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Serotonergic innervation and serotonin receptor expression of NPY-producing neurons in the rat lateral and basolateral amygdaloid nuclei.

机译:大鼠外侧和外侧杏仁核中产生NpY的神经元的5-羟色胺能神经支配和5-羟色胺受体的表达。

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摘要

Pharmacobehavioral studies in experimental animals, and imaging studies in humans, indicate that serotonergic transmission in the amygdala plays a key role in emotional processing, especially for anxiety-related stimuli. The lateral and basolateral amygdaloid nuclei receive a dense serotonergic innervation in all species studied to date. We investigated interrelations between serotonergic afferents and neuropeptide Y (NPY)-producing neurons, which are a subpopulation of inhibitory interneurons in the rat lateral and basolateral nuclei with particularly strong anxiolytic properties. Dual light microscopic immunolabeling showed numerous appositions of serotonergic afferents on NPY-immunoreactive somata. Using electron microscopy, direct membrane appositions and synaptic contacts between serotonin-containing axon terminals and NPY-immunoreactive cellular profiles were unequivocally established. Double in situ hybridization documented that more than 50 %, and about 30-40 % of NPY mRNA-producing neurons, co-expressed inhibitory 5-HT1A and excitatory 5-HT2C mRNA receptor subtype mRNA, respectively, in both nuclei with no gender differences. Triple in situ hybridization showed that individual NPY mRNA-producing interneurons co-express both 5-HT1A and 5-HT2C mRNAs. Co-expression of NPY and 5-HT3 mRNA was not observed. The results demonstrate that serotonergic afferents provide substantial innervation of NPY-producing neurons in the rat lateral and basolateral amygdaloid nuclei. Studies of serotonin receptor subtype co-expression indicate a differential impact of the serotonergic innervation on this small, but important, population of anxiolytic interneurons, and provide the basis for future studies of the circuitry underlying serotonergic modulation of emotional stimulus processing in the amygdala.
机译:在实验动物中进行的药物行为学研究以及对人体的影像学研究表明,杏仁核中的血清素能传递在情绪加工中起着关键作用,尤其是对于焦虑相关的刺激。迄今为止,在所有物种中,外侧和基底外侧杏仁核均接受密集的血清素能神经支配。我们调查了血清素能传入神经元和产生神经肽Y(NPY)的神经元之间的相互关系,神经元是在大鼠外侧和基底外侧核中抑制性中间神经元的一个亚群,具有特别强的抗焦虑特性。双光镜免疫标记显示在NPY免疫反应性躯体上有许多血清素能传入分子。使用电子显微镜,明确地确定了含5-羟色胺的轴突末端与NPY免疫反应性细胞分布之间的直接膜并置和突触接触。双原位杂交表明,两个核中分别有超过50%和约30-40%的产生NPY mRNA的神经元共表达抑制性5-HT1A和兴奋性5-HT2C mRNA受体亚型mRNA,且没有性别差异。三重原位杂交显示单个产生NPY mRNA的中间神经元共表达5-HT1A和5-HT2C mRNA。没有观察到NPY和5-HT3 mRNA的共表达。结果表明,血清素能传入提供了大鼠外侧和基底外侧杏仁核中的产生NPY的神经元的神经支配。血清素受体亚型共表达的研究表明,5-羟色胺神经支配对这个小的但重要的抗焦虑中枢神经元有不同的影响,并为杏仁核中情绪刺激过程的5-羟色胺神经调控的潜在电路提供了基础。

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