Boehlen Anne, Kunert Alexandra, Heinemann Uwe
Institute of Neurophysiology, Johannes Müller-Center of Physiology, Charité-Universitätsmedizin Berlin, Tucholskystrasse 2, 10117 Berlin, Germany.
Brain Res. 2009 Oct 27;1295:44-58. doi: 10.1016/j.brainres.2009.08.031. Epub 2009 Aug 20.
Ion currents such as M-currents (I(M)), persistent sodium currents (I(NaP)) and H-currents (I(h)) have been observed in a variety of brain regions, including the hippocampal formation, where storage and retrieval of information are facilitated by oscillatory network activities. They have been suggested to play an important role in neuronal excitability, synaptic transmission, membrane oscillatory activity, and in shaping resonance. Resonance and membrane potential oscillations have been implied in the generation of theta but not gamma oscillations. Here, we performed extracellular field potential recordings in hippocampal slices from adult rats and applied either the I(M) blocker XE991, the I(M) activator retigabine, the I(NaP) blocker losigamone or the I(h) inhibitor ZD7288 to test if these currents contribute to the generation of network oscillations. Kainate application induced network theta-like frequency oscillations in coronal slices as well as network gamma frequency oscillations in horizontal slices, and these remained stable for up to 3h. Power spectrum analysis revealed that all agents dose-dependently reduced the network oscillations in both frequency bands in areas CA3 and CA1. In contrast, the peak oscillation frequency was affected differentially. These results confirm that theta-like frequency oscillations are induced in longitudinal slices while gamma frequency oscillations dominate in horizontal slices. They also suggest that modifying neuronal excitability and transmitter release alters hippocampal network oscillations which are thought to be crucial for memory processing.
诸如M电流(I(M))、持续性钠电流(I(NaP))和H电流(I(h))等离子电流已在包括海马结构在内的多种脑区中被观察到,在海马结构中,振荡网络活动有助于信息的存储和检索。它们被认为在神经元兴奋性、突触传递、膜振荡活动以及形成共振方面发挥着重要作用。共振和膜电位振荡被认为与θ波而非γ波振荡的产生有关。在此,我们对成年大鼠的海马切片进行了细胞外场电位记录,并应用I(M)阻断剂XE991、I(M)激活剂瑞替加滨、I(NaP)阻断剂洛西加莫或I(h)抑制剂ZD7288,以测试这些电流是否有助于网络振荡的产生。应用 kainate可在冠状切片中诱导网络θ样频率振荡,并在水平切片中诱导网络γ频率振荡,且这些振荡在长达3小时内保持稳定。功率谱分析显示,所有药物均剂量依赖性地降低了CA3区和CA1区两个频段的网络振荡。相比之下,峰值振荡频率受到的影响有所不同。这些结果证实,纵向切片中诱导出θ样频率振荡,而水平切片中γ频率振荡占主导。它们还表明,改变神经元兴奋性和递质释放会改变海马网络振荡,而海马网络振荡被认为对记忆处理至关重要。