Related Experiment Video
Updated: Jun 13, 2026

Multilevel Microdissection and Functional-Structural Profiling of Human Renal Arterial Branches
Published on: September 5, 2025
Large arteries and the kidney
Michel E Safar1, Tewfik Nawar, Gérard E Plante
1Faculty of Medicine, Paris Descartes University, Paris, France; Diagnosis Center, Hôtel-Dieu Hospital (AP-HP), Paris, France.
Insights
High systolic blood pressure (SBP) is a key cardiovascular risk factor in chronic kidney disease. Increased arterial stiffness contributes to SBP and kidney damage, potentially leading to renal failure.
Area of Science:
- Nephrology
- Cardiology
- Vascular Biology
Background:
- High systolic blood pressure (SBP) is a major modifiable cardiovascular risk factor in chronic renal disease.
- Large-artery stiffness and wave reflections are key determinants of SBP, but their role in chronic kidney disease progression is understudied.
Purpose of the Study:
- To investigate the role of arterial stiffness in the progression of chronic renal disease.
- To explore the association between arterial stiffness, SBP, and cardiovascular events in renal insufficiency.
Main Methods:
- The study examined the relationship between arterial stiffness and renal function (creatinine clearance).
- Analysis considered traditional cardiovascular risk factors and demographic data.
Main Results:
- Increased arterial stiffness is closely related to reduced creatinine clearance in mild to severe renal insufficiency, independent of other risk factors.
- Arterial stiffness contributes to elevated SBP and pulse pressure (PP) through inflammatory mechanisms and arterial calcifications.
- Increased PP in renal dysfunction can damage glomeruli, initiating glomerulosclerosis and tubulointerstitial damage, leading to cardiovascular events.
Conclusions:
- Arterial stiffness is a significant factor in chronic kidney disease progression and cardiovascular risk.
- Managing arterial stiffness and SBP is crucial for preventing renal failure and cardiovascular events in patients with kidney disease.
- Pharmacological modulation of the renin-angiotensin system may be beneficial in end-stage renal disease.
Abstract:
In subjects with chronic renal disease, high systolic blood pressure (SBP) is the most modifiable cardiovascular (CV) risk factor that enables prevention of the progression of chronic kidney disease renal failure and the occurrence of CV events. Although large-artery stiffness and wave reflections are the principal hemodynamic determinants of SBP, their precise role in the progression of chronic renal disease has been poorly investigated. However, in subjects with mild to severe renal insufficiency, increased arterial stiffness and reduced creatinine clearance are closely related, independently of age; mean arterial pressure level; and presence of other traditional risk factors, including atherosclerotic plaques. Through inflammatory mechanisms, as well as through the development of arterial calcifications (including microscopic) and sodium-related alterations in extracellular matrix composition, arterial stiffness is associated with significant SBP and increased pulse pressure (PP). In the presence of renal dysfunction, frequently observed in elderly hypertensive or diabetic subjects, or even in some living donors, the resulting increase in PP may be transmitted toward and across glomeruli, even when peripheral blood pressure values are maintained. This alteration alone may initiate glomerulosclerosis and/or tubulointerstitial damage, eventually leading to CV events. In subjects with end-stage renal disease and high CV risk, pharmacological modulation of the renin-angiotensin system has been shown to prevent independently such complications.
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