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Updated: Jan 7, 2026

Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Exploring the association between pulse wave velocity and CKD progression: a longitudinal study in Mashhad, Iran
Susan Darroudi1, Naiemeh Varasteh1, Hayder Taha Yaseen2
1Vascular and Endovascular Surgery Research Center, Mashhad University of medical sciences, Mashhad, 99199-91766, Iran.
Insights
Arterial stiffness, measured by pulse wave velocity (PWV), is a significant indicator of declining kidney function. Increased PWV correlates with reduced estimated glomerular filtration rate (eGFR), highlighting its role in chronic kidney disease progression.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Vascular Biology
Background:
- Arterial stiffness is an emerging vascular risk factor for renal failure.
- Non-invasive assessment of arterial stiffness offers a novel approach to understanding kidney disease.
- The relationship between arterial stiffness and chronic kidney disease (CKD) requires further investigation.
Purpose of the Study:
- To evaluate the correlation between non-invasive arterial stiffness measures and diminished glomerular filtration rate (GFR).
- To investigate the association between arterial stiffness markers and different stages of chronic kidney disease (CKD).
Main Methods:
- A cohort study of 787 participants (aged 35-65) from the MASHAD study in Iran.
- Assessment of arterial stiffness using pulse wave velocity (PWV), central augmentation index (CAI), and central aortic pressure (CAP).
- Participants were categorized into four groups based on estimated GFR (eGFR) levels.
Main Results:
- Pulse wave velocity (PWV) significantly increased as estimated GFR (eGFR) decreased, particularly in the lowest eGFR group (Group 4).
- A significant correlation was found between higher PWV and advanced CKD stages (Group 4).
- Each unit increase in PWV was associated with a 41.8% decline in eGFR after adjustment.
Conclusions:
- Arterial stiffness, specifically PWV, is a significant marker of deteriorating kidney function.
- PWV is independently associated with reduced eGFR, underscoring its role in CKD.
- Further research into the mechanisms linking arterial stiffness and impaired kidney function is recommended.
Abstract:
This research is distinctive in its emphasis on non-invasive arterial stiffness as a critical vascular risk factor for renal failure. Our objective was to evaluate this correlation through both invasive and non-invasive techniques, representing an innovative strategy in the discipline. The study took place in Mashhad, Iran, and was specifically designed to investigate the association between diminished glomerular filtration rate (GFR) and arterial stiffness. We performed an extensive analysis involving 787 participants aged between 35 and 65, who were randomly selected from the Mashhad Stroke and Heart Atherosclerotic Disorder (MASHAD) cohort study. We carefully documented the baseline characteristics of these participants, which encompassed demographic information, biochemical and hematological markers, as well as measurements of systolic and diastolic blood pressure, and indicators of arterial stiffness, including pulse wave velocity (PWV), central augmentation index (CAI), and central aortic pressure (CAP). The participants were categorized into four groups according to their serum creatinine and estimated GFR-MDRD levels: Group 1 (GFR: 60-89), Group 2 (GFR: 45-59), Group 3 (GFR: 30-44), and Group 4 (GFR: 15-29) based on clinical practice guidelines for chronic kidney disease. The velocity of pulse waves exhibited a notable increase as the estimated GFR decreased, reaching its peak in Group 4 (9.92 ± 4.29 m/s) and its lowest point in Group 2 (6.9 ± 2.35 m/s) (P < 0.05). No significant variations were detected in CAP, CAI, and GFR across the study groups. Two analytical models were employed to evaluate the relationship between arterial stiffness markers and different stages of chronic kidney disease (CKD). The first model (unadjusted data) revealed a significant correlation between Group 3b and CAP (P = 0.034), as well as between Group 4 and PWV (P = 0.021). In the second model (adjusted for sex, age, hypertension, and diabetes), a significant correlation persisted between Group 4 and PWV (P = 0.049). The results of this research highlight the importance of arterial stiffness as a marker of deteriorating kidney function. The study concluded that PWV is associated with a reduction in eGFR, indicating that each unit rise in PWV corresponds to a 41.8% decline in eGFR. It is advisable for subsequent research to investigate the mechanisms that link arterial stiffness to impaired kidney function.
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Chronic Kidney Disease I: Introduction
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Drug Dosing in Renal Diseases: Estimation of Glomerular Filtration Rate Based on Serum Creatinine Concentration
Chronic Kidney Disease III: Interprofessional Care
Chronic Kidney Disease IV: Nursing Management
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