Related Experiment Video
Updated: Jan 27, 2026

Author Spotlight: Workflow for Integrating POCUS Data into EHR for Managing Heart Failure Patients
Published on: July 12, 2024
Elevated plasma levels of human urotensin-II immunoreactivity in congestive heart failure
Fraser D Russell1, Deborah Meyers, Andrew J Galbraith
1Department of Medicine, University of Queensland, Prince Charles Hospital, Rode Road, Chermside, Queensland 4032, Australia. russell@medicine.uq.edu.au
Insights
Human urotensin-II (hU-II), a potent cardiostimulant, is elevated in congestive heart failure (CHF) patients. This study investigated hU-II levels in CHF, revealing elevated aortic root concentrations, suggesting a pathological role in heart failure.
Area of Science:
- Cardiology
- Endocrinology
- Molecular Biology
Background:
- Human urotensin-II (hU-II) is recognized as the most potent endogenous cardiostimulant.
- The potential pathological role of hU-II in cardiovascular diseases, particularly congestive heart failure (CHF), remains to be fully elucidated.
Purpose of the Study:
- To investigate the levels of immunoreactive hU-II (hU-II-ir) in patients with CHF.
- To determine if hU-II plays a pathological role in the development or progression of CHF.
Main Methods:
- Blood samples were collected from the aortic root, pulmonary artery, femoral artery, and femoral vein of CHF patients and control subjects.
- Radioimmunoassay was employed to quantify hU-II-ir levels in the collected blood samples.
- Comparisons were made between CHF patients and individuals with nonfailing hearts, as well as between different arterial and venous sampling sites.
Main Results:
- hU-II-ir levels were significantly elevated in the aortic root of CHF patients compared to individuals with nonfailing hearts (230.9 pg/ml vs. 22.7 pg/ml).
- Elevated hU-II-ir in the aortic root of CHF patients was attributed to cardiopulmonary production, as levels were lower in the pulmonary artery.
- hU-II-ir levels were also elevated in CHF patients with both nonischemic and ischemic cardiomyopathy compared to respective control groups.
Conclusions:
- The findings indicate that hU-II-ir is significantly elevated in the aortic root of patients with congestive heart failure.
- Cardiopulmonary production contributes to the increased hU-II-ir levels observed in CHF.
- hU-II may play a pathological role in CHF, and its clearance occurs, at least partially, within the microcirculation.
Abstract:
Human urotensin-II (hU-II) is the most potent endogenous cardiostimulant identified to date. We therefore determined whether hU-II has a possible pathological role by investigating its levels in patients with congestive heart failure (CHF). Blood samples were obtained from the aortic root, femoral artery, femoral vein, and pulmonary artery from CHF patients undergoing cardiac catheterization and the aortic root from patients undergoing investigative angiography for chest pain who were not in heart failure. Immunoreactive hU-II (hU-II-ir) levels were determined with radioimmunoassay. hU-II-ir was elevated in the aortic root of CHF patients (230.9 +/- 68.7 pg/ml, n = 21; P < 0.001) vs. patients with nonfailing hearts (22.7 +/- 6.1 pg/ml, n = 18). This increase was attributed to cardiopulmonary production of hU-II-ir because levels were lower in the pulmonary artery (38.2 +/- 6.1 pg/ml, n = 21; P < 0.001) than in the aortic root. hU-II-ir was elevated in the aortic root of CHF patients with nonischemic cardiomyopathy (142.1 +/- 51.5 pg/ml, n = 10; P < 0.05) vs. patients with nonfailing hearts without coronary artery disease (27.3 +/- 12.4 pg/ml, n = 7) and CHF patients with ischemic cardiomyopathy (311.6 +/- 120.4 pg/ml, n = 11; P < 0.001) vs. patients with nonfailing hearts and coronary artery disease (19.8 +/- 6.6 pg/ml, n = 11). hU-II-ir was significantly higher in the aortic root than in the pulmonary artery and femoral vein, with a nonsignificant trend for higher levels in the aortic root than in the femoral artery. The findings indicated that hU-II-ir is elevated in the aortic root of CHF patients and that hU-II-ir is cleared at least in part from the microcirculation.
More Related Videos
07:49Author Spotlight: Investigating HR-Dependent Cardiac Function in Mouse Models Through a Novel Atrial-Pacing Approach
Published on: July 21, 2023
04:05Author Spotlight: Unveiling Prognostic Indicators in Heart Failure - The Role of Phase Angle and Bioelectrical Impedance Analysis
Published on: June 30, 2023
Related Concept Videos
Heart Failure VI: Adjunct Therapies
Heart Failure V: Medical Management
Heart Failure II: Pathophysiology
Heart Failure I: Introduction
Pathophysiology of Heart Failure
Heart Failure Drugs: Diuretics