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小鼠中枢神经系统中μ和δ阿片样物质结合位点的光镜放射自显影定位

Light microscopic autoradiographic localization of mu and delta opioid binding sites in the mouse central nervous system.

作者信息

Moskowitz A S, Goodman R R

出版信息

J Neurosci. 1984 May;4(5):1331-42. doi: 10.1523/JNEUROSCI.04-05-01331.1984.

DOI:10.1523/JNEUROSCI.04-05-01331.1984
PMID:6327936
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6564939/
Abstract

Much work has been done on opioid systems in the rat CNS. Although the mouse is widely used in pharmacological studies of opioid action, little has been done to characterize opioid systems in this species. In the present study the distribution of mu and delta opioid binding sites in the mouse CNS was examined using a quantitative in vitro autoradiography procedure. Tritiated dihydromorphine was used to visualize mu sites and [3H-d-Ala2-d-Leu5]enkephalin with a low concentration of morphine was used to visualize delta sites. Mu and delta site localizations in the mouse are very similar to those previously described in the rat ( Goodman , R.R., S.H. Snyder, M.J. Kuhar , and W.S. Young, 3d (1980) Proc. Natl. Acad. Sci. U.S.A. 77:6239-6243), with certain exceptions and additions. Mu and delta sites were observed in sensory processing areas, limbic system, extrapyramidal motor system, and cranial parasympathetic system. Differential distributions of mu and delta sites were noted in many areas. Mu sites were prominent in laminae I, IV, and VI of the neocortex, in patches in the striatum, and in the ventral pallidum, nucleus accumbens, medial and midline thalamic nuclei, medial habenular nucleus, interpeduncular nucleus, and laminae I and II of the spinal cord. In contrast, delta sites were prominent in all laminae of the neocortex, olfactory tubercle, diffusely throughout the striatum, and in the basal, lateral, and cortical nuclei of the amygdala. The determination of the differential distributions of opioid binding sites should prove useful in suggesting anatomical substrates for the actions of opiates and opioids.

摘要

在大鼠中枢神经系统的阿片系统方面已经开展了大量工作。尽管小鼠广泛应用于阿片作用的药理学研究,但在该物种中对阿片系统进行特征描述的工作却很少。在本研究中,使用定量体外放射自显影程序检查了小鼠中枢神经系统中μ和δ阿片结合位点的分布。用氚标记的二氢吗啡来显示μ位点,并用低浓度吗啡的[3H-d-丙氨酸2-d-亮氨酸5]脑啡肽来显示δ位点。小鼠中μ和δ位点的定位与先前在大鼠中描述的非常相似(古德曼,R.R.,S.H.斯奈德,M.J.库哈尔,和W.S.扬,第三作者(1980年)《美国国家科学院院刊》77:6239 - 6243),不过有一些例外和补充。在感觉处理区域、边缘系统、锥体外系运动系统和颅副交感神经系统中观察到了μ和δ位点。在许多区域注意到了μ和δ位点的差异分布。μ位点在新皮质的I、IV和VI层、纹状体的斑块、腹侧苍白球、伏隔核、内侧和中线丘脑核、内侧缰核、脚间核以及脊髓的I和II层中很突出。相比之下,δ位点在新皮质的所有层、嗅结节、整个纹状体中广泛分布,以及在杏仁核的基底、外侧和皮质核中很突出。阿片结合位点差异分布的确定对于提示阿片类药物和阿片作用的解剖学基础应该是有用的。

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