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Guanylin-immunoreactive cells in the female and male rat adenohypophysis and their changes under various physiological and experimental conditions
Authors:Loredana?D’Este  author-information"  >  author-information__contact u-icon-before"  >  mailto:loredana.deste@uniroma.it"   title="  loredana.deste@uniroma.it"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author,Arianna?Casini,Yalcin?Cetin,Tibor?Wenger,Tindaro?G.?Renda
Affiliation:(1) Department of Human Anatomy, University La Sapienza, Via Alfonso Borelli, 50-00161 Rome, Italy;(2) Department of Molecular Cell Biology, Institute of Anatomy and Cell Biology, Philipps University, Robert-Koch Strasse, 8-35033 Marburg, Germany;(3) Department of Human Morphology and Developmental Biology, Semmelweiss University Medical School, Tuzolto u. 58 P.f., 95-1450 Budapest IX, Hungary
Abstract:The peptide guanylin, first isolated from rat small intestine, is involved in the regulation of water–electrolyte transport between the intracellular and extracellular compartments of the epithelia. The main sites of guanylin expression are the intestinal, airway, or exocrine gland ductal epithelia where guanylin acts in a paracrine/luminocrine fashion. Because guanylin also circulates in the blood, sources of this peptide were sought in endocrine glands. Our group has already demonstrated the presence of guanylin-immunoreactive cells in the pars tuberalis of male rat adenohypophysis. In this study, we investigated whether guanylin-immunoreactive cells exist also in the adenohypophysial pars distalis and whether their appearance or distribution correlates with various physiological conditions in female rats or alters after gonadectomy in both sexes. These studies revealed that the rat pars distalis contains two guanylin-immunoreactive cell types, gonadotrophic cells, whose number varied notably during the estrous cycle, reached a peak in the proestrous phase, and increased consistently during pregnancy, in lactating animals, and after gonadectomy, and folliculo-stellate cells, a discrete number of which were found only in female rats at the estrous phase. These findings suggest that guanylin is involved in regulating gonadotrophic cell function. They also add important information on the controversially discussed functions of folliculo-stellate cells.
Keywords:Guanylate cyclase C-activating peptides  Gonadotrophic cells  Folliculo-stellate cells  Estrous cycle  Gonadectomy  Immunohistochemistry
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