叶皮质中NADPH-D阳性神经元的外观和分化

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摘要

Retinoic acid (RA) is a biologically active form of vitamin A. Teratogenicity has been observed in pregnant mammals exposed to high doses of vitamin A. We investigated the distribution of nitrergic neurons in rat prefrontal cortex (PFC) at developmental stages 7 days to young adulthood under physiological conditions and after prenatal application of all trans-RA. The neurons were studied histochemically using NADPH-diaphorase, which stains neurons dark blue. We found that nitrergic neurons differentiate rapidly and reach structural maturity by the end of the second week of postnatal development. We found that the processes of the neurons of nitrergic neurons of 14-day-old rats in the RA group were shorter than those of the control group. Our findings suggest that excess RA during the prenatal period may influence the development and morphology of NADPH-diaphorase positive neurons, probably by RA-specific receptors in the PFC of 14-day-old rats. RA receptors may be the main effector molecules responsible for the changes of dendrite length induced by all-trans RA. During later development, changes are not observed, probably due to maturation of the nervous system.
机译:视黄酸(Ra)是一种生物活性的维生素A形式。在暴露于高剂量维生素A的孕妇哺乳动物中观察到致畸性。我们研究了7天的大鼠前额叶皮质(PFC)中氮原神经元的分布7天至年轻所有Trans-RA的生理条件和产前应用后的成年。使用NADPH-透典酶组织化学研究了神经元,染色神经元深蓝色。我们发现氮神经元迅速区分,在产后后期发育的第二周结束时迅速区分并达到结构性成熟度。我们发现,RA组14天龄大鼠的硝态神经元的神经元的过程短于对照组。我们的研究结果表明,产前期间的过量RA可能影响NADPH-透明酶阳性神经元的发育和形态,可能是14天老鼠PFC中的RA特异性受体。 RA受体可以是负责All-Trans Ra诱导的树突长度变化的主要效应分子。在以后的发展中,未观察到更改,可能是由于神经系统的成熟。

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