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Artículo

Islet adaptive changes to fructose-induced insulin resistance: β-cell mass, glucokinase, glucose metabolism, and insulin secretion

Maiztegui, BarbaraIcon ; Borelli, Maria InesIcon ; Raschia, Maria AgustinaIcon ; del Zotto, Hector HerminioIcon ; Gagliardino, Juan JoseIcon
Fecha de publicación: 02/2009
Editorial: BioScientifica
Revista: Journal of Endocrinology
ISSN: 0022-0795
e-ISSN: 1479-6805
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Endocrinología y Metabolismo

Resumen

β-Cell mass, hexokinase/glucokinase (HK/GK) activity, glucose metabolism and insulin secretion were studied in the islets of rats with fructose-induced insulin resistance (IR). Normal male Wistar rats were fed a standard commercial diet and water without (control, C) or with 10% fructose-rich diet (FRD) for 3 weeks. Blood glucose (strips), triglyceride (commercial kit), and insulin (RIA) levels were measured at the time of death. Glucose-induced insulin release, glucose metabolism (14CO2 and 3H2O production from d-[U-14C]- and d-[5-3H]-glucose) and HK/GK activity (G-6-P production), transcription (RT-PCR), protein expression (Western blot), and cellular compartmentalization were measured in isolated islets (collagenase digestion). FRD rats presented normoglycemia but impaired glucose tolerance, hypertriglyceridemia, hyperinsulinemia, and increased HOMA-IR index. In these rats, β-cell mass decreased significantly by 33%, with a 44% increase in the percentage of apoptotic cells. Glucose-induced insulin release and islet glucose metabolism were higher in FRD rats. While GK activity (total and cytosolic fraction) and protein expression were significantly higher in FRD islets, HK showed no change in any of these parameters. Our results demonstrate that the changes induced by dietary-induced IR upon β-cell function and mass are strongly conditional on the nutrient model used. In our model (intact animals with impaired glucose tolerance), GK activity increases through mechanisms previously shown only in vitro or under highly hyperglycemic conditions. Such an increase plays a pivotal role in the adaptive increased release of insulin in response to IR, even in the presence of marked β-cell mass reduction.
Palabras clave: INSULIN RESISTANCE , INSULIN SECRETION , GLUCOSE METABOLISM , APOPTOSIS , DIABETES
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/106298
URL: https://joe.bioscientifica.com/view/journals/joe/200/2/139.xml
DOI: http://dx.doi.org/10.1677/JOE-08-0386
Colecciones
Articulos(CENEXA)
Articulos de CENTRO DE ENDOCRINOLOGIA EXP.Y APLICADA (I)
Citación
Maiztegui, Barbara; Borelli, Maria Ines; Raschia, Maria Agustina; del Zotto, Hector Herminio; Gagliardino, Juan Jose; Islet adaptive changes to fructose-induced insulin resistance: β-cell mass, glucokinase, glucose metabolism, and insulin secretion; BioScientifica; Journal of Endocrinology; 200; 2; 2-2009; 139-149
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