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脑脊液接触神经元和松果体细胞的细胞化学

Cytochemistry of CSF-contacting neurons and pinealocytes.

作者信息

Vigh B, Vigh-Teichmann I

机构信息

2nd Department of Anatomy, Semmelweis University Medical School, Budapest, Hungary.

出版信息

Prog Brain Res. 1992;91:299-306. doi: 10.1016/s0079-6123(08)62346-8.

Abstract

Gamma aminobutyric acid (GABA)-immunoreactive neurons of the paraventricular organ of the bony fish Coregonus albus send dendrites into the third ventricle. Their axons run to the synaptic zone of the infundibular lobe. The dendrites may take up some chemical information from the third ventricle, while the axons communicate it to the neuropil of the hypothalamus perhaps to modify its activity according to the state of the CSF. Serotonin-immunoreactive CSF-contacting neurons in the spinal cord of the hagfish Myxine glutinosa from dendrite terminals in the central canal and bear stereocilia like known mechanoreceptors. The Reissner's fiber runs above the stereocilia and flows out from the central canal through its caudal opening. Possibly, the fiber keeps open this aperture and ensures the flow of the CSF, which may serve as a mechanoreceptory input for the CSF-contacting neurons. In the pineal recess of hedgehog, CSF-contacting pinealocytes develop enlarged cilia corresponding to the photoreceptor outer segments of submammalian pinealocytes. Potassium pyroantimonate cytochemistry shows a similar localization of calcium ions in the mammalian pinealocyte as in the submammalian photoreceptor ones. Pineal calcifications are present in some birds (goose, duck) and may be connected to the photoreceptory Ca-exchange of the pineal organ. Axonic processes of pinealocytes form synapses on secondary neurons in mammals (hedgehog, rat, cat). Such neurons are also present in human pineals. Axons of these neurons constitute a pinealofugal pathway. In the cat, some of the intrinsic pineal neurons are GABA-immunoreactive, they form axodendritic and axo-axonic synapses (inhibitory?) on immunonegative neurons and pinealocytes, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

白鲑硬骨鱼室旁器官中γ-氨基丁酸(GABA)免疫反应性神经元的树突伸入第三脑室。它们的轴突延伸至漏斗叶的突触区。树突可能从第三脑室摄取一些化学信息,而轴突将其传递至下丘脑的神经毡,可能是根据脑脊液的状态来调节其活动。盲鳗黏液鳗脊髓中的5-羟色胺免疫反应性脑脊液接触神经元从中央管的树突末端发出,并带有类似于已知机械感受器的静纤毛。赖氏纤维在静纤毛上方运行,并通过中央管的尾端开口流出。可能该纤维保持此孔开放并确保脑脊液流动,这可能作为脑脊液接触神经元的机械感受性输入。在刺猬的松果体隐窝中,脑脊液接触松果体细胞形成与亚哺乳动物松果体细胞的光感受器外段相对应的增大的纤毛。焦锑酸钾细胞化学显示,哺乳动物松果体细胞中钙离子的定位与亚哺乳动物光感受器中的相似。一些鸟类(鹅、鸭)的松果体有钙化,可能与松果体器官的光感受性钙交换有关。松果体细胞的轴突过程在哺乳动物(刺猬、大鼠、猫)的次级神经元上形成突触。人类松果体中也存在此类神经元。这些神经元的轴突构成一条松果体传出通路。在猫中,一些松果体固有神经元是GABA免疫反应性的,它们分别在免疫阴性神经元和松果体细胞上形成轴-树突和轴-轴突触(抑制性?)。(摘要截短于250词)

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