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dc.creatorEleftheriadis T., Pissas G., Tsogka K., Nikolaou E., Liakopoulos V., Stefanidis I.en
dc.date.accessioned2023-01-31T07:37:22Z
dc.date.available2023-01-31T07:37:22Z
dc.date.issued2020
dc.identifier10.1007/s11255-020-02481-3
dc.identifier.issn03011623
dc.identifier.urihttp://hdl.handle.net/11615/71366
dc.description.abstractBackground: Glucotoxicity in renal tubular epithelial cells (RPTECs) contributes to the pathogenesis of diabetic nephropathy. Sodium-glucose cotransporter 2 (SGLT2) inhibitors may exert their renoprotective effect by preventing glucotoxicity. We tested whether the confirmed in capillary endothelial cells unifying model of glucotoxicity can be applied in RPTECs and the impact of dapagliflozin. Methods: In primary human RPTECs cultured in normal or high glucose medium in the presence or not of dapagliflozin, we assessed glucose consumption, SCLT2 expression, reactive oxygen species (ROS) production, glyceraldehyde 3-phosphate dehydrogenase (GAPDH) activity, d-sorbitol and methylglyoxal cell content, O-linked β-N-acetyl glucosamine (O-Glc-NAc)-modified proteins, protein kinase C (PKC) activity, transforming growth factor-β1 (TGF-β1), interleukin-8 (IL-8), cell necrosis, and cell apoptosis using colorimetric and immunoenzymatic assays, and western blotting. Results: High glucose increases SGLT2 expression and glucose consumption. ROS are overproduced, and GAPDH is inhibited. The accumulation due to GAPDH inhibition glycolytic products are diverted into four noxious pathways. The polyol pathway assessed by d-sorbitol, the hexosamine pathway determined by O-GlcNAc-modified proteins, the lipid synthesis pathway assessed by PKC activity, and the advanced glycation end-products (AGEs) formation assessed by methylglyoxal. Eventually, these paths lead to overproduction of TGF-β1 and IL-8, as well as to cell necrosis and apoptosis. Dapagliflozin ameliorates all the above cascade of events. Conclusions: Our results support a unifying model for glucotoxicity in RPTECs. Dapagliflozin by decreasing the elevated glucose influx into the RPTECs under high glucose conditions ameliorates glucotoxicity. © 2020, Springer Nature B.V.en
dc.language.isoenen
dc.sourceInternational Urology and Nephrologyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85085087929&doi=10.1007%2fs11255-020-02481-3&partnerID=40&md5=5e70f73bebde6782be1c44dbfb06d48e
dc.subjectadvanced glycation end producten
dc.subjectdapagliflozinen
dc.subjectglucoseen
dc.subjectglyceraldehyde 3 phosphate dehydrogenaseen
dc.subjecthexosamineen
dc.subjectinterleukin 8en
dc.subjectlipiden
dc.subjectmethylglyoxalen
dc.subjectn acetylglucosamineen
dc.subjectpolyolen
dc.subjectprotein kinase Cen
dc.subjectreactive oxygen metaboliteen
dc.subjectsodium glucose cotransporter 2en
dc.subjectsorbitolen
dc.subjecttransforming growth factor beta1en
dc.subject2-(3-(4-ethoxybenzyl)-4-chlorophenyl)-6-hydroxymethyltetrahydro-2H-pyran-3,4,5-triolen
dc.subjectbenzhydryl derivativeen
dc.subjectglucoseen
dc.subjectglucosideen
dc.subjectapoptosisen
dc.subjectArticleen
dc.subjectcell deathen
dc.subjectcolorimetryen
dc.subjectcontrolled studyen
dc.subjectcytokine productionen
dc.subjectdiabetic nephropathyen
dc.subjectdrug effecten
dc.subjectenzyme activityen
dc.subjectenzyme immunoassayen
dc.subjectepithelium cellen
dc.subjectglucose intakeen
dc.subjectglucotoxicityen
dc.subjecthumanen
dc.subjecthuman cellen
dc.subjectkidney tubule cellen
dc.subjectlipogenesisen
dc.subjectprotein expressionen
dc.subjectrenal protectionen
dc.subjectrenal proximal tubular epithelial cellen
dc.subjectWestern blottingen
dc.subjectbiological modelen
dc.subjectcell cultureen
dc.subjectcytologyen
dc.subjectendothelium cellen
dc.subjectkidney proximal tubuleen
dc.subjectmetabolismen
dc.subjectpharmacologyen
dc.subjectBenzhydryl Compoundsen
dc.subjectCells, Cultureden
dc.subjectEndothelial Cellsen
dc.subjectGlucoseen
dc.subjectGlucosidesen
dc.subjectHumansen
dc.subjectKidney Tubules, Proximalen
dc.subjectModels, Biologicalen
dc.subjectSodium-Glucose Transporter 2 Inhibitorsen
dc.subjectSpringeren
dc.titleA unifying model of glucotoxicity in human renal proximal tubular epithelial cells and the effect of the SGLT2 inhibitor dapagliflozinen
dc.typejournalArticleen


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