Espinosa Nelson, Alonso Alejandra, Caneo Mauricio, Moran Constanza, Fuentealba Pablo
Departamento de Psiquiatria, Centro Interdisciplinario de Neurociencia, Facultad de Medicina, Pontifica Universidad Católica de Chile, Santiago 8331150, Chile.
Brain Sci. 2022 Dec 20;13(1):1. doi: 10.3390/brainsci13010001.
The septal complex regulates both motivated and innate behaviors, chiefly by the action of its diverse population of long-range projection neurons. A small population of somatostatin-expressing GABAergic cells in the lateral septum projects deep into subcortical regions, yet on its way it also targets neighboring medial septum neurons that profusely innervate cortical targets by ascending synaptic pathways. Here, we used optogenetic stimulation and extracellular recordings in acutely anesthetized transgenic mice to show that lateral septum somatostatin neurons can disinhibit the cholinergic septo-hippocampal pathway, thus enhancing the amplitude and synchrony of theta oscillations while depressing sharp-wave ripple episodes in the dorsal hippocampus. These results suggest that septal somatostatin cells can recruit ascending cholinergic pathways to promote hippocampal theta oscillations.
隔区复合体主要通过其多种长程投射神经元的作用来调节动机行为和先天行为。外侧隔区中一小部分表达生长抑素的γ-氨基丁酸能细胞向皮质下区域深处投射,但其投射途中也靶向邻近的内侧隔区神经元,这些内侧隔区神经元通过上行突触通路大量支配皮质靶点。在此,我们在急性麻醉的转基因小鼠中利用光遗传学刺激和细胞外记录表明,外侧隔区生长抑素神经元可解除对胆碱能隔区-海马通路的抑制,从而增强θ振荡的幅度和同步性,同时抑制背侧海马中的尖波涟漪事件。这些结果表明,隔区生长抑素细胞可募集上行胆碱能通路来促进海马θ振荡。