Aortic Valve Stenosis Causes Accumulation of Extracellular Hemoglobin and Systemic Endothelial Dysfunction.

4D flow MRI NO consumption TAVR aortic valve stenosis endothelial dysfunction extracellular hemoglobin

Journal

Circulation
ISSN: 1524-4539
Titre abrégé: Circulation
Pays: United States
ID NLM: 0147763

Informations de publication

Date de publication:
05 Jun 2024
Historique:
medline: 5 6 2024
pubmed: 5 6 2024
entrez: 5 6 2024
Statut: aheadofprint

Résumé

Whether aortic valve stenosis (AS) can adversely affect systemic endothelial function independently of standard modifiable cardiovascular risk factors is unknown. We therefore investigated endothelial and cardiac function in an experimental model of AS mice devoid of standard modifiable cardiovascular risk factors and human cohorts with AS scheduled for transcatheter aortic valve replacement. Endothelial function was determined by flow-mediated dilation using ultrasound. Extracellular hemoglobin (eHb) concentrations and NO consumption were determined in blood plasma of mice and humans by ELISA and chemiluminescence. This was complemented by measurements of aortic blood flow using 4-dimensional flow acquisition by magnetic resonance imaging and computational fluid dynamics simulations. The effects of plasma and red blood cell (RBC) suspensions on vascular function were determined in transfer experiments in a murine vasorelaxation bioassay system. In mice, the induction of AS caused systemic endothelial dysfunction. In the presence of normal systolic left ventricular function and mild hypertrophy, the increase in the transvalvular gradient was associated with elevated eryptosis, increased eHb and plasma NO consumption; eHb sequestration by haptoglobin restored endothelial function. Because the aortic valve orifice area in patients with AS decreased, postvalvular mechanical stress in the central ascending aorta increased. This was associated with elevated eHb, circulating RBC-derived microvesicles, eryptotic cells, lower haptoglobin levels without clinically relevant anemia, and consecutive endothelial dysfunction. Transfer experiments demonstrated that reduction of eHb by treatment with haptoglobin or elimination of fluid dynamic stress by transcatheter aortic valve replacement restored endothelial function. In patients with AS and subclinical RBC fragmentation, the remaining circulating RBCs before and after transcatheter aortic valve replacement exhibited intact membrane function, deformability, and resistance to osmotic and hypoxic stress. AS increases postvalvular swirling blood flow in the central ascending aorta, triggering RBC fragmentation with the accumulation of hemoglobin in the plasma. This increases NO consumption in blood, thereby limiting vascular NO bioavailability. Thus, AS itself promotes systemic endothelial dysfunction independent of other established risk factors. Transcatheter aortic valve replacement is capable of limiting NO scavenging and rescuing endothelial function by realigning postvalvular blood flow to near physiological patterns. URL: https://www.clinicaltrials.gov; Unique identifier: NCT05603520. URL: https://www.clinicaltrials.gov; Unique identifier: NCT01805739.

Sections du résumé

BACKGROUND UNASSIGNED
Whether aortic valve stenosis (AS) can adversely affect systemic endothelial function independently of standard modifiable cardiovascular risk factors is unknown.
METHODS UNASSIGNED
We therefore investigated endothelial and cardiac function in an experimental model of AS mice devoid of standard modifiable cardiovascular risk factors and human cohorts with AS scheduled for transcatheter aortic valve replacement. Endothelial function was determined by flow-mediated dilation using ultrasound. Extracellular hemoglobin (eHb) concentrations and NO consumption were determined in blood plasma of mice and humans by ELISA and chemiluminescence. This was complemented by measurements of aortic blood flow using 4-dimensional flow acquisition by magnetic resonance imaging and computational fluid dynamics simulations. The effects of plasma and red blood cell (RBC) suspensions on vascular function were determined in transfer experiments in a murine vasorelaxation bioassay system.
RESULTS UNASSIGNED
In mice, the induction of AS caused systemic endothelial dysfunction. In the presence of normal systolic left ventricular function and mild hypertrophy, the increase in the transvalvular gradient was associated with elevated eryptosis, increased eHb and plasma NO consumption; eHb sequestration by haptoglobin restored endothelial function. Because the aortic valve orifice area in patients with AS decreased, postvalvular mechanical stress in the central ascending aorta increased. This was associated with elevated eHb, circulating RBC-derived microvesicles, eryptotic cells, lower haptoglobin levels without clinically relevant anemia, and consecutive endothelial dysfunction. Transfer experiments demonstrated that reduction of eHb by treatment with haptoglobin or elimination of fluid dynamic stress by transcatheter aortic valve replacement restored endothelial function. In patients with AS and subclinical RBC fragmentation, the remaining circulating RBCs before and after transcatheter aortic valve replacement exhibited intact membrane function, deformability, and resistance to osmotic and hypoxic stress.
CONCLUSIONS UNASSIGNED
AS increases postvalvular swirling blood flow in the central ascending aorta, triggering RBC fragmentation with the accumulation of hemoglobin in the plasma. This increases NO consumption in blood, thereby limiting vascular NO bioavailability. Thus, AS itself promotes systemic endothelial dysfunction independent of other established risk factors. Transcatheter aortic valve replacement is capable of limiting NO scavenging and rescuing endothelial function by realigning postvalvular blood flow to near physiological patterns.
REGISTRATION UNASSIGNED
URL: https://www.clinicaltrials.gov; Unique identifier: NCT05603520. URL: https://www.clinicaltrials.gov; Unique identifier: NCT01805739.

Identifiants

pubmed: 38836358
doi: 10.1161/CIRCULATIONAHA.123.064747
doi:

Banques de données

ClinicalTrials.gov
['NCT01805739', 'NCT05603520']

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Auteurs

Christine Quast (C)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Florian Bönner (F)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Amin Polzin (A)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).
Cardiovascular Research Institute Düsseldorf, Medical Faculty, Heinrich Heine University, Düsseldorf, Germany. (A.P., C.J., U.F., N.G., M.M.C.-K., M.K.).

Verena Veulemans (V)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Ramesh Chennupati (R)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Isabella Gyamfi Poku (I)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Susanne Pfeiler (S)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Nicolas Kramser (N)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Magdalena Nankinova (M)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Nicole Staub (N)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Elric Zweck (E)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).
Department of Epidemiology, Harvard T.H. Chan School of Public Health, Boston, MA (E.Z.).

Juliane Jokiel (J)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Fabian Keyser (F)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Jasmina Hoffe (J)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Sven Witkowski (S)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Katrin Becker (K)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Pia Leuders (P)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Saif Zako (S)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Ralf Erkens (R)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Christian Jung (C)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).
Cardiovascular Research Institute Düsseldorf, Medical Faculty, Heinrich Heine University, Düsseldorf, Germany. (A.P., C.J., U.F., N.G., M.M.C.-K., M.K.).

Ulrich Flögel (U)

Experimental Cardiovascular Imaging, Department of Molecular Cardiology, Heinrich Heine University, Düsseldorf, Germany. (U.F.).
Cardiovascular Research Institute Düsseldorf, Medical Faculty, Heinrich Heine University, Düsseldorf, Germany. (A.P., C.J., U.F., N.G., M.M.C.-K., M.K.).

Tianai Wang (T)

Department of Cardiovascular Engineering, Institute of Applied Medical Engineering, Medical Faculty, RWTH Aachen, Germany (T.W., M. Neidlin, U.S.).

Michael Neidlin (M)

Department of Cardiovascular Engineering, Institute of Applied Medical Engineering, Medical Faculty, RWTH Aachen, Germany (T.W., M. Neidlin, U.S.).

Ulrich Steinseifer (U)

Department of Cardiovascular Engineering, Institute of Applied Medical Engineering, Medical Faculty, RWTH Aachen, Germany (T.W., M. Neidlin, U.S.).

Sven Thomas Niepmann (ST)

Heart Center Bonn, Clinic for Internal Medicine II, University Hospital Bonn, Germany (S.T.N., S. Zimmer).

Sebastian Zimmer (S)

Heart Center Bonn, Clinic for Internal Medicine II, University Hospital Bonn, Germany (S.T.N., S. Zimmer).

Norbert Gerdes (N)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).
Cardiovascular Research Institute Düsseldorf, Medical Faculty, Heinrich Heine University, Düsseldorf, Germany. (A.P., C.J., U.F., N.G., M.M.C.-K., M.K.).

Miriam M Cortese-Krott (MM)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).
Cardiovascular Research Institute Düsseldorf, Medical Faculty, Heinrich Heine University, Düsseldorf, Germany. (A.P., C.J., U.F., N.G., M.M.C.-K., M.K.).

Martin Feelisch (M)

Clinical and Experimental Sciences, University of Southampton, United Kingdom (M.F.).

Tobias Zeus (T)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).

Malte Kelm (M)

Department of Cardiology, Pulmonology and Vascular Medicine, University Hospital, Heinrich Heine University, Düsseldorf, Germany. (C.Q., F.B., A.P., V.V., R.C., I.G.P., S.P., N.K., M. Nankinova, N.S., E.Z., J.J., F.K., J.H., S.W., K.B., P.L., S. Zako, R.E., C.J., N.G., M.M.C.-K., T.Z., M.K.).
Cardiovascular Research Institute Düsseldorf, Medical Faculty, Heinrich Heine University, Düsseldorf, Germany. (A.P., C.J., U.F., N.G., M.M.C.-K., M.K.).

Classifications MeSH