Departments of Psychology and.
Molecular Biology and Princeton Neuroscience Institute, Princeton University, Princeton, New Jersey 08544.
J Neurosci. 2014 Nov 19;34(47):15679-88. doi: 10.1523/JNEUROSCI.3234-13.2014.
Anxiety disorders are highly prevalent but little is known about their underlying mechanisms. Gap junctions exist in brain regions important for anxiety regulation, such as the ventral hippocampus (vHIP) and mPFC, but their functions in these areas have not been investigated. Using pharmacological blockade of neuronal gap junctions combined with electrophysiological recordings, we found that gap junctions play a role in theta rhythm in the vHIP and mPFC of adult mice. Bilateral infusion of neuronal gap junction blockers into the vHIP decreased anxiety-like behavior on the elevated plus maze and open field. Similar anxiolytic effects were observed with unilateral infusion of these drugs into the vHIP combined with contralateral infusion into the mPFC. No change in anxious behavior was observed with gap junction blockade in the unilateral vHIP alone or in the bilateral dorsal HIP. Since physical exercise is known to reduce anxiety, we examined the effects of long-term running on the expression of the neuronal gap junction protein connexin-36 among inhibitory interneurons and found a reduction in the vHIP. Despite this change, we observed no alteration in theta frequency or power in long-term runners. Collectively, these findings suggest that neuronal gap junctions in the vHIP-mPFC pathway are important for theta rhythm and anxiety regulation under sedentary conditions but that additional mechanisms are likely involved in running-induced reduction in anxiety.
焦虑症的患病率很高,但人们对其潜在机制知之甚少。缝隙连接存在于与焦虑调节有关的脑区,如腹侧海马体(vHIP)和 mPFC,但它们在这些区域的功能尚未得到研究。我们使用神经元缝隙连接阻断剂联合电生理记录,发现缝隙连接在成年小鼠 vHIP 和 mPFC 的θ节律中起作用。双侧 vHIP 内注射神经元缝隙连接阻断剂可降低高架十字迷宫和旷场中的焦虑样行为。在 vHIP 单侧注射这些药物并在 mPFC 对侧注射时,观察到类似的抗焦虑作用。在 vHIP 单侧或双侧背侧 HIP 内进行缝隙连接阻断时,焦虑行为无变化。由于运动已知可减轻焦虑,我们检查了长期跑步对抑制性中间神经元中神经元缝隙连接蛋白连接蛋白-36 表达的影响,发现 vHIP 减少。尽管有这种变化,但我们在长期跑步者中没有观察到θ频率或功率的改变。综上所述,这些发现表明,vHIP-mPFC 通路中的神经元缝隙连接对于静息状态下的θ节律和焦虑调节很重要,但在跑步引起的焦虑减轻中可能涉及其他机制。