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Updated: Jan 1, 2026

Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Oxidative stress contributes to vascular calcification in patients with chronic kidney disease
Mei Huang1, Li Zheng2, Hui Xu1
1Division of Nephrology, Xiangya Hospital of the Central South University, Changsha, Hunan 410008, China; National Clinical Research Center for Geriatric Disorders, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China.
Insights
Oxidative stress, not high phosphorus, drives vascular calcification in early chronic kidney disease (CKD). Reducing oxidative stress may prevent this major CKD complication.
Area of Science:
- Nephrology
- Cardiovascular Biology
- Oxidative Stress Research
Background:
- Vascular calcification (VC) is a significant cause of mortality in chronic kidney disease (CKD) patients.
- While serum phosphorus is implicated, the role of oxidative stress (OS) in early CKD-associated VC is less understood.
Purpose of the Study:
- To investigate the role of oxidative stress in vascular calcification in early and advanced chronic kidney disease.
- To explore the underlying mechanisms involving vascular smooth muscle cell transition.
Main Methods:
- Utilized a rat model for stage 5 CKD (CKD5) and early CKD (ECKD).
- Assessed VC, OS markers, smooth muscle cell proteins (SM22α, calponin), and osteogenic markers (RUNX2, collagen I, NOX1) in VSMCs.
- Administered OS inhibitor (MnTMPyP) and NOX1 inhibitor (ML171).
- Exposed primary rat VSMCs to serum from CKD patients.
Main Results:
- CKD5 rats showed increased VC, OS, RUNX2, and collagen I, with decreased SM22α and calponin.
- OS inhibition reduced VC and VSMC changes without normalizing hyperphosphatemia.
- Serum from ECKD and CKD5 patients induced OS, VC, and osteogenic markers in VSMCs.
- Inhibitors of OS, NOX1, and Erk signaling reduced these induced changes.
Conclusions:
- Oxidative stress plays a critical role in promoting vascular calcification in CKD, even without hyperphosphatemia.
- VC development in CKD may involve OS-induced osteoblastic transition of VSMCs via Erk signaling.
- Targeting oxidative stress presents a potential therapeutic strategy to prevent VC in CKD patients.
Abstract:
Vascular calcification (VC) is a major cause of mortality in patients with chronic kidney disease (CKD). While elevations in serum phosphorus contribute to VC, we provide evidence here for a major role of oxidative stress (OS) in VC pathogenesis without an apparent increase in serum phosphorus in early CKD. In a rat model for stage 5 CKD (CKD5), we observed 1) robust increases of VC and OS, 2) significant reductions of smooth muscle 22 alpha (SM22α) and calponin, and 3) upregulations in Runt-related transcription factor 2 (RUNX2) and collagen I in vascular smooth muscle cells (VSMCs). Inhibition of OS using MnTMPyP dramatically reduced these events without normalization of hyperphosphatemia. In CKD5 patients with VC (n = 11) but not in those without VC (n = 13), OS was significantly elevated. While the serum levels of calcium and phosphate were not altered in the animal model for early stage CKD (ECKD), OS, VC, SM22α, calponin, RUNX2, collagen I and NADPH oxidase 1 (NOX1) in VSMCs were all significantly changed. More importantly, serum (5%) derived from patients with ECKD (n = 30) or CKD5 (n = 30) induced SM22α and calponin downregulation, and RUNX2, collagen I, NOX1 upregulation along with a robust elevation of OS and calcium deposition in primary rat VSMCs. These alterations were all reduced by MnTMPyP, ML171 (a NOX1 inhibitor), and U0126 (an inhibitor of Erk signaling). Collectively, we provide a comprehensive set of evidence supporting an important role of OS in promoting VC development in CKD patients (particularly in those with ECKD); this was at least in part through induction of osteoblastic transition in VSMCs which may involve the Erk singling. Our research thus suggests that reductions in OS may prevent VC in CKD patients.
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