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PMID: 1506472 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Light and electron microscopic characterization of dopamine-immunoreactive axons in human cerebral cortex.

The Journal of comparative neurology ·Vol. 321 ·No. 3 ·1992-07-15 ·Pages 325-35

Smiley JF, Williams SM, Szigeti K, Goldman-Rakic PS

Abstract

The distribution and synaptic connections of dopamine axons were studied by light and electron microscopy in human cerebral cortex. For this purpose, dopamine immunoreactivity was characterized in apparently normal anteriolateral temporal cortex, which was removed to gain access to the medial temporal lobe during tumor excision or treatment of epilepsy. Nissl sections showed this to be granular neocortex. Dopamine fibers were distributed throughout this cortex, although there were relatively more fibers in layers I-II and in layers V-VIa, compared to layers III-IV and VIb, resulting in a bilaminar pattern of labeling. In all layers, fibers were seen to form numerous varicosities, and to vary in size from thick to very fine. Fibers were relatively straight, sparsely branched and were oriented in various planes within the cortex. However, in layer I, they often ran parallel to the pial surface. In order to analyze the functional interactions of dopamine fibers, individual cortical layers were surveyed for dopamine synapses. These were usually symmetrical (Gray's type II), although 13% of them were asymmetrical. Approximately 60% of dopamine synapses were made with dendritic spines, and 40% with dendritic shafts, and this ratio was similar in all layers. On both spines and shafts, it was common to see dopamine synapses closely apposed to an unlabeled asymmetric input, suggesting a dopamine modulation of excitatory input. Some postsynaptic dendritic shafts had features of pyramidal cells, including formation of spines. Since pyramidal cells are the major type of cortical spiny neuron, they probably represent the main target of dopamine synapses in this cortex. There were also dopamine profiles apposed to membrane densities on unlabeled axon terminals, suggesting another type of synaptic interaction. These findings provide the first documentation of dopamine synapses in the human cortex, and show that they form classical synaptic junctions. The location of these synapses on spines and distal dendrites, and their proximity to asymmetric synapses, suggest a modulatory role on excitatory input to pyramidal cells.

MeSH Terms
Axons/chemistry Dopamine/analysis Humans Immunohistochemistry Microscopy Microscopy, Electron Synapses/chemistry Temporal Lobe/chemistry Tissue Fixation
Chemicals
Dopamine
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Smiley J F
Section of Neurobiology, Yale School of Medicine, New Haven, Connecticut 06510.
Williams S M
Szigeti K
Goldman-Rakic P S
Article Info
Journal
The Journal of comparative neurology
Abbr.
J Comp Neurol
ISSN
0021-9967
Published
1992-07-15
Pages
325-35
Language
English
Region
United States
NLM ID
0406041
Subset
IM
Grants
NIMH NIH HHS · MH 44866 · United States
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