Bender Roland A, Galindo Rafael, Mameli Manuel, Gonzalez-Vega Rebeca, Valenzuela C Fernando, Baram Tallie Z
Departments Pediatrics, Anatomy & Neurobiology, University of California, Irvine, CA 92697-4475, USA.
Eur J Neurosci. 2005 Nov;22(10):2669-74. doi: 10.1111/j.1460-9568.2005.04407.x.
The principal form of synchronized network activity in neonatal hippocampus consists of low frequency 'giant depolarizing potentials' (GDPs). Whereas contribution of both GABA and glutamate to their generation has been demonstrated, full understanding of the mechanisms underlying these synchronized activity bursts remains incomplete. A contribution of the h-current, conducted by HCN channels, to GDPs has been a topic of substantial interest. Here we focus on HCN1, the prevalent HCN channel isoform in neonatal hippocampus, and demonstrate an HCN1 spatiotemporal expression pattern in both CA3 principal cells and interneurons that correlates with the developmental profile of GDPs. Abrogation of HCN physiological function in CA3, via the selective I(h)-blocker ZD7288, disrupts GDP generation. Furthermore, ZD7288 specifically abolishes spontaneous bursting of the CA3 pyramidal cells at frequencies typical of GDPs without major influence on interneuronal firing. These findings support a pivotal role for HCN channels expressed by CA3 neurons, and particularly CA3 pyramidal cells, in GDP-related network synchronization.
新生海马体中同步网络活动的主要形式由低频“巨大去极化电位”(GDPs)组成。虽然已证实GABA和谷氨酸对其产生均有作用,但对这些同步活动爆发背后机制的全面理解仍不完整。由HCN通道传导的h电流对GDPs的作用一直是一个备受关注的话题。在此,我们聚焦于HCN1,这是新生海马体中普遍存在的HCN通道亚型,并证明了HCN1在CA3主细胞和中间神经元中的时空表达模式与GDPs的发育情况相关。通过选择性I(h)阻滞剂ZD7288消除CA3中的HCN生理功能,会破坏GDP的产生。此外,ZD7288能特异性消除CA3锥体细胞在典型GDP频率下的自发放电,而对中间神经元的放电影响不大。这些发现支持了CA3神经元尤其是CA3锥体细胞所表达的HCN通道在与GDP相关的网络同步中起关键作用。