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脑啡肽、P物质和生长抑素在豹蛙(北美豹蛙)脑干中的免疫组织化学分布

Immunohistochemical distribution of enkephalin, substance P, and somatostatin in the brainstem of the leopard frog, Rana pipiens.

作者信息

Stuesse S L, Adli D S, Cruce W L

机构信息

Neurobiology and Pharmacology Department, Northeastern Ohio Universities College of Medicine, Rootstown, Ohio 44272, USA.

出版信息

Microsc Res Tech. 2001 Aug 15;54(4):229-45. doi: 10.1002/jemt.1135.

Abstract

The brainstems of frogs contain many of the neurochemicals that are found in mammals. However, the clustering of nuclei near the ventricles makes it difficult to distinguish individual cell groups. We addressed this problem by combining immunohistochemistry with tract tracing and an analysis of cell morphology to localize neuropeptides within the brainstem of Rana pipiens. We injected a retrograde tracer, Fluoro-Gold, into the spinal cord, and, in the same frog, processed adjacent sections for immunohistochemical location of antibodies to the neuropeptides enkephalin (ENK), substance P (SP), and somatostatin (SOM). SOM+ cells were more widespread than cells containing immunoreactivity (ir) to the other substances. Most reticular nuclei in frog brainstem contained ir to at least one of these chemicals. Cells with SOM ir were found in nucleus (n.) reticularis pontis oralis, n. reticularis magnocellularis, n. reticularis paragigantocellularis, n. reticularis dorsalis, the optic tectum, n. interpeduncularis, and n. solitarius. ENK-containing cell bodies were found in n. reticularis pontis oralis, n. reticularis dorsalis, the nucleus of the solitary tract, and the tectum. The midbrain contained most of the SP+ cells. Six nonreticular nuclei (griseum centrale rhombencephali, n. isthmi, n. profundus mesencephali, n. interpeduncularis, torus semicircularis laminaris, and the tectum) contained ir to one or more of the substances but did not project to the spinal cord. The descending tract of V, and the rubrospinal, reticulospinal, and solitary tracts contained all three peptides as did the n. profundus mesencephali, n. isthmi, and specific tectal layers. Because the distribution of neurochemicals within the frog brainstem is similar to that of amniotes, our results emphasize the large amount of conservation of structure, biochemistry, and possibly function that has occurred in the brainstem, and especially in the phylogenetically old reticular formation.

摘要

青蛙的脑干含有许多在哺乳动物中发现的神经化学物质。然而,脑室附近核团的聚集使得区分单个细胞群变得困难。我们通过将免疫组织化学与束路追踪以及细胞形态分析相结合,来定位北美豹蛙脑干内的神经肽,从而解决了这个问题。我们将逆行示踪剂荧光金注入脊髓,并在同一只青蛙中,对相邻切片进行处理,以免疫组织化学定位针对脑啡肽(ENK)、P物质(SP)和生长抑素(SOM)的抗体。含有SOM的细胞比含有对其他物质免疫反应性(ir)的细胞分布更广泛。青蛙脑干中的大多数网状核至少对这些化学物质中的一种呈ir阳性。含有SOM ir的细胞见于脑桥嘴侧网状核、巨细胞网状核、旁巨细胞网状核、背侧网状核、视顶盖、脚间核和孤束核。含有ENK的细胞体见于脑桥嘴侧网状核、背侧网状核、孤束核和顶盖。中脑含有大多数SP阳性细胞。六个非网状核(菱脑中央灰质、峡核、中脑深核、脚间核、半环形隆凸板层和顶盖)对一种或多种物质呈ir阳性,但不投射到脊髓。三叉神经下行束、红核脊髓束、网状脊髓束和孤束以及中脑深核、峡核和特定的顶盖层都含有所有三种肽。由于青蛙脑干内神经化学物质的分布与羊膜动物相似,我们的结果强调了脑干,尤其是系统发育古老的网状结构在结构、生物化学以及可能的功能方面发生了大量的保守现象。

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