Intraaortic pulse pressure amplification in subjects at high coronary risk
Mohamed Temmar1, Piotr Jankowski, Marcel Peltier
1Division of Clinical Pharmacology and Cardiology, Amiens University South Hospital, INSERM ERI 12, Amiens, France.
Insights
Pulse pressure amplification between the aorta and kidneys predicts cardiovascular risk in coronary patients, linking to kidney function and inflammation. This finding highlights aortic pulse pressure
Area of Science:
- Cardiovascular Physiology
- Renal Medicine
- Inflammation Research
Background:
- Peripheral pulse pressure usually exceeds central aortic pulse pressure.
- Pulse pressure amplification (PPA) is a less potent cardiovascular risk predictor.
- PPA between proximal and distal aorta is understudied in coronary patients.
Purpose of the Study:
- To investigate aortic pulse pressure amplification in high-coronary-risk subjects.
- To examine associations with renal and inflammatory factors.
- To determine the predictive value of aortic pulse pressure.
Main Methods:
- Invasive blood pressure measurements in ascending aorta, abdominal aorta (renal level), and iliac artery.
- Study included 101 patients undergoing coronary angiography.
- Multivariate regression analyses adjusted for confounding variables.
Main Results:
- A significant increase in pulse pressure (>10 mm Hg) from ascending to terminal aorta observed.
- PPA did not differ between patients with and without coronary artery stenosis.
- High aortic pulse pressure (ascending and renal levels) linked to proteinuria.
- Increased pulse pressure amplification to renal level negatively correlated with leukocyte count.
- Elevated plasma creatinine and aortic pulse wave velocity positively correlated with aortic pulse pressure.
Conclusions:
- Aortic pulse pressure amplification is a significant physiological phenomenon in coronary patients.
- Aortic pulse pressure integrates predictive information from aortic, renal, and inflammatory factors.
- Aortic pulse pressure, beyond coronary stenosis, offers valuable cardiovascular risk assessment.
Abstract:
Peripheral (brachial) pulse pressure normally exceeds central (aortic) pulse pressure but is a less powerful predictor of cardiovascular risk. The difference between the 2 variables, called pulse pressure amplification, has never been specifically studied between the proximal and distal aorta in coronary patients. Our goal was to determine aortic pulse pressure amplification in subjects at high coronary risk, with emphasis on associated renal and inflammatory factors. Blood pressure was measured invasively in the ascending aorta, abdominal aorta (at the level of kidneys), and iliac artery in 101 subjects (mean age, 63+/-11 years; 61 men) undergoing coronary angiography. Independently of age, sex, and the presence of coronary stenosis, the increase of pulse pressure between the ascending and terminal aorta was over 10 mm Hg (P<0.001), whereas mean blood pressure remained unchanged. Pulse pressure amplification did not differ significantly between patients with and without coronary artery stenosis. Irrespective of confounding variables, high pulse pressure measured in the ascending aorta and at the level of renal arteries (but not in the iliac artery) was independently related to proteinuria. The increase in pulse pressure from the ascending aorta to the renal level was negatively associated with leukocyte count, even after multivariate adjustment (beta coefficient, -0.19; 95% CI, -0.39 to 0.0; P<0.05). Increased plasma creatinine and aortic pulse wave velocity were independently and positively correlated (beta coefficient, 0.36; CI, 0.18 to 0.54; P<0.001). Independently of coronary atherosclerosis, aortic pulse pressure integrates the predictive value of aortic, inflammatory, and renal factors.
Related Concept Videos
Measurement of Blood Pressure
Pulse
The pulse serves as a clinical indicator...
Aortic Regurgitation II: Clinical Features and Diagnostic Tests
Equipments Used To Measure Blood Pressure
This invasive approach involves cannulating a peripheral artery. During each cardiac contraction, pressure generates mechanical motion within the catheter, transmitted through rigid, fluid-filled tubing to a transducer. This transducer converts mechanical motion into electrical signals displayed as waveforms on a monitor. An automatic flushing system prevents blood backflow. Due to the potential risk of unexpected arterial blood loss, this method is primarily used in intensive...
Blood Pressure
Acute Coronary Syndrome III: Diagnostic Studies


