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Francis Verbeke, Wim Van Biesen, Patrick Peeters, Luc M. Van Bortel, Raymond C. Vanholder, Arterial stiffness and wave reflections in renal transplant recipients, Nephrology Dialysis Transplantation, Volume 22, Issue 10, October 2007, Pages 3021–3027, https://doi.org/10.1093/ndt/gfm379
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Abstract
Background. Arterial stiffness predicts cardiovascular disease (CVD) events and has been well documented in haemodialysis patients. Information in renal transplant recipients (RTR), however, remains limited despite their higher CVD risk compared to the general population. We aimed to assess arterial stiffening and wave reflections in RTR and healthy controls and to evaluate which factors could explain potential differences.
Methods. Carotid augmentation index (AI) and carotid-femoral pulse wave velocity (PWV) were measured in 200 RTR and 44 controls using applanation tonometry. The impact of traditional and non-traditional CVD risk factors was assessed using linear regression analysis. Glomerular filtration rate (GFR) was measured by 51Cr-EDTA (RTR) and estimated using the abbreviated Modification of Diet in Renal Disease formula (RTR and controls).
Results. After correction for age, blood pressure and anthropometry, AI and PWV remained 7.4 ± 3.6% (P = 0.04) and 0.7 ± 0.3 m/s (P = 0.01) higher in RTR than controls, corresponding to a difference in vascular age of >10 years. In multivariate analysis, additional independent factors related to AI and PWV were GFR (–1.8% and –0.19 m/s per 10 ml/min) and C-reactive protein (3.2% and 0.21 m/s per logarithm increase).
Conclusions. Increased arterial stiffness and wave reflections in RTR are attributable to incomplete restoration of GFR and the presence of subclinical inflammation.
- hemodialysis
- kidney diseases
- cardiovascular diseases
- renal transplantation
- heart disease risk factors
- inflammation
- blood pressure
- diet
- glomerular filtration rate
- anthropometry
- edetic acid
- c-reactive protein
- edetate disodium
- arterial stiffness
- applanation tonometry
- linear regression
- pulse wave velocity
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