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Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Relationship Between Carotid Atherosclerosis and Pulse Pressure with Renal Hemodynamics in Hypertensive Patients
Giulio Geraci1, Giuseppe Mulè2, Giuseppa Costanza2
1Dipartimento Biomedico di Medicina Interna e Specialistica (DIBIMIS), Unit of Nephrology and Hypertension, European Society of Hypertension Excellence Center, University of Palermo, Palermo, Italy. giulio.geraci@unipa.it.
Insights
In hypertensive patients, renal resistance index (RRI) reflects systemic vascular changes. Carotid intima-media thickness (cIMT) and clinic pulse pressure (PP) are independently associated with intrarenal hemodynamics.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Vascular Biology
Background:
- Arterial stiffness, pulse pressure, and renal hemodynamics are interconnected in hypertension.
- Renal resistance index (RRI) is a key indicator of systemic vascular alterations.
- Understanding these relationships is crucial for managing hypertensive patients.
Purpose of the Study:
- To evaluate the independent associations of carotid intima-media thickness (cIMT), aortic pulse wave velocity (aPWV), and peripheral pulse pressure (PP) with RRI.
- To investigate these relationships across varying degrees of renal function in hypertensive individuals.
Main Methods:
- 463 hypertensive patients (30-70 years) were categorized by renal function.
- Ultrasonography assessed carotid and intrarenal vasculature.
- 24-hour ambulatory blood pressure monitoring was performed.
Main Results:
- RRI, cIMT, aPWV, and clinic PP differed significantly across groups.
- RRI showed significant correlations with cIMT, aPWV, and clinic/24-h PP.
- Associations between RRI, cIMT, and clinic PP remained significant after adjustments; RRI-aPWV link was not.
Conclusions:
- Carotid intima-media thickness and clinic pulse pressure, not aortic pulse wave velocity, are linked to intrarenal hemodynamics.
- Renal resistance index serves as a marker for intrarenal circulation issues and systemic vascular changes in hypertensives.
- These findings hold true irrespective of the patient's renal function level.
Background:
Structural atherosclerotic damage, arterial stiffness, pulse pressure (PP), and renal hemodynamics may interact and influence each other. Renal resistance index (RRI) appears as a good indicator of systemic vascular changes. The aim of our study was to assess the independent relationships of carotid intima-media thickness (cIMT), aortic pulse wave velocity (aPWV), and peripheral PP with RRI in hypertensives with various degrees of renal function.
Methods:
We enrolled 463 hypertensive patients (30-70 years) with normal renal function (group 0; n = 280) and with chronic kidney disease (groups I-V; n = 183). All subjects underwent ultrasonographic examination of intrarenal and carotid vasculature, as well as a 24-h ambulatory blood pressure monitoring.
Results:
A statistically significant difference in RRI, cIMT, aPWV, and clinic PP was observed in the different 6 groups (all P < 0.001), even after adjustment for age. RRI correlated with cIMT (r = 0.460, P < 0.001), aPWV (r = 0.386, P < 0.001), clinic PP (r = 0.279, P < 0.001), and 24-h PP (r = 0.229, P < 0.001) in the entire study population. These correlations were similar in subjects with and without renal dysfunction. In the overall study population, the association between RRI, cIMT, and clinic PP remained statistically significant even after adjustment for various confounding factors, whereas the relationship between RRI and aPWV was lost in multivariate analysis.
Conclusions:
cIMT and clinic PP rather than directly aPWV are associated with intrarenal hemodynamics. Our results confirm that in hypertensives RRI not only detects derangement of intrarenal circulation but may also be considered as a sensor of systemic vascular changes, independently of level of renal function.
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