Anatomical basis for interactions of enkephalins with other transmitters in the CNS of a snail
- 9 October 1995
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 361 (1) , 38-47
- https://doi.org/10.1002/cne.903610104
Abstract
Immunocytochemical techniques for double staining were employed to investigate the morphological basis for interactions between enkephalins and other neuroactive compounds in the behavior of the gastropod mollusc Cepaea nemoralis. Coexistence of each of the two enkephalins with FMRFamide, serotonin or GABA-like immunoreactivity was found in certain neurons in cerebral, parietal, and pedal ganglia. Tyrosine hydroxylase-immunoreactive neurons were occasionally seen in close apposition to, but never colocalized with, the enkephalins. A comparison between these anatomical observations and previous behavioral studies suggests that in gastropod molluscs cotransmission of enkephalins with classical transmitters may, at least partly, reflect synergism of these substances in the control of definite behavioral programs.Keywords
This publication has 20 references indexed in Scilit:
- Complex avoidance behaviour and its neurochemical regulation in the land snail Cepaea nemoralisGeneral Pharmacology: The Vascular System, 1995
- FMRFamide and GABA Produce Functionally Opposite Effects on Prey-Capture Reactions in the Pteropod Mollusk Clione limacinaThe Biological Bulletin, 1993
- A simple method for immunofluorescent double staining with primary antisera from the same species.Journal of Histochemistry & Cytochemistry, 1993
- Gamma-aminobutyric acid induces feeding behaviour in the marine mollusc, Clione limacinaNeuroReport, 1991
- Evidence for opioid and non-opioid forms of stress-induced analgesia in the snail, Cepaea nemoralisBrain Research, 1987
- Naloxone-reversible stress-induced feeding and analgesia in the slug Limax maximusLife Sciences, 1986
- The effects of opioid and FMRF-amide peptides on thermal behavior in the snailNeuropharmacology, 1985
- Aplysia neurons express a gene encoding multiple FMRFamide neuropeptidesCell, 1985
- Blocking effect of serotonin on inhibitory dopamine receptor activity of Aplysia ganglion cells.The Japanese Journal of Physiology, 1984
- The Use of the Avidin‐Biotin Complex as a Tool in Molecular BiologyPublished by Wiley ,1980