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530 related items for PubMed ID: 25861744

  • 21. Presenilin-1 Established ER-Ca2+ Leak: a Follow Up on Its Importance for the Initial Insulin Secretion in Pancreatic Islets and β-Cells upon Elevated Glucose.
    Klec C, Madreiter-Sokolowski CT, Ziomek G, Stryeck S, Sachdev V, Duta-Mare M, Gottschalk B, Depaoli MR, Rost R, Hay J, Waldeck-Weiermair M, Kratky D, Madl T, Malli R, Graier WF.
    Cell Physiol Biochem; 2019; 53(3):573-586. PubMed ID: 31529929
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  • 22. Acute and chronic effects of different concentrations of free fatty acids on the insulin secreting function of islets.
    Ayvaz G, Balos Törüner F, Karakoç A, Yetkin I, Cakir N, Arslan M.
    Diabetes Metab; 2002 Dec; 28(6 Pt 2):3S7-12; discussion 3S108-12. PubMed ID: 12688627
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  • 28. Mitochondrial Carriers Regulating Insulin Secretion Profiled in Human Islets upon Metabolic Stress.
    Jimenez-Sánchez C, Brun T, Maechler P.
    Biomolecules; 2020 Nov 12; 10(11):. PubMed ID: 33198243
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  • 29. Calcium has a permissive role in interleukin-1beta-induced c-jun N-terminal kinase activation in insulin-secreting cells.
    Størling J, Zaitsev SV, Kapelioukh IL, Karlsen AE, Billestrup N, Berggren PO, Mandrup-Poulsen T.
    Endocrinology; 2005 Jul 12; 146(7):3026-36. PubMed ID: 15831571
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  • 30. Glucose controls cytosolic Ca2+ and insulin secretion in mouse islets lacking adenosine triphosphate-sensitive K+ channels owing to a knockout of the pore-forming subunit Kir6.2.
    Ravier MA, Nenquin M, Miki T, Seino S, Henquin JC.
    Endocrinology; 2009 Jan 12; 150(1):33-45. PubMed ID: 18787024
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  • 31. Overexpression of Bcl-x(L) in beta-cells prevents cell death but impairs mitochondrial signal for insulin secretion.
    Zhou YP, Pena JC, Roe MW, Mittal A, Levisetti M, Baldwin AC, Pugh W, Ostrega D, Ahmed N, Bindokas VP, Philipson LH, Hanahan D, Thompson CB, Polonsky KS.
    Am J Physiol Endocrinol Metab; 2000 Feb 12; 278(2):E340-51. PubMed ID: 10662719
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  • 32. Cholesterol reduction ameliorates glucose-induced calcium handling and insulin secretion in islets from low-density lipoprotein receptor knockout mice.
    Souza JC, Vanzela EC, Ribeiro RA, Rezende LF, de Oliveira CA, Carneiro EM, Oliveira HC, Boschero AC.
    Biochim Biophys Acta; 2013 Apr 12; 1831(4):769-75. PubMed ID: 23298460
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  • 33. Attenuation of PERK enhances glucose-stimulated insulin secretion in islets.
    Kim MJ, Min SH, Shin SY, Kim MN, Lee H, Jang JY, Kim SW, Park KS, Jung HS.
    J Endocrinol; 2018 Mar 12; 236(3):125-136. PubMed ID: 29273589
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  • 34. Lipotoxicity in human pancreatic islets and the protective effect of metformin.
    Lupi R, Del Guerra S, Fierabracci V, Marselli L, Novelli M, Patanè G, Boggi U, Mosca F, Piro S, Del Prato S, Marchetti P.
    Diabetes; 2002 Feb 12; 51 Suppl 1():S134-7. PubMed ID: 11815472
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  • 35. Arsenite and its trivalent methylated metabolites inhibit glucose-stimulated calcium influx and insulin secretion in murine pancreatic islets.
    Huang M, Douillet C, Stýblo M.
    Arch Toxicol; 2019 Sep 12; 93(9):2525-2533. PubMed ID: 31332465
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  • 36. Cytokine-mediated changes in K+ channel activity promotes an adaptive Ca2+ response that sustains β-cell insulin secretion during inflammation.
    Dickerson MT, Bogart AM, Altman MK, Milian SC, Jordan KL, Dadi PK, Jacobson DA.
    Sci Rep; 2018 Jan 18; 8(1):1158. PubMed ID: 29348619
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  • 37. Free fatty acid-induced reduction in glucose-stimulated insulin secretion: evidence for a role of oxidative stress in vitro and in vivo.
    Oprescu AI, Bikopoulos G, Naassan A, Allister EM, Tang C, Park E, Uchino H, Lewis GF, Fantus IG, Rozakis-Adcock M, Wheeler MB, Giacca A.
    Diabetes; 2007 Dec 18; 56(12):2927-37. PubMed ID: 17717282
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  • 38. Membrane potential dependent modulations of calcium oscillations in insulin-secreting INS-1 cells.
    Herbst M, Sasse P, Greger R, Yu H, Hescheler J, Ullrich S.
    Cell Calcium; 2002 Mar 18; 31(3):115-26. PubMed ID: 12027385
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  • 39. The insulinotropic mechanism of the novel hypoglycaemic agent JTT-608: direct enhancement of Ca(2+) efficacy and increase of Ca(2+) influx by phosphodiesterase inhibition.
    Mukai E, Ishida H, Fujimoto S, Kajikawa M, Okamoto Y, Fujita J, Hamamoto Y, Tsuura Y, Yamada Y, Furukawa N, Ohta T, Seino Y.
    Br J Pharmacol; 2000 Mar 18; 129(5):901-8. PubMed ID: 10696088
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  • 40. Effects of pharmacological inhibition of NADPH oxidase or iNOS on pro-inflammatory cytokine, palmitic acid or H2O2-induced mouse islet or clonal pancreatic β-cell dysfunction.
    Michalska M, Wolf G, Walther R, Newsholme P.
    Biosci Rep; 2010 Dec 18; 30(6):445-53. PubMed ID: 20178457
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