Glutamate-positive neurons and axon terminals in cat sensory cortex: A correlative light and electron microscopic study
- 1 December 1989
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 290 (1) , 141-153
- https://doi.org/10.1002/cne.902900109
Abstract
Immunocytochemical methods were used to perform a correlative light and electron microscopic study of neurons and axon terminals immunoreactive to the antiglutamate (Glu) serum of Hepler et al. ('88) in the visual and somatic sensory areas of cats. At the light microscopic level, numerous Glupositive neurons were found in all layers except layer I of both cortical areas. On the basis of the dendritic staining of Glu‐positive cells, two major morphological categories were found: pyramidal cells, which were the most frequent type of immunostained neuron, and multipolar neurons, which were more numerous in layer IV of area 17 than in any other layer. A large number of Glu‐positive neurons, however, did not display dendritic labelling and were considered unidentified neurons. Counts of labelled neurons were performed in the striate cortex; approximately 40% were Glu‐positive. Numerous lightly stained punctate structures were observed in all cortical layers: the majority of these Glu‐positive puncta were in the neuropil. After resectioning the plastic sections for electron microscopy it was observed that: (1) the majority of neurons unidentifiable at light microscopic level were indeed pyramidal neurons except in layer IV of area 17, where many stained cells were probably spiny stellate neurons. Some Glu‐positive neurons, however, exhibited clear ultrastructural features of nonspiny nonpyramidal cells; (2) all synaptic contacts made by Glu‐positive axon terminals were of the asymmetric type, but not all asymmetric synaptic contacts were labelled. The vast majority of postsynaptic targets of Glu‐positive axons were unlabelled dendritic spines and shafts. The present results provide further evidence that Glu (or a closely related compound) is probably the neurotransmitter of numerous excitatory neurons in the neocortex.Keywords
This publication has 92 references indexed in Scilit:
- D‐[3H]aspartate retrograde labelling of callosal and association neurones of somatosensory areas I and II of catsJournal of Comparative Neurology, 1987
- Purification of specific antibody against aspartate and immunocytochemical localization of aspartergic neurons in the rat brainNeuroscience, 1987
- Glutamate-positive neurons in the somatic sensory cortex of rats and monkeysJournal of Neuroscience, 1987
- Specific antibodies against aspartate and their immunocytochemical application in the rat brainBrain Research, 1986
- Immunocytochemical localization of glutaminase-like immunoreactivity in the auditory nerveBrain Research, 1984
- The termination of callosal fibres in the auditory cortex of the rat. A combined Golgi-electron microscope and degeneration studyJournal of Neurocytology, 1983
- Aspartate and glutamate as possible neurotransmitters in the visual cortexJournal of Neuroscience, 1981
- GLUTAMINE—A MAJOR SUBSTRATE FOR NERVE ENDINGSJournal of Neurochemistry, 1978
- THE STRUCTURAL SPECIFICITY OF THE HIGH AFFINITY UPTAKE OF l‐GLUTAMATE AND l‐ASPARTATE BY RAT BRAIN SLICESJournal of Neurochemistry, 1972
- Synaptic patterns on different cell types in the different laminae of the cat visual cortex. An electron microscope studyBrain Research, 1968