Branchereau P, Van Bockstaele E J, Chan J, Pickel V M
Department of Neurology and Neuroscience, Cornell University Medical College, New York, New York 10021, USA.
Microsc Res Tech. 1995 Apr 1;30(5):427-36. doi: 10.1002/jemt.1070300509.
Immunoperoxidase labeling of lucifer yellow provides a sensitive method for morphological characterization of neurons recorded intracellularly in vitro or in vivo. However, the reaction product is often so dense that it obscures ultrastructural details necessary for the analysis of synaptic contacts onto individually filled neurons. In the present study, we describe a silver intensification procedure using 1 nm gold labeling of lucifer yellow as an optimal means for immunocytochemically identifying single physiologically characterized neurons at the ultrastructural level. Single neurons in the frontal cortex of anesthetized rats were impaled in vivo and filled with lucifer yellow. The brains were then perfused with an acrolein fixative. Single vibratome sections through the recording site were reacted with a rabbit antibody directed against lucifer yellow followed by goat anti-rabbit 1 nm gold-labeled IgG and silver intensified. For comparison, additional sections were processed for immunoperoxidase detection of lucifer yellow. Labeled sections were processed for light microscopy or embedded in plastic for electron microscopy. The immunogold-silver label as well as peroxidase reaction product of lucifer yellow was readily detected in cell bodies, proximal and distal dendrites, and spines. However, in contrast to immunoperoxidase, the immunogold-silver reaction did not obscure subcellular organelles. Most importantly, the synaptic junctions formed by afferents to the filled neuron were more easily identifiable following the immunogold-silver procedure. This clear visualization of postsynaptic densities is essential for examining synaptic circuitry between afferents and physiologically characterized neurons.
用免疫过氧化物酶标记路西法黄,为体外或体内细胞内记录的神经元进行形态学表征提供了一种灵敏的方法。然而,反应产物往往过于密集,以至于掩盖了分析单个被标记神经元上突触联系所需的超微结构细节。在本研究中,我们描述了一种银增强程序,该程序使用1纳米金标记路西法黄,作为在超微结构水平上免疫细胞化学鉴定单个具有生理特征的神经元的最佳手段。在体内刺穿麻醉大鼠额叶皮质中的单个神经元,并用路西法黄填充。然后用丙烯醛固定剂灌注大脑。通过记录部位的单个振动切片与抗路西法黄的兔抗体反应,随后与山羊抗兔1纳米金标记的IgG反应并进行银增强。为了进行比较,对额外的切片进行路西法黄的免疫过氧化物酶检测。对标记的切片进行光学显微镜处理或包埋在塑料中用于电子显微镜观察。在细胞体、近端和远端树突以及棘中很容易检测到路西法黄的免疫金银标记以及过氧化物酶反应产物。然而,与免疫过氧化物酶不同,免疫金银反应没有掩盖亚细胞细胞器。最重要的是,在进行免疫金银程序后,填充神经元的传入神经形成的突触连接更容易识别。突触后致密物的这种清晰可视化对于检查传入神经与具有生理特征的神经元之间的突触回路至关重要。