» Articles » PMID: 28566504

Apigenin Ameliorates Streptozotocin-induced Diabetic Nephropathy in Rats Via MAPK-NF-κB-TNF-α and TGF-β1-MAPK-fibronectin Pathways

Overview
Specialties Nephrology
Physiology
Date 2017 Jun 2
PMID 28566504
Citations 93
Authors
Affiliations
Soon will be listed here.
Abstract

Diabetic nephropathy (DN), a microvascular complication of diabetes, has emerged as an important health problem worldwide. There is strong evidence to suggest that oxidative stress, inflammation, and fibrosis play a pivotal role in the progression of DN. Apigenin has been shown to possess antioxidant, anti-inflammatory, antiapoptotic, antifibrotic, as well as antidiabetic properties. Hence, we evaluated whether apigenin halts the development and progression of DN in streptozotocin (STZ)-induced diabetic rats. Male albino Wistar rats were divided into control, diabetic control, and apigenin treatment groups (5-20 mg/kg po, respectively), apigenin per se (20 mg/kg po), and ramipril treatment group (2 mg/kg po). A single injection of STZ (55 mg/kg ip) was administered to all of the groups except control and per se groups to induce type 1 diabetes mellitus. Rats with fasting blood glucose >250 mg/dl were included in the study and randomized to different groups. Thereafter, the protocol was continued for 8 mo in all of the groups. Apigenin (20 mg/kg) treatment attenuated renal dysfunction, oxidative stress, and fibrosis (decreased transforming growth factor-β1, fibronectin, and type IV collagen) in the diabetic rats. It also significantly prevented MAPK activation, which inhibited inflammation (reduced TNF-α, IL-6, and NF-κB expression) and apoptosis (increased expression of Bcl-2 and decreased Bax and caspase-3). Furthermore, histopathological examination demonstrated reduced inflammation, collagen deposition, and glomerulosclerosis in the renal tissue. In addition, all of these changes were comparable with those produced by ramipril. Hence, apigenin ameliorated renal damage due to DN by suppressing oxidative stress and fibrosis and by inhibiting MAPK pathway.

Citing Articles

Efficacy and potential pharmacological mechanism of combination in diabetic nephropathy: integrating meta-analysis, network pharmacology, molecular docking, and experimental validation.

Liang H, Chen Z, Zhu M, Zhong J, Lin S, Chen J Ren Fail. 2025; 47(1):2466116.

PMID: 40015687 PMC: 11869347. DOI: 10.1080/0886022X.2025.2466116.


Apple Polyphenol Mitigates Diabetic Nephropathy via Attenuating Renal Dysfunction with Antioxidation in Streptozotocin-Induced Diabetic Rats.

Wang C, Wu D, Yu M, Wang C, Liang H, Lee H Antioxidants (Basel). 2025; 14(2).

PMID: 40002316 PMC: 11852212. DOI: 10.3390/antiox14020130.


Inhibition of SLC3A2 Deletion-Mediated Ferroptosis by Bone Marrow Stromal Cells to Alleviate Inflammation and Fibrosis in Diabetic Kidney Disease.

Fan Y, Li Y, Huang L, Yang J, Hou Y, Bai Y Inflammation. 2025; .

PMID: 39960657 DOI: 10.1007/s10753-025-02261-0.


Yiqi Juanshen decoction alleviates renal interstitial fibrosis by targeting the LOXL2/PI3K/AKT pathway to suppress EMT and inflammation.

Tan K, Deng J, Liu Y, Zhang Y, Xiong Y, Yuan S Sci Rep. 2025; 15(1):4248.

PMID: 39905060 PMC: 11794949. DOI: 10.1038/s41598-025-86622-7.


FSTL1 aggravates high glucose-induced oxidative stress and transdifferentiation in HK-2 cells.

Zhang B, Geng H, Zhao K, Omorou M, Liu S, Ye Z Sci Rep. 2025; 15(1):434.

PMID: 39748077 PMC: 11696259. DOI: 10.1038/s41598-024-84462-5.