Ellagic acid inhibits high glucose‑induced injury in rat mesangial cells via the PI3K/Akt/FOXO3a signaling pathway

The pathological damage of mesangial cells serves an important role in the occurrence and development of diabetic nephropathy. Ellagic acidhas beenreported to possess antioxidant, antitumor, antiviral and anti-inflammatory properties in several diseases, but the roles of ellagic acid in diabetic nep...

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Veröffentlicht in:Experimental and therapeutic medicine 2021-09, Vol.22 (3), Article 1017
Hauptverfasser: Lin, Wei, Liu, Guojian, Kang, Xiaowen, Guo, Ping, Shang, Yu, Du, Ruomei, Wang, Xiyue, Chen, Liting, Yue, Rui, Kong, Fanwu, Zhu, Qihan
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Sprache:eng
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Zusammenfassung:The pathological damage of mesangial cells serves an important role in the occurrence and development of diabetic nephropathy. Ellagic acidhas beenreported to possess antioxidant, antitumor, antiviral and anti-inflammatory properties in several diseases, but the roles of ellagic acid in diabetic nephropathy are unclear. The main aim of the present study was to investigate the effect of ellagic acid on high glucose-induced mesangial cell damage. The results revealed that high glucose could induce the hyperproliferation of mesangial cells, decrease the activity of superoxide dismutase, increase the malondialdehyde content, the level of reactive oxygen species, the secretion of inflammatory factors (TNF-[alpha], IL-1[beta] and IL-6) and the synthesis of extracellular matrix (Fibronectin, MMP-9 and TIMP-1) and activate the PI3K/Akt/FOXO3a signaling pathway. Ellagic acid could attenuate the injury of mesangial cells induced by high glucose in a concentration-dependent manner and its effect was consistent with that of a PI3K inhibitor (LY294002). Moreover, a PI3K agonist (740Y-P) reversed the protective effect of ellagic acid on mesangial cells induced by high glucose. In conclusion, ellagic acid protected mesangial cells from high glucose-induced injury in a concentration-dependent manner. The mechanism may be associated with ellagic acid inhibiting the activation of the PI3K/Akt signaling pathway and reducing the expression levels of downstream transcription factor FOXO3a. Key words: ellagic acid, mesangial cells, diabetic nephropathy, PI3K/Akt, FOXO3a
ISSN:1792-0981
1792-1015
DOI:10.3892/etm.2021.10449