A cell type-specific mechanism driving the rapid antidepressant effects of transcranial magnetic stimulation.

经颅磁刺激快速抗抑郁作用的细胞类型特异性机制

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作者:Gongwer Michael W, Qi Alex, Enos Alexander S, Rueda Sophia A, Klune Cassandra B, Shari Meelan, Kashay Adrienne Q, Williams Owen H, Hacking Aliza, Riley Jack P, Wilke Gary A, Yang Yihong, Lu Hanbing, Leuchter Andrew F, DeNardo Laura A, Wilke Scott A
Repetitive transcranial magnetic stimulation (rTMS) is an emerging treatment for brain disorders, but its therapeutic mechanism is unknown. We developed a novel mouse model of rTMS with superior clinical face validity and investigated the neural mechanism by which accelerated intermittent theta burst stimulation (aiTBS) - the first rapid-acting rTMS antidepressant protocol - reversed chronic stress-induced behavioral deficits. Using fiber photometry, we showed that aiTBS drives distinct patterns of neural activity in intratelencephalic (IT) and pyramidal tract (PT) projecting neurons in dorsomedial prefrontal cortex (dmPFC). However, only IT neurons exhibited persistently increased activity during both aiTBS and subsequent depression-related behaviors. Similarly, aiTBS reversed stress-related loss of dendritic spines on IT, but not PT neurons, further demonstrating cell type-specific effects of stimulation. Finally, chemogenetic inhibition of dmPFC IT neurons during rTMS blocked the antidepressant-like behavioral effects of aiTBS. Thus, we demonstrate a prefrontal mechanism linking rapid aiTBS-driven therapeutic effects to cell type-specific circuit plasticity.

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