Kunkel D D, Lacaille J C, Schwartzkroin P A
Department of Neurological Surgery, University of Washington, Seattle 98195.
Synapse. 1988;2(4):382-94. doi: 10.1002/syn.890020405.
Intracellular recordings were obtained from nonpyramidal neurons (interneurons) in stratum lacunosum-moleculare (L-M) of the CA1 region of guinea pig hippocampal slices. These interneurons had response characteristics that distinguish them from pyramidal cells and other interneuron types: the L-M neurons had relatively broad action potentials with large spike afterhyperpolarizations, high input resistance and little spike-firing adaptation, and low spontaneous activity. Lucifer Yellow (LY) and horseradish peroxidase (HRP) were injected intracellularly into physiologically identified L-M interneurons, and the cells were characterized morphologically using light and electron microscopy. L-M somata were fusiform-shaped (15 x 25 micron), had multiple processes, and were located at the border between stratum (str.) lacunosum-moleculare and str. radiatum. L-M dendrites coursed through str. lacunosum-moleculare and projected into str. radiatum. L-M axons made axodendritic synaptic contacts primarily in str. lacunosum-moleculare and str. radiatum, but also in str. moleculare of the dentate gyrus. These axodendritic synaptic contacts were made onto spiny dendritic processes (presumably pyramidal cell and granule cell dendrites) and onto aspinous dendrites (presumably interneuron dendrites), and appeared to be of the symmetric type (type 2), characteristic of inhibitory synapses. In separate groups of animals, selective lesions were made of afferents to the CA1 and dentate regions of hippocampus, and subsequent degeneration of contacts and L-M interneuron somata and dendrites was examined at the ultrastructural level. Fibers originating from contralateral and ipsilateral CA3 region, and from ipsilateral entorhinal cortex, were found to make synaptic contact onto presumed L-M interneurons. Degenerating terminals appeared to be of the asymmetric type (type 1), characteristic of excitatory synapses. These morphological data are consistent with electrophysiological results showing that L-M interneurons can mediate feedforward inhibition of CA1 pyramidal cells.
从豚鼠海马切片CA1区腔隙-分子层(L-M)的非锥体神经元(中间神经元)进行细胞内记录。这些中间神经元具有将它们与锥体细胞和其他中间神经元类型区分开来的反应特性:L-M神经元具有相对较宽的动作电位,伴有大的锋后超极化,高输入电阻,几乎没有锋发放适应,且自发活动较低。将荧光黄(LY)和辣根过氧化物酶(HRP)细胞内注射到经生理鉴定的L-M中间神经元中,并使用光学显微镜和电子显微镜对细胞进行形态学表征。L-M胞体呈梭形(15×25微米),有多个突起,位于腔隙-分子层和辐射层之间的边界处。L-M树突穿过腔隙-分子层并投射到辐射层。L-M轴突主要在腔隙-分子层和辐射层形成轴-树突触联系,但也在齿状回的分子层形成联系。这些轴-树突触联系形成于有棘的树突过程(可能是锥体细胞和颗粒细胞的树突)和无棘的树突(可能是中间神经元的树突)上,并且似乎是对称型(2型),这是抑制性突触的特征。在单独的动物组中,对海马CA1区和齿状区的传入纤维进行选择性损伤,并在超微结构水平检查随后的突触联系以及L-M中间神经元胞体和树突的退变情况。发现源自对侧和同侧CA3区以及同侧内嗅皮质的纤维与假定的L-M中间神经元形成突触联系。退变的终末似乎是不对称型(1型),这是兴奋性突触的特征。这些形态学数据与电生理结果一致,表明L-M中间神经元可介导对CA1锥体细胞的前馈抑制。