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Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Arterial Stiffness: A Novel Risk Factor for Kidney Injury Progression?
Panagiotis I Georgianos1, Pantelis A Sarafidis2, Vassilios Liakopoulos3
1Section of Nephrology and Hypertension, 1st Department of Medicine, AHEPA Hospital, Aristotle University of Thessaloniki, Thessaloniki, Greece; pangeorgi@yahoo.gr.
Insights
Increased arterial stiffness, common in chronic kidney disease (CKD), damages renal microvasculature. This vascular remodeling accelerates kidney function decline and progression to end-stage renal disease.
Area of Science:
- Nephrology
- Cardiology
- Vascular Biology
Background:
- Arterial stiffness is a hallmark of vascular remodeling in chronic kidney disease (CKD).
- Elevated arterial stiffness contributes to cardiovascular complications like hypertension and heart failure.
- The impact of arterial stiffness on microcirculation, particularly in the kidneys, is increasingly recognized.
Purpose of the Study:
- To explore the link between arterial stiffness and kidney disease progression.
- To elucidate the mechanisms by which arterial stiffness affects renal microcirculation.
- To review clinical evidence connecting arterial stiffness to CKD progression.
Main Methods:
- Review of recent studies on arterial stiffness and CKD.
- Analysis of evidence linking macrocirculation and renal microcirculation.
- Examination of prospective observational data on aortic compliance and renal function.
Main Results:
- Arterial stiffness increases pulsatility and resistance in renal microvasculature, causing arteriolar damage.
- Reduced aortic compliance is an independent predictor of renal function decline in CKD patients.
- Systemic pulsatile pressure can damage susceptible organs, including the kidneys.
Conclusions:
- Arterial stiffness plays a critical role in the progression of chronic kidney disease.
- Damage to renal microvasculature by elevated pulsatile pressure contributes to kidney injury.
- Targeting arterial stiffness may be a strategy to slow CKD progression.
Abstract:
Arterial stiffness is typical feature of vascular remodeling in chronic kidney disease (CKD). Increased arterial stiffness raises flow and pressure pulsatility and is considered the principle pathogenic mechanism of isolated systolic hypertension, left ventricular hypertrophy, and congestive heart failure. Apart from the impact of arterial stiffness on left ventricular afterload, downstream transmission of pressure pulsatility to the level of microcirculation is suggested to promote injury of other susceptible organs. This may be of particular importance for kidney injury progression, since passive renal perfusion along with low resistance and input impedance in renal microvessels make kidneys particularly vulnerable to the damaging effect of systemic pulsatile pressure. Recent studies have provided evidence that arterial stiffness culminates in elevated pulsatility and resistance in renal microvasculature, promoting structural damage of small intra-renal arterioles. Further, prospective observational studies have shown that reduced aortic compliance is closely associated with the annual rate of renal function decline and represents independent predictor of kidney injury progression to end-stage renal disease among patients with CKD. This article provides insights into the cross-talk between macrocirculation and renal microcirculation and summarizes the currently available clinical evidence linking increased arterial stiffness with kidney disease progression.
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