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128 related items for PubMed ID: 38507775
1. Phillyrin alleviates high glucose-induced oxidative stress and inflammation in HBZY-1 cells through inhibition of the PI3K/Akt signaling pathway. Yang C, Bao L, Shi Z, Xv X, Jiang D, You L. J Pharm Pharmacol; 2024 Jul 05; 76(7):776-787. PubMed ID: 38507775 [Abstract] [Full Text] [Related]
2. Plantamajoside inhibits high glucose-induced oxidative stress, inflammation, and extracellular matrix accumulation in rat glomerular mesangial cells through the inactivation of Akt/NF-κB pathway. Xiao D, Yang R, Gong L, Zhang Y, Xie Y, Ni S. J Recept Signal Transduct Res; 2021 Feb 05; 41(1):45-52. PubMed ID: 32605460 [Abstract] [Full Text] [Related]
3. Liquiritigenin attenuates high glucose-induced mesangial matrix accumulation, oxidative stress, and inflammation by suppression of the NF-κB and NLRP3 inflammasome pathways. Zhu X, Shi J, Li H. Biomed Pharmacother; 2018 Oct 05; 106():976-982. PubMed ID: 30119269 [Abstract] [Full Text] [Related]
4. Ginkgetin alleviates high glucose-evoked mesangial cell oxidative stress injury, inflammation, and extracellular matrix (ECM) deposition in an AMPK/mTOR-mediated autophagy axis. Wei L, Jian P, Erjiong H, Qihan Z. Chem Biol Drug Des; 2021 Oct 05; 98(4):620-630. PubMed ID: 34148304 [Abstract] [Full Text] [Related]
5. Salidroside alleviates high glucose-induced oxidative stress and extracellular matrix accumulation in rat glomerular mesangial cells by the TXNIP-NLRP3 inflammasome pathway. Wang S, Zhao X, Yang S, Chen B, Shi J. Chem Biol Interact; 2017 Dec 25; 278():48-53. PubMed ID: 29031534 [Abstract] [Full Text] [Related]
6. Astragaloside IV attenuates high glucose-induced NF-κB-mediated inflammation through activation of PI3K/AKT-ERK-dependent Nrf2/ARE signaling pathway in glomerular mesangial cells. Su X, Guo H, Zhou Y, Cao A, Shen Q, Zhu B, Yao X, Wang Y, Wang H, Wang L. Phytother Res; 2023 Sep 25; 37(9):4133-4148. PubMed ID: 37189016 [Abstract] [Full Text] [Related]
7. Artesunate ameliorates high glucose-induced rat glomerular mesangial cell injury by suppressing the TLR4/NF-κB/NLRP3 inflammasome pathway. Sun Z, Ma Y, Chen F, Wang S, Chen B, Shi J. Chem Biol Interact; 2018 Sep 25; 293():11-19. PubMed ID: 30031708 [Abstract] [Full Text] [Related]
8. GDF15 Interference Regulates Proliferation, Inflammation, and Autophagy of Lipopolysaccharide-induced Mesangial Cells by Inhibiting PI3K/ AKT/mTOR Signaling. Chen Z, Gao L, Li C, Sun W. Endocr Metab Immune Disord Drug Targets; 2024 Sep 25; 24(9):1069-1080. PubMed ID: 37855350 [Abstract] [Full Text] [Related]
9. Phillyrin Mitigates Apoptosis and Oxidative Stress in Hydrogen Peroxide-Treated RPE Cells through Activation of the Nrf2 Signaling Pathway. Du Y, You L, Ni B, Sai N, Wang W, Sun M, Xu R, Yao Y, Zhang Z, Qu C, Yin X, Ni J. Oxid Med Cell Longev; 2020 Sep 25; 2020():2684672. PubMed ID: 33101585 [Abstract] [Full Text] [Related]
10. BML-111 attenuates high glucose-induced inflammation, oxidative stress and reduces extracellular matrix accumulation via targeting Nrf2 in rat glomerular mesangial cells. Wu X, Pan C, Chen R, Zhang S, Zhai Y, Guo H. Int Immunopharmacol; 2020 Feb 25; 79():106108. PubMed ID: 31881376 [Abstract] [Full Text] [Related]
11. Daphnetin inhibits high glucose-induced extracellular matrix accumulation, oxidative stress and inflammation in human glomerular mesangial cells. Xu K, Guo L, Bu H, Wang H. J Pharmacol Sci; 2019 Feb 25; 139(2):91-97. PubMed ID: 30595336 [Abstract] [Full Text] [Related]
12. Inhibition of NADPH Oxidase 5 (NOX5) Suppresses High Glucose-Induced Oxidative Stress, Inflammation and Extracellular Matrix Accumulation in Human Glomerular Mesangial Cells. Li Y, Li Y, Zheng S. Med Sci Monit; 2020 Feb 03; 26():e919399. PubMed ID: 32012145 [Abstract] [Full Text] [Related]
13. Diphenyl Diselenide Alleviates Tert-Butyl Hydrogen Peroxide-Induced Oxidative Stress and Lipopolysaccharide-Induced Inflammation in Rat Glomerular Mesangial Cells. Wang X, Huan Y, Liu S, Li C, Cao H, Lei L, Liu Q, Ji W, Sun S, Huang K, Zhou J, Shen Z. Int J Mol Sci; 2022 Sep 23; 23(19):. PubMed ID: 36232514 [Abstract] [Full Text] [Related]
14. Curcumin in vitro Neuroprotective Effects Are Mediated by p62/keap-1/Nrf2 and PI3K/AKT Signaling Pathway and Autophagy Inhibition. Li X, Sung P, Zhang D, Yan L. Physiol Res; 2023 Aug 31; 72(4):497-510. PubMed ID: 37795892 [Abstract] [Full Text] [Related]
15. Zeaxanthin ameliorates high glucose-induced mesangial cell apoptosis through inhibiting oxidative stress via activating AKT signalling-pathway. Ying C, Chen L, Wang S, Mao Y, Ling H, Li W, Zhou X. Biomed Pharmacother; 2017 Jun 31; 90():796-805. PubMed ID: 28431381 [Abstract] [Full Text] [Related]
16. β-Caryophyllene inhibits high glucose-induced oxidative stress, inflammation and extracellular matrix accumulation in mesangial cells. Li H, Wang D, Chen Y, Yang M. Int Immunopharmacol; 2020 Jul 31; 84():106556. PubMed ID: 32416450 [Abstract] [Full Text] [Related]
17. Over-production of nitric oxide by oxidative stress-induced activation of the TGF-β1/PI3K/Akt pathway in mesangial cells cultured in high glucose. Zhai YP, Lu Q, Liu YW, Cheng Q, Wei YQ, Zhang F, Li CL, Yin XX. Acta Pharmacol Sin; 2013 Apr 31; 34(4):507-14. PubMed ID: 23524565 [Abstract] [Full Text] [Related]
18. Resveratrol Attenuates the Cytotoxicity Induced by Amyloid-β1-42 in PC12 Cells by Upregulating Heme Oxygenase-1 via the PI3K/Akt/Nrf2 Pathway. Hui Y, Chengyong T, Cheng L, Haixia H, Yuanda Z, Weihua Y. Neurochem Res; 2018 Feb 31; 43(2):297-305. PubMed ID: 29090409 [Abstract] [Full Text] [Related]
19. Ginsenoside Rg1 attenuates the inflammation and oxidative stress induced by diabetic nephropathy through regulating the PI3K/AKT/FOXO3 pathway. Liu H, Chen W, Lu P, Ma Y, Liang X, Liu Y. Ann Transl Med; 2021 Dec 31; 9(24):1789. PubMed ID: 35071483 [Abstract] [Full Text] [Related]
20. Knockdown of CTRP6 inhibits high glucose-induced oxidative stress, inflammation and extracellular matrix accumulation in mesangial cells through regulating the Akt/NF-κB pathway. Xu E, Yin C, Yi X, Liu Y. Clin Exp Pharmacol Physiol; 2020 Jul 31; 47(7):1203-1211. PubMed ID: 32077518 [Abstract] [Full Text] [Related] Page: [Next] [New Search]