Institute of Experimental Pharmacology and Toxicology, Slovak Academy of Sciences, Dubravska cesta 9, 841 04, Bratislava, Slovakia.
Department of Pharmacology, Jessenius Faculty of Medicine, Comenius University Bratislava, BioMED, Mala Hora 4C, 036 01, Martin, Slovakia.
Cell Mol Neurobiol. 2018 Jan;38(1):171-180. doi: 10.1007/s10571-017-0520-2. Epub 2017 Jul 10.
The impacts of three pyridoindole derivatives (PDs), designated as PD144, PD143, and PD104, which have previously been shown to have antidepressant (PD144) and anxiolytic (PD143, PD104) properties, were investigated on the Fos expressions in 11 different rat brain areas, including the medial prefrontal cortex, striatum, septum, accumbens nucleus (shell, core), bed nucleus of the stria terminalis, hypothalamic paraventricular nucleus, central amygdala, locus coeruleus, dorsal raphe nucleus, and the solitary tract nucleus. Control rats received vehicle, while the other three groups the PDs in a dose of 25 mg/kg/b.w. The animals were transcardially perfused with a fixative 90 min after the treatments. Coronal sections of 40-µm thickness were processed for Fos-immunostaining by avidin-biotin-peroxidase complex and visualized by nickel-intensified diaminobenzidine complex. Fos-labeled sections were counterstained with neuropeptides including corticoliberine (CRH), oxytocin (OXY), vasopressin (AVP), and vasoactive intestinal polypeptide (VIP) and processed for immunofluorescence staining using Alexa Fluor 555 dye. In all the three groups of animals, the upregulation of PDs-induced Fos expression only in 2 of 11 brain areas was investigated, namely, in the hypothalamic paraventricular nucleus (PVN) and the central amygdaloid nucleus (CeA). The other brain structures studied were devoid of Fos expression. Counterstaining of the Fos-labeled CeA-containing sections with VIP antibody revealed that the Fos expression stimulated by the PDs was upregulated in all the CeA subdivisions (lateral, ventral, capsular), except the medial one. Dual immunoprocessings showed Fos/CRH-labeling in both the PVN and the amygdala and Fos/OXY in the PVN. No Fos/AVP colocalizations were seen in the PVN. The obtained data provide the first view on the intracerebral effects of three new PDs derivatives, which effects were restricted only to the PVN and CeA areas. The present data may help to improve our understanding of the impact of the selected PDs on the brain and to anticipate possible behavioral and neuroendocrine consequences.
先前已证实三种吡啶并吲哚衍生物(PDs)具有抗抑郁(PD144)和抗焦虑(PD143、PD104)特性,本研究探讨了这三种 PDs(分别命名为 PD144、PD143 和 PD104)对 11 个不同大鼠脑区 Fos 表达的影响,这些脑区包括内侧前额叶皮层、纹状体、隔核、伏隔核(壳核、核)、终纹床核、下丘脑室旁核、中央杏仁核、蓝斑核、中缝背核和孤束核。对照组大鼠给予载体,而其余三组大鼠则给予 25mg/kg/b.w. 的 PDs。治疗 90 分钟后,通过心脏灌注固定剂。用抗生物素蛋白-生物素过氧化物酶复合物处理 40-µm 厚的冠状切片,并用镍增强二氨基联苯胺复合物进行 Fos 免疫染色。用神经肽包括皮质醇释放激素(CRH)、催产素(OXY)、血管加压素(AVP)和血管活性肠肽(VIP)对 Fos 标记的切片进行染色,并使用 Alexa Fluor 555 染料进行免疫荧光染色。在所有三组动物中,仅在 11 个脑区中的 2 个脑区(下丘脑室旁核和中央杏仁核)中研究了 PDs 诱导的 Fos 表达上调。其他研究的脑结构没有 Fos 表达。用 VIP 抗体对 Fos 标记的中央杏仁核包含的切片进行染色显示,PDs 刺激的 Fos 表达在上调在除内侧以外的所有中央杏仁核亚区(外侧、腹侧、胶囊)中。双重免疫处理显示,PVN 和杏仁核中有 Fos/CRH 标记,PVN 中有 Fos/OXY 标记。PVN 中未见 Fos/AVP 共定位。获得的数据首次提供了三种新的 PDs 衍生物在脑内作用的观点,其作用仅局限于 PVN 和 CeA 区域。目前的数据可能有助于我们更好地了解所选 PDs 对大脑的影响,并预测可能的行为和神经内分泌后果。