Neuroanatomical organization of methionine-enkephalinergic system in the brain of the Mozambique tilapia Oreochromis mossambicus.

J Chem Neuroanat

Neuroendocrinology Research Laboratory, Department of Studies in Zoology, Karnatak University, Dharwad, 580 003, India.

Published: September 2021

AI Article Synopsis

  • Enkephalins, specifically methionine enkephalin (M-ENK), are critical opioid peptides involved in physiological and neuroendocrine functions in vertebrates, and this study explores their distribution in the central nervous system (CNS) of cichlid fish (Oreochromis mossambicus).
  • M-ENK immunoreactivity showed a sparse presence in certain brain regions, notably in the olfactory bulb and pallium, while areas like the subpallium had no M-ENK labeling; significant concentrations were observed in the preoptic area, hypothalamus, diencephalon, and various midbrain and rhombencephalon nuclei.
  • The research indicates that the extensive distribution of M

Article Abstract

Enkephalins are a class of opioid peptides implicated in several physiological and neuroendocrine responses in vertebrates. In this study, using immunocytochemical or immunofluorescence technique, we examined the neuroanatomical distribution of methionine enkephalin (M-ENK) immunoreactivity in the central nervous system (CNS) of the cichlid fish Oreochromis mossambicus. In the telencephalon, no M-ENK-like-immunoreactive (M-ENK-L-ir) perikarya, but sparsely distributed fibres were detected in the glomerular layer and the granule cell layer of the olfactory bulb. Although intensely labeled M-ENK-L-ir cells and fibres were found in the pallium, no M-ENK immunoreactivity was observed in the subpallium. The preoptic area showed a few M-ENK-L-ir somata and dense innervations of fibres. In the hypothalamic area, M-ENK-L-ir cells and fibres were located in magnocellular and parvocellular subdivisions of the nucleus preopticus, and medial and lateral subdivisions of the nucleus lateralis tuberis. Surrounding the recessus lateralis of the third ventricle, several intensely stained and packed M-ENK-L-ir cells and fibres were seen in dorsal, lateral and ventral subdivisions of the nucleus recessus lateralis. In the diencephalon, M-ENK immunoreactivity was restricted to the habenula, the thalamus, the pretectal area and the nucleus posterior tuberis. Dense aggregations of M-ENK-L-ir fibres were seen in the mesencephalic subdivisions, the optic tectum and the torus semicircularis, whereas a few fusiform M-ENK-L-ir cells and fibres were scattered in the midbrain tegmentum. In the rhombencephalon, different populations of ovoid or spindle shaped M-ENK-L-ir cells were observed in the secondary gustatory nucleus, the sensory trigeminal nerve nucleus, the nucleus reticularis medialis and the vagal motor nucleus, whereas bands of fibres were seen in the rostral spinal cord. Collectively, the widespread distribution of M-ENK immunoreactivity in the CNS suggests a role for this opioid peptide in regulation of neuroendocrine control of reproduction and modulation of sensorimotor functions in fish.

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http://dx.doi.org/10.1016/j.jchemneu.2021.101963DOI Listing

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Neuroanatomical organization of methionine-enkephalinergic system in the brain of the Mozambique tilapia Oreochromis mossambicus.

J Chem Neuroanat

September 2021

Neuroendocrinology Research Laboratory, Department of Studies in Zoology, Karnatak University, Dharwad, 580 003, India.

Article Synopsis
  • Enkephalins, specifically methionine enkephalin (M-ENK), are critical opioid peptides involved in physiological and neuroendocrine functions in vertebrates, and this study explores their distribution in the central nervous system (CNS) of cichlid fish (Oreochromis mossambicus).
  • M-ENK immunoreactivity showed a sparse presence in certain brain regions, notably in the olfactory bulb and pallium, while areas like the subpallium had no M-ENK labeling; significant concentrations were observed in the preoptic area, hypothalamus, diencephalon, and various midbrain and rhombencephalon nuclei.
  • The research indicates that the extensive distribution of M
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