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Updated: Oct 2, 2025

Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Aortic Stiffness and Pulsatile Pressures as Potential Mediators of Chronic Kidney Disease Induced Impaired Diastolic
Hon-Chun Hsu1,2, Grace Tade1, Gavin R Norton1
1Cardiovascular Pathophysiology and Genomics Research Unit, School of Physiology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.
Insights
Aortic stiffness mediates impaired diastolic function in chronic kidney disease (CKD) patients by affecting left ventricular active relaxation. Pulsatile pressures contribute to filling pressures but do not fully explain CKD-related diastolic dysfunction.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Biomedical Engineering
Background:
- Chronic kidney disease (CKD) is associated with cardiovascular complications, including impaired diastolic function.
- Aortic stiffness and pulsatile pressures are implicated in cardiovascular disease progression.
Purpose of the Study:
- To investigate whether aortic stiffness and pulsatile pressures mediate diastolic dysfunction in individuals with CKD.
- To differentiate the roles of aortic stiffness versus pulsatile pressures in CKD-associated diastolic dysfunction.
Main Methods:
- A study of 276 Black Africans (46 with CKD, 230 controls) using applanation tonometry to measure pulse wave velocity (PWV) for aortic stiffness and pulsatile pressures (CSBP, CPP).
- Echocardiography was used to assess left ventricular active relaxation (e') and filling pressures (E/e').
- Regression and mediation analyses were performed to determine the relationship between CKD, aortic function, and diastolic parameters.
Main Results:
- CKD was inversely associated with e' and directly associated with E/e'.
- Aortic stiffness (PWV) significantly mediated the relationship between CKD and impaired active relaxation (e').
- Pulsatile pressures (CSBP, CPP) contributed to CKD-related left ventricular filling pressures (E/e'), but CKD remained associated with E/e' independent of aortic function.
Conclusions:
- Aortic stiffness, not pulsatile pressures, mediates impaired left ventricular active relaxation in CKD.
- Pulsatile pressures contribute to, but do not fully explain, CKD-related increases in left ventricular filling pressures.
- Diastolic dysfunction in CKD is multifactorial, involving both aortic properties and other factors like mean arterial pressure and diabetes.
Purpose:
We assessed whether aortic stiffness and pulsatile pressures can mediate chronic kidney disease (CKD)-associated impaired diastolic function.
Participants And Methods:
In 276 black Africans including 46 CKD (19 non-dialysis; 27 dialysis) and 230 control subjects, pulse wave velocity (PWV) estimated aortic stiffness and pulsatile pressures (forward and backward wave pressure, central systolic blood pressure (CSBP) and pulse pressure (CPP)) were determined by applanation tonometry; e' as an index of left ventricular active relaxation and E/e' as a measure of left ventricular filling pressure or passive relaxation were evaluated by echocardiography.
Results:
In age, sex, traditional cardiovascular risk factor and mean arterial pressure (MAP) adjusted regression models, CKD was inversely associated with e' (p = 0.03) and directly with E/e' (p < 0.01). The CKD-e' relationship was attenuated and no longer significant (p = 0.31) upon additional adjustment for aortic PWV but not pulsatile pressures (p = 0.03-0.05). In product of coefficient mediation analysis, PWV accounted for 47.6% of the CKD-e' association. CSBP (22.9%) and CPP (18.6%) but not PWV (11.3%) accounted for a significant and relevant proportion of the CKD-E/e' relationship. However, CKD remained strongly associated with E/e' independent of aortic function measures (p < 0.01). Treatable covariates that were or tended to be consistently associated with diastolic function included MAP (p < 0.01) and diabetes (p = 0.02-0.07) for the CKD-e' and CKD-E/e' relations, respectively.
Conclusion:
Aortic stiffness rather than pulsatile pressures mediates CKD-related impaired left ventricular active relaxation. By contrast, aortic pulsatile pressures (and not stiffness) contribute to CKD-related left ventricular filling pressures but do not fully account for the respective association.
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