氯胺酮
抗抑郁药
神经科学
药理学
海马体
心理学
医学
作者
Juan Pablo López,Malte Lücken,Elena Brivio,Stoyo Karamihalev,Aron Kos,Carlo De Donno,Asaf Benjamin,Huanqing Yang,A. Dick,Rainer Stoffel,Cornelia Flachskamm,Andrea Ressle,Simone Roeh,Rosa-Eva Huettl,Andrea Parl,Carola Eggert,Božidar Novak,Yu Yan,Karin Yeoh,Maria Holzapfel
出处
期刊:Neuron
[Elsevier]
日期:2022-05-31
卷期号:110 (14): 2283-2298.e9
被引量:74
标识
DOI:10.1016/j.neuron.2022.05.001
摘要
A single sub-anesthetic dose of ketamine produces a rapid and sustained antidepressant response, yet the molecular mechanisms responsible for this remain unclear. Here, we identified cell-type-specific transcriptional signatures associated with a sustained ketamine response in mice. Most interestingly, we identified the Kcnq2 gene as an important downstream regulator of ketamine action in glutamatergic neurons of the ventral hippocampus. We validated these findings through a series of complementary molecular, electrophysiological, cellular, pharmacological, behavioral, and functional experiments. We demonstrated that adjunctive treatment with retigabine, a KCNQ activator, augments ketamine’s antidepressant-like effects in mice. Intriguingly, these effects are ketamine specific, as they do not modulate a response to classical antidepressants, such as escitalopram. These findings significantly advance our understanding of the mechanisms underlying the sustained antidepressant effects of ketamine, with important clinical implications.
科研通智能强力驱动
Strongly Powered by AbleSci AI