阿片受体激动剂激活小鼠边缘下前额叶皮层细小蛋白阳性中间神经元PI3K-mTORC1信号,发挥急性抗抑郁作用

IF 9.6 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Toshinori Yoshioka, Daisuke Yamada, Akari Hagiwara, Keita Kajino, Keita Iio, Tsuyoshi Saitoh, Hiroshi Nagase, Akiyoshi Saitoh
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引用次数: 0

摘要

delta阿片受体(DOP)是一种很有希望的新型抗抑郁药靶点,因为它具有快速作用和最小的不良反应的潜力;然而,急性抗抑郁作用的功能机制仍然难以捉摸。我们报道,皮下注射选择性DOP激动剂KNT-127减少了强迫游泳试验中的不动,并且这种抗抑郁样反应被脑室内注射雷帕霉素(mTOR)抑制剂雷帕霉素或磷脂酰肌醇-3激酶(PI3K)抑制剂LY294002的选择性机制(或哺乳动物)靶点逆转。在慢性替代性社会失败应激模型小鼠中,KNT-127还能缓解社交回避和减少蔗糖消耗(快感缺乏),类似地,PI3K和mTOR抑制剂也能逆转这种情况。此外,免疫印迹显示,KNT-127增加内侧前额叶皮层mTOR信号相关蛋白Akt和p70S6激酶的磷酸化水平。在强迫游泳试验中,在边缘下前额叶皮层(IL-PFC)微量注射KNT-127和另一种DOP激动剂SNC80,可以减轻雷帕霉素和LY294002阻断的不动。在IL-PFC切片上灌注KNT-127后,锥体神经元的兴奋性突触后电流频率增加,抑制性突触后电流频率降低,这两种反应被雷帕霉素逆转。DOPs启动子驱动的绿色荧光蛋白转基因小鼠的脑切片成像显示,大多数DOPs在IL-PFC的小白蛋白阳性中间神经元中表达。这些发现表明,DOP激动剂通过PI3K-Akt-mTORC1-p70S6激酶途径抑制小白蛋白阳性中间神经元的GABA释放,从而增强IL-PFC锥体神经元的兴奋,从而发挥抗抑郁样作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Delta opioid receptor agonists activate PI3K–mTORC1 signaling in parvalbumin-positive interneurons in mouse infralimbic prefrontal cortex to exert acute antidepressant-lie effects

Delta opioid receptor agonists activate PI3K–mTORC1 signaling in parvalbumin-positive interneurons in mouse infralimbic prefrontal cortex to exert acute antidepressant-lie effects

The delta opioid receptor (DOP) is a promising target for novel antidepressants due to its potential for rapid action with minimal adverse effects; however, the functional mechanism underlying acute antidepressant actions remains elusive. We report that subcutaneous injection of the selective DOP agonist KNT-127 reduced immobility in the forced swimming test, and that this antidepressant-like response was reversed by intracerebroventricular injection of the selective mechanistic (or mammalian) target of rapamycin (mTOR) inhibitor rapamycin or the phosphatidylinositol-3 kinase (PI3K) inhibitor LY294002. KNT-127 also alleviated social avoidance and reduced sucrose consumption (anhedonia) among chronic vicarious social defeat stress model mice, which were similarly reversed by PI3K and mTOR inhibitors. In addition, KNT-127 increased phosphorylation levels of the mTOR signaling-related proteins Akt and p70S6 kinase in medial prefrontal cortex as revealed by immunoblotting. In the forced swimming test, a microinfusion of KNT-127 and another DOP agonist SNC80 in the infralimbic prefrontal cortex (IL-PFC) attenuated the immobility, which were blocked by rapamycin and LY294002. Perfusion of KNT-127 onto IL-PFC slices increased miniature excitatory postsynaptic current frequency and reduced miniature inhibitory postsynaptic current frequency in pyramidal neurons as measured by whole-cell patch-clamping, and both responses were reversed by rapamycin. Imaging of brain slices from transgenic mice with DOP-promoter-driven green fluorescent protein revealed that most DOPs were expressed in parvalbumin-positive interneurons in the IL-PFC. These findings suggest that DOP agonists exert antidepressant-like actions by suppressing GABA release from parvalbumin-positive interneurons via the PI3K–Akt–mTORC1–p70S6 kinase pathway, thereby enhancing IL-PFC pyramidal neuron excitation.

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来源期刊
Molecular Psychiatry
Molecular Psychiatry 医学-精神病学
CiteScore
20.50
自引率
4.50%
发文量
459
审稿时长
4-8 weeks
期刊介绍: Molecular Psychiatry focuses on publishing research that aims to uncover the biological mechanisms behind psychiatric disorders and their treatment. The journal emphasizes studies that bridge pre-clinical and clinical research, covering cellular, molecular, integrative, clinical, imaging, and psychopharmacology levels.
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