hrp0082fc10.2 | Programming & Early Endocrinology | ESPE2014

Stk11 Expression in Adipose Tissue Following Fetal Growth Restriction: Relation to Catch-Up Growth and Visceral Fat Mass

Carreras-Badosa Gemma , Remesar Xavier , Prats-Puig Anna , Platero-Gutierrez Estibaliz , de Zegher Francis , Ibanez Lourdes , Bassols Judit , Lopez-Bermejo Abel

Background: STK11 regulates glucose and lipid metabolism. In adult rats, excessive fat deposition and dysfunctional metabolism are related to low STK11 expression in adipose tissue. It is unknown if low STK11 expression in adipose tissue relates also to catch-up growth and fat deposition after intrauterine growth restriction.Objective and Hypotheses: To assess the expression of STK11 in adipose tissue and its relation ...

hrp0084fc8.1 | Obesity - Basic | ESPE2015

DLK1 Expression in Adipose Tissue Following Fetal Growth Restriction: Relation to Visceral Fat Expansion and Catch-Up Growth in Wistar Rats

Carreras-Badosa Gemma , Remesar Xavier , Prats-Puig Anna , Diaz-Roldan Ferran , Platero-Gutierrez Estibaliz , Martinez-Calcerrada Jose-Maria , de Zegher Francis , Ibanez Lourdes , Bassols Judit , Lopez-Bermejo Abel

Background: DLK1 (PREF1) is a key inhibitor of adipogenesis and adipocyte differentiation. Adipose tissue expansion depends on adequate adipocyte differentiation. However, whether lower DLK1 expression facilitates adipose tissue expansion following fetal growth restriction is so far unknown.Objective and hypotheses: To study the expression of DLK1 in the adipose tissue of prenatally growth-restricted rats and its relat...

hrp0092rfc4.3 | Fat Metabolism and Obesity Session | ESPE2019

Dysregulated Gene Expression Profile in Visceral Adipose Tissue of Juvenile Wistar Rats with Catch-Up Growth: Association with Fat Expansion and Metabolic Parameters

Lizárraga-Mollinedo Esther , Carreras-Badosa Gemma , Remesar Xavier , Xargay-Torrent Silvia , Mas-Parés Berta , Prats-Puig Anna , de Zegher Francis , Ibáñez Lourdes , López-Bermejo Abel , Bassols Judit

Background: Accelerated catch-up growth following intrauterine growth restriction increases the risk of developing visceral adiposity and metabolic syndrome. Animal models of growth restriction during gestation have been developed as a powerful tool to provide insight into the underlying molecular mechanisms thereof.Objective: To analyze the patterns of gene expression in the retroperitoneal adipose tissue of rats with i...