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Quercetin inhibited mesangial cell proliferation of early diabetic nephropathy through the Hippo pathway
Du Lei1, Li Chengcheng1, Qian Xuan1
1Jiangsu Key Laboratory of New Drug Research and Clinical Pharmacy, Xuzhou Medical University, China.
Abstract:
Diabetic nephropathy (DN) is one of the most common microvascular complications of diabetes and the leading cause of end-stage renal disease. The proliferation of glomerular mesangial cells (MCs) is a common and prominent pathological change of DN, which takes place at the early stage. Quercetin, a bioflavonoid compound, possesses therapeutic efficacy in cardiovascular and kidney diseases via anti-tumour, anti-oxidation, anti-virus, and anti-proliferation effects. However, the mechanism of quercetin in the proliferation of glomerular MCs in early DN has not been reported. In the present study, we investigated the effect of quercetin on the proliferation of glomerular MCs in high glucose-induced mouse glomerular MCs and in db/db mice. On this basis, we tried to clarify the specific mechanisms underlying these effects. The in vitro results showed that the proliferation of glomerular MCs was induced by high glucose, and the Hippo pathway was highly inactivated in high glucose-cultured MCs. Decreased phosphorylation of MST1 and Lats1 promoted expression and nuclear translocation of Yes-associated protein (YAP) and subsequently increased the combination of YAP and TEA/ATS domain (TEAD), which promoted the expression of the downstream target gene such as cyclinE. Quercetin effectively inhibited the high glucose-induced MC proliferation and reactivated the Hippo pathway. In vivo, the proliferation of glomerular MCs was increased, renal function was decreased, and blood fasting glucose was elevated in db/db mice. Furthermore, the Hippo pathway was inactivated in the renal cortex of db/db mice. Eight-week treatment of quercetin retarded MC proliferation, alleviated the renal function, and reactivated Hippo pathway in the renal cortex of db/db mice at 16 weeks. Our previous study clarified that the Hippo pathway was involved in MC proliferation of DN. The results revealed that quercetin inhibited MC proliferation in high glucose-treated mouse glomerular MCs and in DN via reactivation of the Hippo pathway.
Insights
Quercetin, a natural compound, effectively inhibits glomerular mesangial cell proliferation in diabetic nephropathy by reactivating the Hippo pathway. This study reveals quercetin
Area of Science:
- Nephrology
- Molecular Biology
- Pharmacology
Background:
- Diabetic nephropathy (DN) is a leading cause of end-stage renal disease.
- Glomerular mesangial cell (MC) proliferation is a key early pathological change in DN.
- The therapeutic mechanisms of quercetin in DN, particularly its effect on MC proliferation, remain unclear.
Purpose of the Study:
- To investigate the effect of quercetin on glomerular MC proliferation in early DN.
- To elucidate the underlying mechanisms of quercetin's action, focusing on the Hippo signaling pathway.
Main Methods:
- In vitro: High glucose-induced mouse glomerular MCs were treated with quercetin.
- In vivo: db/db mice (a model for type 2 diabetes) were treated with quercetin.
- Analysis of MC proliferation, renal function, blood glucose levels, and Hippo pathway components (MST1, Lats1, YAP, TEAD).
Main Results:
- High glucose induced MC proliferation and inactivated the Hippo pathway in vitro.
- Quercetin inhibited high glucose-induced MC proliferation and reactivated the Hippo pathway by promoting MST1/Lats1 phosphorylation and reducing YAP/TEAD interaction.
- In db/db mice, quercetin treatment reduced MC proliferation, improved renal function, and reactivated the Hippo pathway.
Conclusions:
- Quercetin effectively inhibits glomerular MC proliferation in diabetic nephropathy.
- The Hippo signaling pathway plays a crucial role in DN pathogenesis and is a key target for quercetin's therapeutic effects.
- Quercetin demonstrates potential as a therapeutic agent for managing diabetic nephropathy.
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