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PUBMED FOR HANDHELDS

Journal Abstract Search


123 related items for PubMed ID: 37499998

  • 1. PAQR9 regulates glucose homeostasis in diabetic mice and modulates insulin secretion in β cells in vitro under stress conditions.
    Li Z, Lin Y, Zhuo S, Chen J, Chen L, Wang S, Chen Y.
    Mol Cell Endocrinol; 2023 Sep 15; 575():112032. PubMed ID: 37499998
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  • 2. Administration of Tonsil-Derived Mesenchymal Stem Cells Improves Glucose Tolerance in High Fat Diet-Induced Diabetic Mice via Insulin-Like Growth Factor-Binding Protein 5-Mediated Endoplasmic Reticulum Stress Modulation.
    Lee Y, Shin SH, Cho KA, Kim YH, Woo SY, Kim HS, Jung SC, Jo I, Jun HS, Park WJ, Park JW, Ryu KH.
    Cells; 2019 Apr 23; 8(4):. PubMed ID: 31018536
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  • 3. PAQR9 Modulates BAG6-mediated protein quality control of mislocalized membrane proteins.
    You X, Lin Y, Hou Y, Xu L, Cao Q, Chen Y.
    Biochem J; 2020 Jan 31; 477(2):477-489. PubMed ID: 31904842
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  • 4. The nucleotide exchange factor SIL1 is required for glucose-stimulated insulin secretion from mouse pancreatic beta cells in vivo.
    Ittner AA, Bertz J, Chan TY, van Eersel J, Polly P, Ittner LM.
    Diabetologia; 2014 Jul 31; 57(7):1410-9. PubMed ID: 24733160
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  • 5. Endoplasmic reticulum stress contributes to NMDA-induced pancreatic β-cell dysfunction in a CHOP-dependent manner.
    Huang XT, Liu W, Zhou Y, Sun M, Sun CC, Zhang CY, Tang SY.
    Life Sci; 2019 Sep 01; 232():116612. PubMed ID: 31260687
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  • 6. PAQR9 regulates hepatic ketogenesis and fatty acid oxidation during fasting by modulating protein stability of PPARα.
    Lin Y, Chen L, You X, Li Z, Li C, Chen Y.
    Mol Metab; 2021 Nov 01; 53():101331. PubMed ID: 34474167
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  • 8. Chop/Ddit3 depletion in β cells alleviates ER stress and corrects hepatic steatosis in mice.
    Yong J, Parekh VS, Reilly SM, Nayak J, Chen Z, Lebeaupin C, Jang I, Zhang J, Prakash TP, Sun H, Murray S, Guo S, Ayala JE, Satin LS, Saltiel AR, Kaufman RJ.
    Sci Transl Med; 2021 Jul 28; 13(604):. PubMed ID: 34321322
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  • 11. Metallothionein 1 negatively regulates glucose-stimulated insulin secretion and is differentially expressed in conditions of beta cell compensation and failure in mice and humans.
    Bensellam M, Shi YC, Chan JY, Laybutt DR, Chae H, Abou-Samra M, Pappas EG, Thomas HE, Gilon P, Jonas JC.
    Diabetologia; 2019 Dec 28; 62(12):2273-2286. PubMed ID: 31624901
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  • 14. n-3 Polyunsaturated fatty acids protect against pancreatic β-cell damage due to ER stress and prevent diabetes development.
    Wang J, Song MY, Bae UJ, Lim JM, Kwon KS, Park BH.
    Mol Nutr Food Res; 2015 Sep 28; 59(9):1791-802. PubMed ID: 26080997
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  • 15. Duodenal-Jejunal Bypass Surgery Ameliorates Glucose Homeostasis and Reduces Endoplasmic Reticulum Stress in the Liver Tissue in a Diabetic Rat Model.
    Li M, Li H, Zhou Z, Zhou Y, Wang Y, Zhang X, Liu T, Zhong M, Han H, Liu S, Hu S.
    Obes Surg; 2016 May 28; 26(5):1002-9. PubMed ID: 26205216
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  • 17. Overexpressed beta cell CART increases insulin secretion in mouse models of insulin resistance and diabetes.
    Abels M, Riva M, Shcherbina L, Fischer AT, Banke E, Degerman E, Lindqvist A, Wierup N.
    Peptides; 2022 May 28; 151():170747. PubMed ID: 35065097
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  • 18. Lupenone attenuates thapsigargin-induced endoplasmic reticulum stress and apoptosis in pancreatic beta cells possibly through inhibition of protein tyrosine kinase 2 activity.
    Song SE, Shin SK, Kim YW, Do YR, Lim AK, Bae JH, Jeong GS, Im SS, Song DK.
    Life Sci; 2023 Nov 01; 332():122107. PubMed ID: 37739164
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  • 19. Cannabinoid 2 Receptor Agonist Improves Systemic Sensitivity to Insulin in High-Fat Diet/Streptozotocin-Induced Diabetic Mice.
    Zhang X, Gao S, Niu J, Li P, Deng J, Xu S, Wang Z, Wang W, Kong D, Li C.
    Cell Physiol Biochem; 2016 Nov 01; 40(5):1175-1185. PubMed ID: 27960161
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  • 20. Yunvjian decoction mitigates hyperglycemia in rats induced by a high-fat diet and streptozotocin via reducing oxidative stress in pancreatic beta cells.
    Lv J, Su M, Wang Y, Yang J, Liang Y, Chen L, Lei L.
    J Ethnopharmacol; 2024 Jun 12; 327():118045. PubMed ID: 38479546
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