Related Experiment Video
Updated: Jul 19, 2026

Whole Cell Electrophysiology of Primary Cultured Murine Enterochromaffin Cells
Published on: September 26, 2018
Myenteric denervation differentially reduces enteroendocrine serotonin cell population in rats during postnatal
Luzmarina Hernandes1, Marilda da Cruz Fernandes, Lucieni Cristina Marques da Silva Pereira
1Morphophysiologycal Sciences Department, Universidade Estadual de Maringá, Avenida Colombo, 5790, CEP 87020-900, Maringá, Paraná, Brazil. lhernandes@uem.br
Abstract:
The enteric nervous and enteroendocrine systems regulate different processes in the small intestine. Ablation of myenteric plexus with benzalkonium chloride (BAC) stimulates epithelial cell proliferation, whereas endocrine serotonin cells may inhibit the process. To evaluate the connection between the systems and the influence of myenteric plexus on serotoninergic cells in rats during postnatal development, the ileal plexus was partially removed with BAC. Rats were treated at 13 or 21 days and sacrificed after 15 days. The cell bodies of myenteric neurons were stained by beta NADH-diaphorase to detect the extension of denervation. The number of enteroendocrine cells in the ileum was estimated in crypts and villi in paraffin sections immunostained for serotonin. The number of neurons was reduced by 27.6 and 45% in rats treated on the 13th and 21st days, respectively. We tried to establish a correlation of denervation and the serotonin population according to the age of treatment. We observed a reduction of immunolabelled cells in the crypts of rats treated at 13 days, whereas this effect was seen in the villi of rats denervated at 21 days. These results suggest that the enteric nervous system might control the enteroendocrine cell population and this complex mechanism could be correlated to changes in cell proliferation.
Related Concept Videos
Drugs Affecting GI Tract Motility: Serotonin Receptor Agonists
Enteric Nervous System: Regulation of GI Motor Activity
During periods of fasting, the ENS initiates the migrating myoelectric complex, a program...
