Hyperoxalemia Leads to Oxidative Stress in Endothelial Cells and Mice with Chronic Kidney Disease.


Journal

Kidney & blood pressure research
ISSN: 1423-0143
Titre abrégé: Kidney Blood Press Res
Pays: Switzerland
ID NLM: 9610505

Informations de publication

Date de publication:
2021
Historique:
received: 01 12 2020
accepted: 19 03 2021
pubmed: 28 5 2021
medline: 17 7 2021
entrez: 27 5 2021
Statut: ppublish

Résumé

Cardiovascular disease is the most common cause of morbidity and mortality in patients with ESRD. In addition to phosphate overload, oxalate, a common uremic toxin, is also involved in vascular calcification in patients with ESRD. The present study investigated the role and mechanism of hyperoxalemia in vascular calcification in mice with uremia. A uremic atherosclerosis (UA) model was established by left renal excision and right renal electrocoagulation in apoE-/- mice to investigate the relationship between oxalate loading and vascular calcification. After 12 weeks, serum and vascular levels of oxalate, vascular calcification, inflammatory factors (TNF-α and IL-6), oxidative stress markers (malondialdehyde [MDA], and advanced oxidation protein products [AOPP]) were assessed in UA mice. The oral oxalate-degrading microbe Oxalobacter formigenes (O. formigenes) was used to evaluate the effect of a reduction in oxalate levels on vascular calcification. The mechanism underlying the effect of oxalate loading on vascular calcification was assessed in cultured human aortic endothelial cells (HAECs) and human aortic smooth muscle cells (HASMCs). Serum oxalate levels were significantly increased in UA mice. Compared to the control mice, UA mice developed more areas of aortic calcification and showed significant increases in aortic oxalate levels and serum levels of oxidative stress markers and inflammatory factors. The correlation analysis showed that serum oxalate levels were positively correlated with the vascular oxalate levels and serum MDA, AOPP, and TNF-α levels, and negatively correlated with superoxide dismutase activity. The O. formigenes intervention decreased serum and vascular oxalate levels, while did not improve vascular calcification significantly. In addition, systemic inflammation and oxidative stress were also improved in the O. formigenes group. In vitro, high concentrations of oxalate dose-dependently increased oxidative stress and inflammatory factor expression in HAECs, but not in HASMCs. Our results indicated that hyperoxalemia led to the systemic inflammation and the activation of oxidative stress. The reduction in oxalate levels by O. formigenes might be a promising treatment for the prevention of oxalate deposition in calcified areas of patients with ESRD.

Identifiants

pubmed: 34044409
pii: 000516013
doi: 10.1159/000516013
doi:

Substances chimiques

Oxalates 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

377-386

Informations de copyright

© 2021 The Author(s). Published by S. Karger AG, Basel.

Auteurs

Ke Sun (K)

Kidney Institute, Department of Nephrology, Changzheng Hospital, Naval Medical University, Shanghai, China.

Xiaojing Tang (X)

Kidney Institute, Department of Nephrology, Changzheng Hospital, Naval Medical University, Shanghai, China.

Shuwei Song (S)

Kidney Institute, Department of Nephrology, Changzheng Hospital, Naval Medical University, Shanghai, China.

Yuan Gao (Y)

Pharmaceutical R&D Center of SPH Sine Pharmaceutical, Laboratories Co., Ltd., Shanghai Engineering Research Center of Innovative Probiotic Drugs, Shanghai, China.

Hongjing Yu (H)

Pharmaceutical R&D Center of SPH Sine Pharmaceutical, Laboratories Co., Ltd., Shanghai Engineering Research Center of Innovative Probiotic Drugs, Shanghai, China.

Ningyun Sun (N)

Pharmaceutical R&D Center of SPH Sine Pharmaceutical, Laboratories Co., Ltd., Shanghai Engineering Research Center of Innovative Probiotic Drugs, Shanghai, China.

Bin Wen (B)

Pharmaceutical R&D Center of SPH Sine Pharmaceutical, Laboratories Co., Ltd., Shanghai Engineering Research Center of Innovative Probiotic Drugs, Shanghai, China.

Changlin Mei (C)

Kidney Institute, Department of Nephrology, Changzheng Hospital, Naval Medical University, Shanghai, China.

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Classifications MeSH