Department of Physiology, College of Basic Medical Science, Army Medical University, Chongqing, P.R. China.
Experimental Center of Basic Medicine, College of Basic Medical Science, Army Medical University, Chongqing, P.R. China.
PLoS One. 2019 Dec 31;14(12):e0227200. doi: 10.1371/journal.pone.0227200. eCollection 2019.
Schizophrenia (SZ) is a serious and incurable mental disorder characterized by clinical manifestations of positive and negative symptoms and cognitive dysfunction. High-frequency deep brain stimulation (DBS) of the ventral hippocampus (VHP) has been recently applied as a therapeutic approach for SZ in both experimental and clinical studies. However, little is known about the precise mechanism of VHP-DBS treatment for SZ and the role of hippocampal cell activation in the pathogenesis of SZ. With optogenetic technology in this study, we tried to inhibit neuronal activity in the VHP which has dense projections to the prefrontal cortex, before measuring long stumulus-induced delay eyeblink conditioning (long-dEBC) in a rodent model of SZ. Rats were administrated with phencyclidine (PCP, 3 mg/kg, 1/d, ip) for successive 7 days before optogenetic intervention. The current data show that PCP administration causes significant impairment in the acquisition and timing of long-dEBC; the inhibition of bilateral VHP neurons alleviates the decreased acquisition and impaired timing of longd-dEBC in PCP-administered rats. The results provide direct evidence at the cellular level that the inhibition of VHP neuronal cells may be a prominent effect of hippocampal DBS intervention, and increased activity in the hippocampal network play a pivotal role in SZ.
精神分裂症(SZ)是一种严重且无法治愈的精神障碍,其临床特征为阳性和阴性症状以及认知功能障碍。高频深部脑刺激(DBS)的腹侧海马(VHP)最近已被应用于 SZ 的实验和临床研究中作为一种治疗方法。然而,对于 VHP-DBS 治疗 SZ 的精确机制以及海马细胞激活在 SZ 发病机制中的作用知之甚少。在这项研究中,我们使用光遗传学技术,在 SZ 啮齿动物模型中测量长刺激诱导的延迟眨眼条件反射(long-dEBC)之前,尝试抑制 VHP 中的神经元活动,VHP 与前额叶皮层有密集的投射。在光遗传学干预之前,大鼠连续 7 天给予苯环利定(PCP,3mg/kg,1/d,ip)。目前的数据显示,PCP 给药导致长-dEBC 的获得和定时明显受损;双侧 VHP 神经元的抑制减轻了 PCP 给药大鼠长-dEBC 获得和定时受损。结果从细胞水平提供了直接证据,表明 VHP 神经元细胞的抑制可能是海马 DBS 干预的突出效果,并且海马网络中的活动增加在 SZ 中起着关键作用。