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Mice Lacking NMDA Receptors in Parvalbumin Neurons Display Normal Depression-Related Behavior and Response to Antidepressant Action of NMDAR Antagonists

机译:小白蛋白神经元中缺乏NMDA受体的小鼠显示正常抑郁相关的行为和对NMDAR拮抗剂的抗抑郁作用的反应。

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摘要

The underlying circuit imbalance in major depression remains unknown and current therapies remain inadequate for a large group of patients. Discovery of the rapid antidepressant effects of ketamine - an NMDA receptor (NMDAR) antagonist – has linked the glutamatergic system to depression. Interestingly, dysfunction in the inhibitory GABAergic system has also been proposed to underlie depression and deficits linked to GABAergic neurons have been found with human imaging and in post-mortem material from depressed patients. Parvalbumin-expressing (PV) GABAergic interneurons regulate local circuit function through perisomatic inhibition and their activity is NMDAR-dependent, providing a possible link between NMDAR and the inhibitory system in the antidepressant effect of ketamine. We have therefore investigated the role of the NMDAR-dependent activity of PV interneurons for the development of depression-like behavior as well as for the response to rapid antidepressant effects of NMDAR antagonists. We used mutant mice lacking NMDA neurotransmission specifically in PV neurons (PV-Cre+/NR1f/f) and analyzed depression-like behavior and anhedonia. To study the acute and sustained effects of a single NMDAR antagonist administration, we established a behavioral paradigm of repeated exposure to forced swimming test (FST). We did not observe altered behavioral responses in the repeated FST or in a sucrose preference test in mutant mice. In addition, the behavioral response to administration of NMDAR antagonists was not significantly altered in mutant PV-Cre+/NR1f/f mice. Our results show that NMDA-dependent neurotransmission in PV neurons is not necessary to regulate depression-like behaviors, and in addition that NMDARs on PV neurons are not a direct target for the NMDAR-induced antidepressant effects of ketamine and MK801.
机译:重度抑郁症的潜在回路失衡仍是未知的,并且目前的治疗方法仍不适用于大量患者。氯胺酮(一种NMDA受体(NMDAR)拮抗剂)的快速抗抑郁作用的发现,将谷氨酸能系统与抑郁症联系起来。有趣的是,也有人提出抑制性GABA能系统的功能障碍是抑郁症的基础,并且通过人体成像和抑郁患者的验尸资料发现了与GABA能神经元有关的缺陷。表达小白蛋白(PV)的GABA能神经元通过介导抑制来调节局部电路功能,它们的活性是NMDAR依赖性的,为NMDAR和氯胺酮的抗抑郁作用抑制系统之间提供了可能的联系。因此,我们研究了PV中间神经元依赖NMDAR的活性对抑郁样行为的发展以及NMDAR拮抗剂对快速抗抑郁作用的反应的作用。我们使用了缺乏NMDA神经传递的突变小鼠,特别是在PV神经元(PV-Cre + / NR1f / f)中,分析了抑郁样行为和快感不足。为了研究单次NMDAR拮抗剂给药的急性和持续作用,我们建立了重复暴露于强迫游泳试验(FST)的行为范例。我们没有观察到突变的小鼠在重复的FST或蔗糖偏爱测试中行为反应的改变。此外,突变PV-Cre + / NR1f / f小鼠对NMDAR拮抗剂给药的行为反应没有明显改变。我们的结果表明,PV神经元中依赖于NMDA的神经传递对调节抑郁样行为不是必需的,此外,PVDAR神经元上的NMDAR并不是NMDAR诱导的氯胺酮和MK801抗抑郁作用的直接目标。

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