Kim In-Beom, Lee Eun-Jin, Kang Tae-Hoon, Chung Jin-Woong, Chun Myung-Hoon
Department of Anatomy, College of Medicine, The Catholic University of Korea, Seoul 137-701, Korea.
J Comp Neurol. 2003 Dec 15;467(3):389-402. doi: 10.1002/cne.10957.
Hyperpolarization-activated cation currents (I(h)) have been identified in neurons in the central nervous system, including the retina. There is growing evidence that these currents, mediated by the hyperpolarization-activated cyclic nucleotide-gated cation channel (HCN), may play important roles in visual processing in the retina. This study was conducted to identify and characterize HCN1-immunoreactive (IR) bipolar cells by immunocytochemistry, quantitative analysis, and electron microscopy. The HCN1-IR bipolar cells were a subtype of OFF-type cone bipolar cells and comprised 10% of the total number of cone bipolar cells. The axons of the HCN1-IR cone bipolar cells ramified narrowly in the border of strata 1 and 2 of the inner plexiform layer (IPL). These cells formed a regular distribution, with a density of 1,825 cells/mm(2) at a position 1 mm ventral to the visual streak, falling to 650 cells/mm(2) in the ventral periphery. Double-labeling experiments demonstrated that their axons stratified narrowly within and slightly proximal to the OFF-starburst amacrine cell processes. In the IPL, they were presynaptic to amacrine cell processes. The most frequent postsynaptic dyads formed of HCN1-IR bipolar cell axon terminals are pairs composed of both amacrine cell processes. These results suggest that these HCN1-IR cone bipolar cells might be the same as the DAPI-Ba1 bipolar population, and might therefore be involved in a direction-selective mechanism, providing inputs to the OFF-starburst amacrine cells and/or the OFF-plexus of the ON-OFF ganglion cells.
超极化激活阳离子电流(I(h))已在包括视网膜在内的中枢神经系统神经元中被识别出来。越来越多的证据表明,这些由超极化激活的环核苷酸门控阳离子通道(HCN)介导的电流可能在视网膜视觉处理中发挥重要作用。本研究通过免疫细胞化学、定量分析和电子显微镜来识别和表征HCN1免疫反应性(IR)双极细胞。HCN1-IR双极细胞是OFF型视锥双极细胞的一个亚型,占视锥双极细胞总数的10%。HCN1-IR视锥双极细胞的轴突在内网状层(IPL)第1层和第2层的边界处呈狭窄分支。这些细胞形成规则分布,在视条纹腹侧1毫米处的密度为1825个细胞/平方毫米,在腹侧周边降至650个细胞/平方毫米。双标记实验表明,它们的轴突在OFF-星爆无长突细胞突起内且略靠近突起处呈狭窄分层。在IPL中,它们是无长突细胞突起的突触前成分。由HCN1-IR双极细胞轴突终末形成的最常见突触后二联体是由两个无长突细胞突起组成的对。这些结果表明,这些HCN1-IR视锥双极细胞可能与DAPI-Ba1双极细胞群体相同,因此可能参与方向选择性机制,为OFF-星爆无长突细胞和/或ON-OFF神经节细胞的OFF丛提供输入。