首页> 外文期刊>Psychoneuroendocrinology: An International Journal >Antidepressant-like behavioral effects of impaired cannabinoid receptor type 1 signaling coincide with exaggerated corticosterone secretion in mice.
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Antidepressant-like behavioral effects of impaired cannabinoid receptor type 1 signaling coincide with exaggerated corticosterone secretion in mice.

机译:受损的1类大麻素受体信号传导的抗抑郁样行为效应与小鼠皮质酮分泌过多有关。

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Hypothalamic-pituitary-adrenocortical (HPA) axis hyperactivity is associated with major depressive disorders, and treatment with classical antidepressants ameliorates not only psychopathological symptoms, but also the dysregulation of the HPA axis. Here, we further elucidated the role of impaired cannabinoid type 1 receptor (CB1) signaling for neuroendocrine and behavioral stress coping in the mouse forced swim test (FST). We demonstrate that the genetic inactivation of CB1 is accompanied by increased plasma corticosterone levels both under basal conditions and at different time points following exposure to the FST. The latter effect could be mimicked in C57BL/6N mice by acute, subchronic, and chronic administration of the selective CB1 antagonist SR141716. Further experiments confirmed the specificity of corticosterone-elevating SR141716 actions for CB1 in CB1-deficient mice. Subchronic and chronic pharmacological blockade of CB1, but not its genetic deletion, induced antidepressant-like behavioral responses in the FST that were characterized by decreased floating and/or increased struggling behavior. The antidepressant-like behavioral effects of acute desipramine treatment in the FST were absent in CB1-deficient mice, but the dampening effects of desipramine on FST stress-induced corticosterone secretion were not compromised by CB1 deficiency. However, antidepressant-like behavioral desipramine effects were intact in C57BL/6N mice pre-treated with SR141716, indicating potential developmental deficits in CB1-deficient mice. We conclude that pharmacological blockade of CB1 signaling shares antidepressant-like behavioral effects with desipramine, but reveals opposite effects on HPA axis activity.
机译:下丘脑-垂体-肾上腺皮质激素(HPA)轴亢进与主要的抑郁症有关,用经典抗抑郁药治疗不仅可以缓解心理病理症状,而且还可以改善HPA轴失调。在这里,我们进一步阐明了受损的大麻素1型受体(CB1)信号传导在小鼠强迫游泳试验(FST)中对神经内分泌和行为应激的作用。我们证明,在基础条件下以及暴露于FST后的不同时间点,CB1的遗传失活伴随着血浆皮质酮水平的升高。通过急性,亚慢性和慢性施用选择性CB1拮抗剂SR141716,可以在C57BL / 6N小鼠中模仿后者的作用。进一步的实验证实,在缺乏CB1的小鼠中,皮质酮升高的SR141716作用对于CB1的特异性。 CB1的亚慢性和慢性药理学阻滞(但不是其基因缺失)在FST中引起抗抑郁样行为反应,其特征是漂浮减少和/或挣扎行为增加。在CB1缺乏的小鼠中,缺乏在FST中急性地昔帕明治疗的抗抑郁样行为作用,但CB1缺乏并未损害地昔帕明对FST应激诱导的皮质酮分泌的抑制作用。但是,在用SR141716预处理的C57BL / 6N小鼠中,抗抑郁药样行为地昔帕明的作用完好无损,表明在CB1缺陷型小鼠中潜在的发育缺陷。我们得出的结论是,CB1信号的药理阻断作用与地昔帕明具有抗抑郁样的行为作用,但揭示了对HPA轴活性的相反作用。

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