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Por favor, use este identificador para citar o enlazar este ítem: http://documenta.ciemat.es/handle/123456789/2361

Título : Insulin receptor isoform A ameliorates long-term glucose intolerance in diabetic mice
Autor : Diaz-Castroverde, Sabela
Gómez-Hernández, Almudena
Fernández, Silvia
García-Gómez, Gema
Di Scala, Marianna
González-Aseguinolaza, Gloria
Fernández-Millán, Elisa
González-Rodríguez, Águeda
García-Bravo, María
Chambon, Pierre
Álvarez, Carmen
Perdomo, Liliana
Beneit, Nuria
Escribano, Óscar
Benito, Manuel
Palabras clave : Glucose homeostasis
Insulin receptor isoforms
adeno-associated virus (AAVs)
Liver
Fecha de publicación : 1-nov-2016
Editorial : Disease Models & Mechanisms
Citación : Diaz-Castroverde S, Gómez-Hernández A, Fernández S, García-Gómez G, Di Scala M, González-Aseguinolaza G, Fernández-Millán E, González-Rodríguez Á, García-Bravo M, Chambon P, Álvarez C, Perdomo L, Beneit N, Escribano O, Benito M. Insulin receptor isoform A ameliorates long-term glucose intolerance in diabetic mice. Dis Model Mech. 2016 Nov 1;9(11):1271-1281. doi: 10.1242/dmm.025288. Epub 2016 Aug 24. PMID: 27562101; PMCID: PMC5117224.
Resumen : Type 2 diabetes mellitus is a complex metabolic disease and its pathogenesis involves abnormalities in both peripheral insulin action and insulin secretion. Previous in vitro data showed that insulin receptor isoform A, but not B, favours basal glucose uptake through its specific association with endogenous GLUT1/2 in murine hepatocytes and beta cells. With this background, we hypothesized that hepatic expression of insulin receptor isoform A in a mouse model of type 2 diabetes could potentially increase the glucose uptake of these cells, decreasing the hyperglycaemia and therefore ameliorating the diabetic phenotype. To assure this hypothesis, we have developed recombinant adeno-associated viral vectors expressing insulin receptor isoform A (IRA) or isoform B (IRB) under the control of a hepatocyte--specific promoter. Our results demonstrate that in the long term, hepatic expression of IRA in diabetic mice is more efficient than IRB in ameliorating glucose intolerance. Consequently, it impairs the induction of compensatory mechanisms through beta cell hyperplasia and/or hypertrophy that finally lead to beta cell failure, reverting the diabetic phenotype in about 8 weeks. Our data suggest that long-term hepatic expression of IRA could be a promising therapeutic approach for the treatment of type 2 diabetes mellitus.
URI : http://documenta.ciemat.es/handle/123456789/2361
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