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Stimulation of glucose transport in osteoblastic cells by parathyroid hormone and insulin-like growth factor i

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dc.contributor.author Zoidis, E en
dc.contributor.author Ghirlanda-Keller, C en
dc.contributor.author Schmid, C en
dc.date.accessioned 2014-06-06T06:51:28Z
dc.date.available 2014-06-06T06:51:28Z
dc.date.issued 2011 en
dc.identifier.issn 03008177 en
dc.identifier.uri http://dx.doi.org/10.1007/s11010-010-0634-z en
dc.identifier.uri http://62.217.125.90/xmlui/handle/123456789/5529
dc.subject Glucose transport en
dc.subject GLUT en
dc.subject Glycogen synthesis en
dc.subject IGF I en
dc.subject Osteoblast en
dc.subject PTH en
dc.subject.other deoxyglucose en
dc.subject.other glucose en
dc.subject.other glucose transporter 1 en
dc.subject.other glucose transporter 3 en
dc.subject.other glucose transporter 4 en
dc.subject.other glycogen en
dc.subject.other insulin en
dc.subject.other parathyroid hormone en
dc.subject.other somatomedin C en
dc.subject.other animal cell en
dc.subject.other article en
dc.subject.other binding affinity en
dc.subject.other controlled study en
dc.subject.other exposure en
dc.subject.other fibroblast en
dc.subject.other glucose transport en
dc.subject.other glycogen synthesis en
dc.subject.other nonhuman en
dc.subject.other osteoblast en
dc.subject.other rat en
dc.subject.other Animals en
dc.subject.other Biological Transport en
dc.subject.other Cattle en
dc.subject.other Cells, Cultured en
dc.subject.other Deoxyglucose en
dc.subject.other Fibroblasts en
dc.subject.other Glucose Transport Proteins, Facilitative en
dc.subject.other Glucose Transporter Type 1 en
dc.subject.other Glucose Transporter Type 3 en
dc.subject.other Glucose Transporter Type 4 en
dc.subject.other Glycogen en
dc.subject.other Humans en
dc.subject.other Insulin en
dc.subject.other Insulin-Like Growth Factor I en
dc.subject.other Kinetics en
dc.subject.other Osteoblasts en
dc.subject.other Parathyroid Hormone en
dc.subject.other Peptide Fragments en
dc.subject.other Rats en
dc.subject.other Recombinant Proteins en
dc.subject.other RNA, Messenger en
dc.subject.other Up-Regulation en
dc.subject.other Rattus en
dc.title Stimulation of glucose transport in osteoblastic cells by parathyroid hormone and insulin-like growth factor i en
heal.type journalArticle en
heal.identifier.primary 10.1007/s11010-010-0634-z en
heal.publicationDate 2011 en
heal.abstract Insulin and parathyroid hormone (PTH) regulate glucose metabolism in bone cells. In order to differentiate between the effects of these hormones and to compare the potency of insulin with that of insulin-like growth factor (IGF) I, we treated rat bone-derived osteoblastic (PyMS) cells for different time periods and at different concentrations with insulin, IGF I, or PTH, and measured [1-14C]-2-deoxy-d-glucose (2DG) uptake and incorporation of d-[U-14C] glucose into glycogen. 2DG uptake was Na-independent with an apparent affinity constant (K M) of ~2 mmol/l. Expression of the high affinity glucose transporters (GLUT), GLUT1 and GLUT3 but not of GLUT4, was found by Northern and Western analysis. Similar to the findings with primary rat osteoblasts, but distinct from those in rat fibroblasts, 2DG uptake and glycogen synthesis were increased in this cell line after exposure to low concentrations (0.1 nmol/l and above) of PTH. IGF I at low doses (0.3 nmol/l and above) or insulin at higher doses (1 nmol/l and above) stimulated 2DG uptake and [3H] thymidine incorporation into DNA. 2DG transport was enhanced already after 30 min of IGF I treatment whereas the effect of PTH became significant after 6 h. It is concluded that IGF I rather than insulin may be a physiological regulator of 2DG transport and glycogen synthesis in osteoblasts. © 2010 Springer Science+Business Media, LLC. en
heal.journalName Molecular and Cellular Biochemistry en
dc.identifier.issue 1-2 en
dc.identifier.volume 348 en
dc.identifier.doi 10.1007/s11010-010-0634-z en
dc.identifier.spage 33 en
dc.identifier.epage 42 en


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