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Updated: Jul 23, 2025

Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Epimeric vitamin D and cardiovascular structure and function in advanced CKD and after kidney transplantation
Eliott Arroyo1, Cecilia A Leber1,2, Heather N Burney3
1Division of Nephrology & Hypertension, Department of Medicine, Indiana University School of Medicine, Indianapolis, IN, USA.
Insights
Levels of 3-epi-25(OH)D3, a vitamin D metabolite, are linked to cardiovascular function in chronic kidney disease (CKD) patients. Higher levels correlate with better exercise capacity, suggesting a role in CKD cardiovascular health.
Area of Science:
- Endocrinology
- Nephrology
- Cardiology
Background:
- 25-hydroxyvitamin D can epimerize to 3-epi-25(OH)D3.
- 3-epi-25(OH)D3 levels decrease in chronic kidney disease (CKD).
- The role of 3-epi-25(OH)D3 in cardiovascular regulation is not well understood.
Purpose of the Study:
- To investigate the association between 3-epi-25(OH)D3 levels and cardiovascular functional and structural parameters in CKD patients.
- To explore the relationship between 3-epi-25(OH)D3 and exercise capacity, cardiac structure, and arterial stiffness.
Main Methods:
- Study included 165 advanced CKD patients from the CAPER cohort (kidney transplant recipients and non-transplant waitlisted patients).
- Cardiopulmonary exercise testing and echocardiography were performed at baseline, 2 months, and 12 months.
- Serum 3-epi-25(OH)D3 was quantified using liquid chromatography-tandem mass spectrometry.
Main Results:
- Patients in the lowest quartile of 3-epi-25(OH)D3 had significantly lower peak oxygen uptake (VO2Peak) compared to the highest quartile.
- Longitudinal analysis revealed that serum 3-epi-25(OH)D3 levels were positively associated with VO2Peak in both kidney transplant recipients and non-transplant waitlisted patients.
- No significant associations were found between 3-epi-25(OH)D3 and left ventricular mass or arterial stiffness.
- Non-epimeric 25(OH)D3 and 24,25(OH)2D3 were not associated with any cardiovascular outcomes.
Conclusions:
- Changes in 3-epi-25(OH)D3 levels may play a role in regulating cardiovascular functional capacity in patients with advanced CKD.
- 3-epi-25(OH)D3 may be a potential biomarker for cardiovascular health in CKD patients.
Background:
25-hydroxyvitamin D can undergo C-3 epimerization to produce 3-epi-25(OH)D3. 3-epi-25(OH)D3 levels decline in chronic kidney disease (CKD), but its role in regulating the cardiovascular system is unknown. Herein, we examined the relationship between 3-epi-25(OH)D3, and cardiovascular functional and structural endpoints in patients with CKD.
Methods:
We examined n = 165 patients with advanced CKD from the Cardiopulmonary Exercise Testing in Renal Failure and After Kidney Transplantation (CAPER) study cohort, including those who underwent kidney transplant (KTR, n = 76) and waitlisted patients who did not (NTWC, n = 89). All patients underwent cardiopulmonary exercise testing and echocardiography at baseline, 2 months and 12 months. Serum 3-epi-25(OH)D3 was analyzed by liquid chromatography-tandem mass spectrometry.
Results:
Patients were stratified into quartiles of baseline 3-epi-25(OH)D3 (Q1: <0.4 ng/mL, n = 51; Q2: 0.4 ng/mL, n = 26; Q3: 0.5-0.7 ng/mL, n = 47; Q4: ≥0.8 ng/mL, n = 41). Patients in Q1 exhibited lower peak oxygen uptake [VO2Peak = 18.4 (16.2-20.8) mL/min/kg] compared with Q4 [20.8 (18.6-23.2) mL/min/kg; P = .009]. Linear mixed regression model showed that 3-epi-25(OH)D3 levels increased in KTR [from 0.47 (0.30) ng/mL to 0.90 (0.45) ng/mL] and declined in NTWC [from 0.61 (0.32) ng/mL to 0.45 (0.29) ng/mL; P < .001]. Serum 3-epi-25(OH)D3 was associated with VO2Peak longitudinally in both groups [KTR: β (standard error) = 2.53 (0.56), P < .001; NTWC: 2.73 (0.70), P < .001], but was not with left ventricular mass or arterial stiffness. Non-epimeric 25(OH)D3, 24,25(OH)2D3 and the 25(OH)D3:24,25(OH)2D3 ratio were not associated with any cardiovascular outcome (all P > .05).
Conclusions:
Changes in 3-epi-25(OH)D3 levels may regulate cardiovascular functional capacity in patients with advanced CKD.
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