Sipilä Sampsa T, Schuchmann Sebastian, Voipio Juha, Yamada Junko, Kaila Kai
Department of Biological and Environmental Sciences, University of Helsinki, FIN-00014 Helsinki, Finland.
J Physiol. 2006 Jun 15;573(Pt 3):765-73. doi: 10.1113/jphysiol.2006.107086. Epub 2006 Apr 27.
Earlier studies indicate a crucial role for the interconnected network of intrinsically bursting CA3 pyramidal neurons in the generation of in vivo hippocampal sharp waves (SPWs) and their proposed neonatal in vitro counterparts, the giant depolarizing potentials (GDPs). While mechanisms involving ligand- and voltage-gated channels have received lots of attention in the generation of CA3 network events in the immature hippocampus, the contribution of ion-transport mechanisms has not been extensively studied. Here, we show that bumetanide, a selective inhibitor of neuronal Cl- uptake mediated by the Na+-K+-2Cl- cotransporter isoform 1 (NKCC1), completely and reversibly blocks SPWs in the neonate (postnatal days 7-9) rat hippocampus in vivo, an action also seen on GDPs in slices (postnatal days 1-8). These findings strengthen the view that GDPs and early SPWs are homologous events. Gramicidin-perforated patch recordings indicated that NKCC1 accounts for a large ( approximately 10 mV) depolarizing driving force for the GABAA current in the immature CA3 pyramids. Consistent with a reduction in the depolarization mediated by endogenous GABAA-receptor activation, bumetanide inhibited the spontaneous bursts of individual neonatal CA3 pyramids, but it slightly increased the interneuronal activity as seen in the frequency of spontaneous GABAergic currents. An inhibitory effect of bumetanide was seen on the in vitro population events in the absence of synaptic GABAA receptor-mediated transmission, provided that a tonic GABAA receptor-mediated current was present. Our work indicates that NKCC1 expressed in CA3 pyramidal neurons promotes network activity in the developing hippocampus.
早期研究表明,内在爆发性CA3锥体神经元的相互连接网络在体内海马尖波(SPW)及其假定的新生体外对应物——巨大去极化电位(GDP)的产生中起关键作用。虽然涉及配体门控通道和电压门控通道的机制在未成熟海马体CA3网络事件的产生中受到了大量关注,但离子转运机制的贡献尚未得到广泛研究。在这里,我们表明,布美他尼是一种由钠钾氯共转运体同工型1(NKCC1)介导的神经元氯摄取的选择性抑制剂,它能完全且可逆地阻断新生(出生后7 - 9天)大鼠海马体在体内的SPW,这种作用在切片(出生后1 - 8天)的GDP中也可见到。这些发现强化了GDP和早期SPW是同源事件的观点。短杆菌肽穿孔膜片钳记录表明,NKCC1在未成熟CA3锥体中对GABAA电流构成了一个大的(约10 mV)去极化驱动力。与内源性GABAA受体激活介导的去极化减少一致,布美他尼抑制了单个新生CA3锥体的自发爆发,但如自发GABA能电流频率所示,它略微增加了中间神经元的活动。在没有突触GABAA受体介导的传递但存在强直GABAA受体介导电流的情况下,布美他尼对体外群体事件有抑制作用。我们的工作表明,CA3锥体神经元中表达的NKCC1促进了发育中海马体的网络活动。