BECAS
SALAS Gimena
congresos y reuniones científicas
Título:
Estradiol 17ß-D-glucuronide-induced impairment of Mrp2 activity in rat hepatocytes involves NADPH oxidase-mediated oxidative stress
Autor/es:
SALAS GIMENA; MEDEOT ANABELA CAROLINA; SCHUCK VIRGINIA SOLEDAD; ANDERMATTEN ROMINA BELEN; MISZCUK GISEL SABRINA; CIRIACI NADIA; BAROSSO ISMAEL RICARDO; SANCHEZ POZZI ENRIQUE JUAN; ROMA MARCELO GABRIEL; BASIGLIO CECILIA L; CROCENZI FERNANDO ARIEL
Lugar:
Rosario
Reunión:
Congreso; Reunión Anual de la Soc. Arg. de Fisiología SAFIS 2019; 2019
Institución organizadora:
SAFIS
Resumen:
Estradiol 17ß-D-glucuronide (E17G) is an endogenous metabolite of estradiol that is considered a main responsible of intrahepatic cholestasis of pregnancy. E17G induces acute cholestasis in animal models via activation of several kinase-mediated signaling pathways leading to an increased endocytosis and intracellular retention of canalicular transporters and the consequent canalicular secretory failure. Oxidative stress has been shown to induce internalization of canalicular transporters and cholestasis. Here, we investigated the possible involvement of oxidative stress in E17G-induced impairment of canalicular Mrp2 function.Transport function of Mrp2 was analyzed by the measurement of canalicular vacuolar accumulation (cVA) of glutathione-S-methylfluorescein (GS-MF), a fluorescent glutathione-conjugated metabolite of chloromethylfluorescein diacetate (CMFDA) in rat hepatocyte couplets (RHC), and also by measuring the initial transport rate (ITR) of GS-MF in sandwich-cultured rat hepatocytes (SRH). The role of reactive oxygen species (ROS) in E17G-induced Mrp2 function impairment was evaluated by preincubating hepatocytes for 15 to 30 min with the antioxidant compounds vitamin C (VitC), mannitol (Man), N,N'-diphenyl 1,4-phenylenediamine (DPPD),or withapocynin (Apo), a specific inhibitor of the ROS-producing enzyme NADPH oxidase (NOX), prior to a 20-min exposure to E17G. cVA of GS-MF, expressed as percent of control, was significantly reduced by E17G (45±2, p