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首页> 外文期刊>European neuropsychopharmacology: the journal of the European College of Neuropsychopharmacology >Behavioral and neurochemical characterization of Tr kappa B-dependent mechanisms of agomelatine in glucocorticoid receptor-impaired mice
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Behavioral and neurochemical characterization of Tr kappa B-dependent mechanisms of agomelatine in glucocorticoid receptor-impaired mice

机译:糖皮质激素受体受损小鼠中阿戈美拉汀的Tr Kappa B依赖性机制的行为和神经化学表征

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Growing evidence indicates that impairment of the stress response, in particular the negative feedback regulation mechanism exerted by the hypothalamo-pituitary-adrenal (HPA) axis, might be responsible for the hippocampal atrophy observed in depressed patients. Antidepressants, possibly through the activation of BDNF signaling, may enhance neuroplasticity and restore normal hippocampal functions. In this context, glucocorticoid receptor-impaired (GR-i) mice-a transgenic mouse model of reduced GR-induced negative feedback regulation of the HPA axis-were used to investigate the role of BDNF/TrkB signaling in the behavioral and neurochemical effects of the new generation antidepressant drug, agomelatine. GR-i mice exhibited marked alterations in depressive-like and anxiety-like behaviors, together with a decreased cell proliferation and altered levels of neuroplastic and epigenetic markers in the hippocampus. GR-i mice and their wild-type littermates were treated for 21 days with vehicle, agomelatine (50 mg/kg/day; i.p) or the TrkB inhibitor Ana-12 (0.5 mg/kg/day, i.p) alone, or in combination with agomelatine. Chronic treatment with agomelatine resulted in antidepressant like effects in GR-i mice and reversed the deficit in hippocampal cell proliferation and some of the alterations of mRNA plasticity markers in GR-i mice. Ana-12 blocked the effect of agomelatine on motor activity as well as its ability to restore a normal hippocampal cell proliferation and expression of neurotrophic factors. Altogether, our findings indicate that agomelatine requires TrkB signaling to reverse some of the molecular and behavioral alterations caused by HPA axis impairment. (C) 2015 Elsevier B.V. and ECNP. All rights reserved.
机译:越来越多的证据表明,应激反应的损害,特别是下丘脑-垂体-肾上腺(HPA)轴所产生的负反馈调节机制,可能与抑郁症患者的海马萎缩有关。抗抑郁药可能通过激活BDNF信号传导来增强神经可塑性并恢复正常的海马功能。在这种情况下,糖皮质激素受体受损(GR-i)小鼠(一种减少GR诱导的HPA轴负反馈调节的转基因小鼠模型)用于研究BDNF / TrkB信号传导在行为和神经化学作用中的作用。新一代抗抑郁药阿戈美拉汀。 GR-i小鼠表现出抑郁样和焦虑样行为的显着改变,以及海马中细胞增殖的减少以及神经塑性和表观遗传标记水平的改变。分别用溶媒,阿戈美拉汀(50 mg / kg /天; ip)或TrkB抑制剂Ana-12(0.5 mg / kg / day,ip)治疗GR-i小鼠及其野生型同窝动物21天,或与阿戈美拉汀合用。阿戈美拉汀的长期治疗在GR-i小鼠中产生了抗抑郁样作用,并逆转了GR-i小鼠海马细胞增殖缺陷和某些mRNA可塑性标记的改变。 Ana-12阻断了阿戈美拉汀对运动活动的影响,以及其恢复正常海马细胞增殖和神经营养因子表达的能力。总而言之,我们的发现表明阿戈美拉汀需要TrkB信号来逆转由HPA轴损伤引起的某些分子和行为改变。 (C)2015 Elsevier B.V.和ECNP。版权所有。

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