Elevated Pulmonary Artery Wedge Pressure in Group 1 Pulmonary Hypertension

Y Yogesh N.V. Reddy (Department of Cardiovascular Medicine (Y.N.V.R., R.P.F., W.R.M., R.V., B.A.B.), Mayo Clinic, Rochester, MN.) R Robert P. Frantz (Department of Cardiovascular Medicine (Y.N.V.R., R.P.F., W.R.M., R.V., B.A.B.), Mayo Clinic, Rochester, MN.) W William R. Miranda (Department of Cardiovascular Medicine (Y.N.V.R., R.P.F., W.R.M., R.V., B.A.B.), Mayo Clinic, Rochester, MN.) A Aneesh K. Asokan R Revati Varma (Department of Cardiovascular Medicine (Y.N.V.R., R.P.F., W.R.M., R.V., B.A.B.), Mayo Clinic, Rochester, MN.) F Franz Rischard (Division of Pulmonary, Allergy, Critical Care and Sleep Medicine, University of Arizona, Tucson, AZ (F.R.).) P Paul M. Hassoun A Anna R. Hemnes E Evelyn Horn (Perkin Heart Failure Center, Division of Cardiology, Weill Cornell Medicine, New York, NY (E.H.).) J Jane A. Leopold E Erika B. Rosenzweig (Division of Pediatric Cardiology, Department of Pediatrics, Maria Fareri Children’s Hospital at WMC Health, Valhalla, NY (E.B.R.).) N Nicholas S. Hill (Division of Pulmonary, Critical Care, and Sleep Medicine, Tufts Medical Center, Boston, MA (N.S.H.).) S Serpil C. Erzurum (Division of Pulmonary and Critical Care Medicine, Johns Hopkins University, Baltimore, MD (P.M.H., S.C.M., M.M.).) G Gerald J. Beck J John Barnard J J. Emanuel Finet (Cardiovascular Medicine (J.E.F., D.K., W.H.W.T.), Cleveland Clinic, Cleveland, OH.) D Deborah Kwon S Stephen C. Mathai M Monica Mukherjee W W.H. Wilson Tang (Cardiovascular Medicine (J.E.F., D.K., W.H.W.T.), Cleveland Clinic, Cleveland, OH.) K K. Sreekumaran Nair B Barry A. Borlaug (From Baylor University Medical Center, Dallas (M.P.); Imperial College, London (M.P.); RHJ Department of Veterans Affairs, Health System and Medical University of South Carolina, Charleston (M.R.Z., S.E.L.); the Cardiovascular Division, Department of Medicine, University of Virginia Health System, Charlottesville (C.M.K.); Flourish Research, Boca Raton, FL (S.J.B.); the Department of Cardiovascular Medicine, Cleveland Clinic Foundation, Cleveland (V.M.); the Department of Cardiology, Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital, Fudan University, Shanghai, China (J.G.); Eli Lilly, Indianapolis (G.J.W., Y.O., M.C.B., K.C.H., M.M.); and the Department of Cardiovascular Medicine, Mayo Clinic, Rochester, MN (B.A.B.).)

Abstract

BACKGROUND: With pulmonary hypertension (PH), a pulmonary artery wedge pressure (PAWP)>15 mm Hg is used to diagnose left heart dysfunction, but some patients with adjudicated group 1 PH demonstrate PAWP>15 mm Hg. The primary objective of the study was to evaluate group 1 PH with high PAWP>15 mm Hg. METHODS: Patients with adjudicated group 1 PH from PVDOMICS between 2016 and 2019 were separated into high PAWP(>15 mm Hg) or normal PAWP and compared with adjudicated combined pre- and postcapillary (Cpc) PH related to heart failure with preserved ejection fraction (HFpEF). Participants underwent dynamic right heart catheterization and metabolomics. Findings were validated in 3 independent cohorts with adjudicated group 1 PH (validation cohorts 1 and 2 with exercise right heart catheterization and validation cohort 3 with resting right heart catheterization). RESULTS: Of 325 patients with group 1 PH (73% women, mean age 53.0±14.3 years), 15% (n=48) had high PAWP. Group 1 PH+high PAWP demonstrated greater obesity, left ventricular hypertrophy ( P <0.0002), left ventricular strain impairment ( P <0.0001), and decreased left ventricular compliance ( P <0.0001) compared with group 1 PH+normal PAWP, with changes comparable to Cpc-PH HFpEF (n=75). Compared with Cpc-PH HFpEF, left atrial function was better in group 1 PH+high PAWP with lower PAWP V wave, higher left atrial compliance, and left atrial ejection fraction ( P <0.0001 for all). Metabolomics demonstrated little difference between group 1 PH with high versus normal PAWP but large differences between group 1 PH+high PAWP versus Cpc-PH HFpEF (100 metabolites altered at false discovery rate P <0.05). Elevated PAWP was also observed in 18% of group 1 PH in the validation cohort 1 (n=402), with exercise PAWP response intermediately abnormal in group 1 PH+high PAWP relative to Cpc-PH HFpEF and group 1 PH+normal PAWP (interaction P <0.0001). Elevated PAWP was similarly observed in 22% and 19% of group 1 PH in validation cohorts 2 (n=55) and 3 (n=787), respectively. CONCLUSIONS: Approximately 1 in 5 adjudicated patients with group 1 PH has elevation in resting PAWP despite severe pulmonary vascular dysfunction and metabolomics consistent with traditionally defined group 1 PH. Despite resting PAWP elevation, these patients with group 1 PH were metabolomically and biologically distinct from Cpc PH HFpEF, with better left atrial function and diastolic reserve during exercise. These data emphasize the limitations of using resting PAWP alone to separate group 1 PH from HFpEF and call for development of more integrated clinical diagnostic criteria.

Article Details

Journal Circulation
Volume / Issue Vol. 153, Issue 13
Published March 31, 2026
Pages 948-962
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (22)

Y

Yogesh N.V. Reddy

Department of Cardiovascular Medicine (Y.N.V.R., R.P.F., W.R.M., R.V., B.A.B.), Mayo Clinic, Rochester, MN.

R

Robert P. Frantz

Department of Cardiovascular Medicine (Y.N.V.R., R.P.F., W.R.M., R.V., B.A.B.), Mayo Clinic, Rochester, MN.

W

William R. Miranda

Department of Cardiovascular Medicine (Y.N.V.R., R.P.F., W.R.M., R.V., B.A.B.), Mayo Clinic, Rochester, MN.

A

Aneesh K. Asokan

R

Revati Varma

Department of Cardiovascular Medicine (Y.N.V.R., R.P.F., W.R.M., R.V., B.A.B.), Mayo Clinic, Rochester, MN.

F

Franz Rischard

Division of Pulmonary, Allergy, Critical Care and Sleep Medicine, University of Arizona, Tucson, AZ (F.R.).

P

Paul M. Hassoun

A

Anna R. Hemnes

E

Evelyn Horn

Perkin Heart Failure Center, Division of Cardiology, Weill Cornell Medicine, New York, NY (E.H.).

J

Jane A. Leopold

E

Erika B. Rosenzweig

Division of Pediatric Cardiology, Department of Pediatrics, Maria Fareri Children’s Hospital at WMC Health, Valhalla, NY (E.B.R.).

N

Nicholas S. Hill

Division of Pulmonary, Critical Care, and Sleep Medicine, Tufts Medical Center, Boston, MA (N.S.H.).

S

Serpil C. Erzurum

Division of Pulmonary and Critical Care Medicine, Johns Hopkins University, Baltimore, MD (P.M.H., S.C.M., M.M.).

G

Gerald J. Beck

J

John Barnard

J

J. Emanuel Finet

Cardiovascular Medicine (J.E.F., D.K., W.H.W.T.), Cleveland Clinic, Cleveland, OH.

D

Deborah Kwon

S

Stephen C. Mathai

M

Monica Mukherjee

W

W.H. Wilson Tang

Cardiovascular Medicine (J.E.F., D.K., W.H.W.T.), Cleveland Clinic, Cleveland, OH.

K

K. Sreekumaran Nair

B

Barry A. Borlaug

From Baylor University Medical Center, Dallas (M.P.); Imperial College, London (M.P.); RHJ Department of Veterans Affairs, Health System and Medical University of South Carolina, Charleston (M.R.Z., S.E.L.); the Cardiovascular Division, Department of Medicine, University of Virginia Health System, Charlottesville (C.M.K.); Flourish Research, Boca Raton, FL (S.J.B.); the Department of Cardiovascular Medicine, Cleveland Clinic Foundation, Cleveland (V.M.); the Department of Cardiology, Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital, Fudan University, Shanghai, China (J.G.); Eli Lilly, Indianapolis (G.J.W., Y.O., M.C.B., K.C.H., M.M.); and the Department of Cardiovascular Medicine, Mayo Clinic, Rochester, MN (B.A.B.).