Hydroxycitric acid prevents hyperoxaluric-induced nephrolithiasis and oxidative stress via activation of the Nrf2/Keap1 signaling pathway

B Yang, G Wang, Y Li, T Yang, H Guo, P Li, J Li - Cell Cycle, 2023 - Taylor & Francis
Nephrolithiasis is a common and frequently-occurring disease in the urinary system with
high recurrence. The present study aimed to explore the protective effect and underlying …

Hyperoside ameliorates renal tubular oxidative damage and calcium oxalate deposition in rats through AMPK/Nrf2 Signaling Axis

H Tian, Q Liang, Z Shi, H Zhao - Journal of the Renin …, 2023 - journals.sagepub.com
Background. Nephrolithiasis is a common disease that seriously affects the health and life
quality of patients. Despite the reported effect of hyperoside (Hyp) against nephrolithiasis …

Hydroxycitric acid inhibits renal calcium oxalate deposition by reducing oxidative stress and inflammation

X Liu, P Yuan, X Sun, Z Chen - Current molecular medicine, 2020 - ingentaconnect.com
Objective: The study aimed to evaluate the preventive effects of hydroxycitric acid (HCA) for
stone formation in the glyoxylate-induced mouse model. Materials and Methods: Male …

Gallic acid ameliorates calcium oxalate crystal-induced renal injury via upregulation of Nrf2/HO-1 in the mouse model of stone formation

D Zhou, Y Wu, H Yan, T Shen, S Li, J Gong, G Li, H Mai… - Phytomedicine, 2022 - Elsevier
Background High prevalence and reoccurrence rate of nephrolithiasis bring about serious
socioeconomic and healthcare burden, necessitating the need of effective therapeutic …

[HTML][HTML] Hydroxycitric acid inhibits kidney stone through crystallization regulation and reduction of hyperoxalate-induced lipotoxicity

YH Zhang, JY Xian, SJ Li, CY Li, BX Yu, Q Liang… - Journal of Functional …, 2023 - Elsevier
Kidney stone is a urinary system disease with a high incidence, and effective stone drugs
are limited. Hydroxycitric acid (HCA), mainly found in Garcinia cambogia and Hibiscus …

Efficacy of chlorogenic acid against ethylene glycol-induced renal stone model: The role of NFKB-RUNX2-AP1-OSTERIX signaling pathway

K Hoseinynejad, SA Mard, Z Mansouri, Z Lamoochi… - Tissue and Cell, 2022 - Elsevier
Background and objective Renal tissue injuries by free radicals are an essential reason in
pathogenesis of urinary tract stones. Ethylene glycol is one of the toxic agents which can …

Losartan ameliorates calcium oxalate‐induced elevation of stone‐related proteins in renal tubular cells by inhibiting NADPH oxidase and oxidative stress

B Qin, Q Wang, Y Lu, C Li, H Hu… - Oxidative Medicine …, 2018 - Wiley Online Library
Calcium oxalate (CaOx) is the most common type of urinary stone. Increase of ROS and
NADPH oxidase gives rise to inflammation and injury of renal tubular cells, which promotes …

Trimethylamine N-oxide promotes hyperoxaluria-induced calcium oxalate deposition and kidney injury by activating autophagy

F Dong, S Jiang, C Tang, X Wang, X Ren, Q Wei… - Free Radical Biology …, 2022 - Elsevier
Calcium oxalate (CaOx) is the most common component of kidney stones. Oxidative stress,
inflammation and autophagy-induced cell death are the major causes of CaOx crystal …

Dynamic change and preventive role of stress response via Keap1-Nrf2 during renal crystal formation

C Ushimoto, S Sugiki, K Kunii, S Inoue… - Free Radical Biology …, 2023 - Elsevier
Oxidative stress is a major risk factor for calcium oxalate nephrolithiasis. Reports suggest
that oxidative stress response is induced in animals and humans with kidney stones. Keap1 …

Protective effect of pentoxifylline on oxidative renal cell injury associated with renal crystal formation in a hyperoxaluric rat model

H Ozturk, A Cetinkaya, TS Firat, BK Tekce, SE Duzcu… - Urolithiasis, 2019 - Springer
The aim of the study is to investigate the effects of pentoxifylline (PTX) on the renal tubular
cell injury and stone formation in a hyperoxaluric rat model induced by ethylene glycol and …