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Título
Variations in adrenal gland medulla and dopamine effects induced by the lack of Irs2
Autor(es)
Palabras clave
Adrenal chromaffin cells
Adipocytes
Apoptosis
Beta cells
Dopamine
Glycerol release
Insulin secretion
Proliferation
Tyrosine hydroxylase
Fecha de publicación
2018-10-26
Editor
Springer
Citación
Catalano-Iniesta, L., Iglesias-Osma, M. C., Sánchez-Robledo, V., Carretero-Hernández, M., Blanco, E. J., Carretero, J., & García-Barrado, M. J. (2018). Variations in adrenal gland medulla and dopamine effects induced by the lack of Irs2. Journal of Physiology and Biochemistry, 74(4), 667-677. https://doi.org/10.1007/S13105-018-0655-8
Resumen
[EN]The adrenomedullary chromaffin cells’ hormonal pathway has been related to the pathophysiology of diabetes mellitus. In mice, the deletion of insulin receptor substrate type 2 (Irs2) causes peripheral insulin resistance and reduction in β-cell mass, leading to overt diabetes, with gender differences on adrenergic signaling. To further unravel the relevance of Irs2 on glycemic control, we analyzed in adult Irs2 deficient (Irs2−/−) mice, of both sexes but still normoglycemic, dopamine effects on insulin secretion and glycerol release, as well as their adrenal medulla by an immunohistochemical and morphologic approach. In isolated islets, 10 μM dopamine significantly inhibited insulin release in wild-type (WT) and female Irs2−/− mice; however, male Irs2−/− islets were insensitive to that catecholamine. Similarly, on isolated adipocytes, gender differences were observed between WT and Irs2−/− mice in basal and evoked glycerol release with crescent concentrations of dopamine. By immunohistochemistry, reactivity to tyrosine hydroxylase (TH) in female mice was significantly higher in the adrenal medulla of Irs2−/− compared toWT; although no differences for TH-immunopositivity were observed between the male groups of mice. However, compared to their correspondingWTanimals, adrenomedullary chromaffin cells of Irs2−/− mice showed a significant decrease in the cellular and nuclear areas, and even in their percentage of apoptosis. Therefore, our observations suggest that, together with gender differences on dopamine responses in Irs2−/− mice, disturbances in adrenomedullary chromaffin cells could be related to deficiency of Irs2. Accordingly, Irs2 could be necessary for adequate glucose homeostasis and maintenance of the population of the adrenomedullary chromaffin cells.
URI
ISSN
1138-7548
DOI
10.1007/s13105-018-0655-8
Versión del editor
Aparece en las colecciones
Patrocinador
Universidad de Salamanca, Spain
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