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Na(+)-D-glucose cotransporter in muscle capillaries increases glucose permeability
Authors:Elfeber Katrin  Stümpel Frank  Gorboulev Valentin  Mattig Sabine  Deussen Andreas  Kaissling Brigitte  Koepsell Hermann
Institution:Institut für Anatomie und Zellbiologie der Bayerischen Julius-Maximilians-Universit?t, Koellikerstrasse 6, 97070 Würzburg, Germany.
Abstract:By immunohistochemistry, we demonstrated the localization of the Na(+)-D-glucose cotransporter SGLT1 in capillaries of rat heart and skeletal muscle, but not in capillaries of small intestine and submandibular gland. mRNA of SGLT1 was identified in skeletal muscle and primary cultured coronary endothelial cells. The functional relevance of SGLT1 for glucose transport across capillary walls in muscle was tested by measuring the extraction of D-glucose from the perfusate during non-recirculating perfusion of isolated rat hindlimbs. In this model, D-glucose extraction from the perfusate is increased by insulin which accelerates D-glucose uptake into myocytes by increasing the concentration of glucose transporter GLUT4 in the plasma membrane. The insulin-induced increase of D-glucose extraction from the perfusate was abolished after blocking SGLT1 with the specific inhibitor phlorizin. The data show that SGLT1 in capillaries of skeletal muscle is required for the action of insulin on D-glucose supply of myocytes.
Keywords:Glucose transport  d-glucose cotransporter" target="_blank">Sodium d-glucose cotransporter  Skeletal muscle  Heart  Capillaries  Endothelium
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