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大鼠视网膜中一氧化氮合酶样免疫反应性神经元的光镜和电镜分析

Light and electron microscopical analysis of nitric oxide synthase-like immunoreactive neurons in the rat retina.

作者信息

Chun M H, Oh S J, Kim I B, Kim K Y

机构信息

Department of Anatomy, Catholic University Medical College, Seoul, Korea.

出版信息

Vis Neurosci. 1999 Mar-Apr;16(2):379-89. doi: 10.1017/s0952523899162175.

Abstract

We have investigated the morphology of the NOS-like immunoreactive neurons and their synaptic connectivity in the rat retina by immunocytochemistry using antisera against nitric oxide synthase (NOS). In the present study, several types of amacrine cells were labeled with anti-NOS antisera. Type 1 cells had large somata located in the inner nuclear layer (INL) with long and sparsely branched processes ramifying mainly in stratum 3 of the inner plexiform layer (IPL). Somata of type 2 cells with smaller diameters were also located in the INL. Their fine processes branched mostly in stratum 3 of the IPL. A third population showing NOS-like immunoreactivity was a class of displaced amacrine cells in the ganglion cell layer (GCL). Their soma size was similar to that of the type 1 cells; however, their processes stratified mainly in strata 4 and 5 of the IPL. Labeled neurons were evenly distributed throughout the retina, and the mean densities were 57.0 +/- 9.7 cells/mm2 for the type 1 cells, 239.3 +/- 43.4 cells/mm2 for the type 2 cells and 121.2 +/- 27.5 cells/mm2 cells for the displaced amacrine cells. The synaptic connectivity of NOS-like immunoreactive amacrine cells was identified in the IPL by electron microscopy. NOS-labeled amacrine cell processes received synaptic input from other amacrine cell processes and bipolar cell axon terminals in all strata of the IPL. The most frequent postsynaptic targets of NOS-immunoreactive amacrine cells were other amacrine cell processes. Ganglion cell dendrites were also postsynaptic to NOS-like immunoreactive neurons in both sublaminae of the IPL. Synaptic outputs onto bipolar cells were observed in sublamina b of the IPL. In addition, a few synaptic contacts between labeled cell processes were observed. Our results suggest that NOS immunoreactive cells may be modulated by other amacrine cells and ON cone bipolar cells, and act preferentially on other amacrine cells.

摘要

我们使用抗一氧化氮合酶(NOS)抗血清,通过免疫细胞化学方法研究了大鼠视网膜中一氧化氮合酶样免疫反应性神经元的形态及其突触连接。在本研究中,几种类型的无长突细胞被抗 NOS 抗血清标记。1 型细胞具有位于内核层(INL)的大细胞体,其长而稀疏分支的突起主要在内网状层(IPL)的第 3 层分支。直径较小的 2 型细胞的细胞体也位于 INL。它们的细突起大多在 IPL 的第 3 层分支。第三类显示一氧化氮合酶样免疫反应性的细胞是神经节细胞层(GCL)中的一类移位无长突细胞。它们的细胞体大小与 1 型细胞相似;然而,它们的突起主要在内网状层的第 4 和第 5 层分层。标记的神经元均匀分布在整个视网膜中,1 型细胞的平均密度为 57.0±9.7 个细胞/mm²,2 型细胞为 239.3±43.4 个细胞/mm²,移位无长突细胞为 121.2±27.5 个细胞/mm²。通过电子显微镜在内网状层中鉴定了一氧化氮合酶样免疫反应性无长突细胞的突触连接。一氧化氮合酶标记的无长突细胞突起在 IPL 的所有层中接受来自其他无长突细胞突起和双极细胞轴突终末的突触输入。一氧化氮合酶免疫反应性无长突细胞最常见的突触后靶标是其他无长突细胞突起。神经节细胞树突在 IPL 的两个亚层中也是一氧化氮合酶样免疫反应性神经元的突触后靶标。在内网状层的 b 亚层中观察到向双极细胞的突触输出。此外,还观察到标记细胞突起之间的一些突触接触。我们的结果表明,一氧化氮合酶免疫反应性细胞可能受到其他无长突细胞和视锥双极细胞 ON 型细胞的调节,并优先作用于其他无长突细胞。

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