Herkenham M, Pert C B
J Neurosci. 1982 Aug;2(8):1129-49. doi: 10.1523/JNEUROSCI.02-08-01129.1982.
A general technique is described for using slide-mounted unfixed tissue sections to characterize and visualize drug and neurotransmitter receptors in brain or other tissues. The preparation of material, from fresh frozen, unfixed brain to dried sections securely attached to slides, is described in detail. The tissue can be kept intact during incubation at varying temperatures in solutions containing radiolabeled ligand, ions, buffers, and allosteric effectors. Strategies are described for determining optimal stereospecific binding with highest signal-to-noise ratios and for determining that a "meaningful" receptor is being studied. Dry formaldehyde fixation by vapors from heated paraformaldehyde preserves the tissue quality and traps the ligand near its site on the receptor, permitting subsequent histological processing through alcohols, solvents, and aqueous media, including liquid nuclear track emulsion. Visualization of [3H]naloxone- or [3H]enkephalin-labeled opiate receptor distributions in rat and human brains is achieved by tritium-sensitive film or by classical "wet" emulsion autoradiography. The advantages of the film include its ease of use and the ability to quantify receptor density by densitometry which can be computer-assisted. The advantage of the emulsion is the greater resolution and the concomitant appearance of morphology in cell-stained sections. Examples of correlations of opiate receptor distributions which underlying cytoarchitecture illustrate the potential for receptor localization studies.
本文描述了一种通用技术,用于利用载玻片上的未固定组织切片来鉴定和可视化脑或其他组织中的药物和神经递质受体。详细介绍了从新鲜冷冻的未固定脑组织到牢固附着在载玻片上的干燥切片的材料制备过程。在含有放射性标记配体、离子、缓冲液和变构效应剂的溶液中,于不同温度下孵育期间,组织可保持完整。文中描述了确定具有最高信噪比的最佳立体特异性结合以及确定所研究的受体是“有意义的”受体的策略。由加热的多聚甲醛产生的蒸汽进行的干式甲醛固定可保持组织质量,并将配体捕获在受体上其所在位置附近,从而允许后续通过酒精、溶剂和水性介质(包括液体核径迹乳剂)进行组织学处理。通过氚敏感胶片或经典的“湿式”乳剂放射自显影术可实现大鼠和人脑中[³H]纳洛酮或[³H]脑啡肽标记的阿片受体分布的可视化。胶片的优点包括使用方便以及能够通过可借助计算机辅助的光密度测定法定量受体密度。乳剂的优点是具有更高的分辨率以及在细胞染色切片中形态学的伴随显现。阿片受体分布与细胞构筑相关性的实例说明了受体定位研究的潜力。