Characterization and Application of Novel Exercise Recovery Patterns That Reflect Cardiac Performance: A Substudy of the SEQUOIA-HCM Trial

J Joseph Campain (Department of Medicine, Cardiology Division, Massachusetts General Brigham Heart and Vascular Institute, Boston (I.L., T.I., L.P.C., I.G., J.C., R.M., G.D.L.).) C Catharine Griskowitz (Heart and Vascular Institute, Massachusetts General Hospital, Harvard Medical School, Boston, MA (J.C., C.G., C.N., S.M., I.G., F.M., A.M., C.P., L.R., I.L., N.I., R.M., G.D.L.).) C Chloe Newlands (Massachusetts General Hospital, Boston, Massachusetts, United States) B Brian L. Claggett (Cardiovascular Division, Brigham and Women’s Hospital, Harvard Medical School, Boston) I Ian J. Kulac (Cardiology Division, Brigham and Women’s Hospital, Harvard Medical School, Boston, MA (B.L.C., I.J.K.).) S Shaina McGinnis (Massachusetts General Hospital, Boston, Massachusetts, United States) I Ilya Giverts (Department of Medicine, Cardiology Division, Massachusetts General Brigham Heart and Vascular Institute, Boston (I.L., T.I., L.P.C., I.G., J.C., R.M., G.D.L.).) F Fabely Moreno (Massachusetts General Hospital, Boston, Massachusetts, United States) A Alexandra Minasian (Massachusetts General Hospital, Boston, Massachusetts, United States) C Cheshta Prasad (Heart and Vascular Institute, Massachusetts General Hospital, Harvard Medical School, Boston, MA (J.C., C.G., C.N., S.M., I.G., F.M., A.M., C.P., L.R., I.L., N.I., R.M., G.D.L.).) L Lillian Rupert (Heart and Vascular Institute, Massachusetts General Hospital, Harvard Medical School, Boston, MA (J.C., C.G., C.N., S.M., I.G., F.M., A.M., C.P., L.R., I.L., N.I., R.M., G.D.L.).) I Isabela Landsteiner (Department of Medicine, Cardiology Division, Massachusetts General Brigham Heart and Vascular Institute, Boston (I.L., T.I., L.P.C., I.G., J.C., R.M., G.D.L.).) N Nick Iskenderian (Heart and Vascular Institute, Massachusetts General Hospital, Harvard Medical School, Boston, MA (J.C., C.G., C.N., S.M., I.G., F.M., A.M., C.P., L.R., I.L., N.I., R.M., G.D.L.).) C Caroline J. Coats (School of Cardiovascular and Metabolic Health, University of Glasgow, Glasgow, United Kingdom (C.J.C., M.M.Y.L.).) M Matthew M.Y. Lee (School of Cardiovascular and Metabolic Health, University of Glasgow, Glasgow, United Kingdom (C.J.C., M.M.Y.L.).) M Martin S. Maron (Lahey Hospital and Medical Center, Burlington, MA) A Anjali T. Owens (Department of Cardiology, University of Pennsylvania, Philadelphia) D Daniel L. Jacoby (Cytokinetics, South San Francisco, CA) S Stephen B. Heitner (Cytokinetics, South San Francisco, CA) S Stuart Kupfer (Cytokinetics, South San Francisco, CA) F Fady I. Malik (Cytokinetics, South San Francisco, CA) A Amy Wohltman (Cytokinetics, South San Francisco, CA) R Rajeev Malhotra (Department of Medicine, Cardiology Division, Massachusetts General Brigham Heart and Vascular Institute, Boston (I.L., T.I., L.P.C., I.G., J.C., R.M., G.D.L.).) G Gregory D. Lewis (Division of Cardiology, Department of Medicine, Massachusetts General Hospital, Boston)

Abstract

BACKGROUND: Post-exercise oxygen uptake recovery (VO 2 Rec) is slow in advanced heart failure. We sought to establish easily derived VO 2 Rec measures and evaluate their cardiospecificity and prognostic relevance in patients with dyspnea on exertion. We further sought to determine VO 2 Rec modifiability proportional to changes in cardiac function with disease-specific treatment of obstructive hypertrophic cardiomyopathy. METHODS: VO 2 Rec patterns were evaluated in relation to cardiac performance and the primary outcome of heart failure hospitalization or death in a referral cohort with dyspnea on exertion undergoing cardiopulmonary exercise testing with hemodynamic monitoring (MGH-ExS [Massachusetts General Hospital Exercise Study]). We then investigated longitudinal measures of VO 2 Rec in the pivotal phase 3 randomized controlled trial SEQUOIA-HCM (Safety, Efficacy, and Quantitative Understanding of Obstruction Impact of Aficamten in Hypertrophic Cardiomyopathy) of aficamten versus placebo for 24 weeks in participants with symptomatic obstructive hypertrophic cardiomyopathy. For both cohorts, VO 2 Rec was uniformly measured as time for VO 2 to decline by >0%, 12.5% (VO 2 T 12.5% ), 25%, and 50% of peak VO 2 . RESULTS: Among 814 MGH-ExS patients (58±16 years of age, 58% women), those with a longer VO 2 T 12.5% (≥35 versus <35 seconds) demonstrated elevated exercise pulmonary capillary wedge pressure to cardiac output slope ( P <0.0001) with no difference in peripheral oxygen extraction ( P =0.11). For each 15-second increase in VO 2 T 12.5% , the hazard ratio for heart failure hospitalization and all-cause death was 1.54 (95% CI, 1.35–1.76; P <0.001). In SEQUOIA-HCM participants with cardiopulmonary exercise testing at baseline and week 24 (n=263, 59.1±2.9 years of age, 41% women), baseline VO 2 T 12.5% was 45±20 seconds and improved 8 seconds (95% CI, −12 to −5 seconds; P <0.001) with aficamten treatment compared with placebo at 24 weeks. Participants treated with aficamten versus placebo were more likely to improve VO 2 T 12.5% by ≥15 seconds (odds ratio [OR], 3.7 [95% CI, 1.9–6.9]; number needed to treat=4.8). Shortening of VO 2 T 12.5% correlated with reduced NT-proBNP (N-terminal pro-B-type natriuretic peptide), high-sensitivity cardiac troponin I, and left ventricular outflow tract gradient (all P <0.005). CONCLUSIONS: This study established VO 2 T 12.5% as a new measure that reflects cardiac performance during exercise and predicted heart failure event-free survival. Furthermore, VO 2 T 12.5% improved proportional to improvements in left ventricular outflow tract gradient and cardiac biomarkers in response to aficamten treatment, a cardiospecific therapy for obstructive hypertrophic cardiomyopathy. The simplicity and physiological relevance of VO 2 T 12.5% support its regular inclusion in cardiopulmonary exercise testing protocols evaluating cardiac function during exercise. REGISTRATION: URL: https://www.clinicaltrials.gov ; Unique identifier: NCT05186818.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue 14
Published October 07, 2025
Pages 990-1002
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (24)

J

Joseph Campain

Department of Medicine, Cardiology Division, Massachusetts General Brigham Heart and Vascular Institute, Boston (I.L., T.I., L.P.C., I.G., J.C., R.M., G.D.L.).

C

Catharine Griskowitz

Heart and Vascular Institute, Massachusetts General Hospital, Harvard Medical School, Boston, MA (J.C., C.G., C.N., S.M., I.G., F.M., A.M., C.P., L.R., I.L., N.I., R.M., G.D.L.).

C

Chloe Newlands

Massachusetts General Hospital, Boston, Massachusetts, United States

B

Brian L. Claggett

Cardiovascular Division, Brigham and Women’s Hospital, Harvard Medical School, Boston

I

Ian J. Kulac

Cardiology Division, Brigham and Women’s Hospital, Harvard Medical School, Boston, MA (B.L.C., I.J.K.).

S

Shaina McGinnis

Massachusetts General Hospital, Boston, Massachusetts, United States

I

Ilya Giverts

Department of Medicine, Cardiology Division, Massachusetts General Brigham Heart and Vascular Institute, Boston (I.L., T.I., L.P.C., I.G., J.C., R.M., G.D.L.).

F

Fabely Moreno

Massachusetts General Hospital, Boston, Massachusetts, United States

A

Alexandra Minasian

Massachusetts General Hospital, Boston, Massachusetts, United States

C

Cheshta Prasad

Heart and Vascular Institute, Massachusetts General Hospital, Harvard Medical School, Boston, MA (J.C., C.G., C.N., S.M., I.G., F.M., A.M., C.P., L.R., I.L., N.I., R.M., G.D.L.).

L

Lillian Rupert

Heart and Vascular Institute, Massachusetts General Hospital, Harvard Medical School, Boston, MA (J.C., C.G., C.N., S.M., I.G., F.M., A.M., C.P., L.R., I.L., N.I., R.M., G.D.L.).

I

Isabela Landsteiner

Department of Medicine, Cardiology Division, Massachusetts General Brigham Heart and Vascular Institute, Boston (I.L., T.I., L.P.C., I.G., J.C., R.M., G.D.L.).

N

Nick Iskenderian

Heart and Vascular Institute, Massachusetts General Hospital, Harvard Medical School, Boston, MA (J.C., C.G., C.N., S.M., I.G., F.M., A.M., C.P., L.R., I.L., N.I., R.M., G.D.L.).

C

Caroline J. Coats

School of Cardiovascular and Metabolic Health, University of Glasgow, Glasgow, United Kingdom (C.J.C., M.M.Y.L.).

M

Matthew M.Y. Lee

School of Cardiovascular and Metabolic Health, University of Glasgow, Glasgow, United Kingdom (C.J.C., M.M.Y.L.).

M

Martin S. Maron

Lahey Hospital and Medical Center, Burlington, MA

A

Anjali T. Owens

Department of Cardiology, University of Pennsylvania, Philadelphia

D

Daniel L. Jacoby

Cytokinetics, South San Francisco, CA

S

Stephen B. Heitner

Cytokinetics, South San Francisco, CA

S

Stuart Kupfer

Cytokinetics, South San Francisco, CA

F

Fady I. Malik

Cytokinetics, South San Francisco, CA

A

Amy Wohltman

Cytokinetics, South San Francisco, CA

R

Rajeev Malhotra

Department of Medicine, Cardiology Division, Massachusetts General Brigham Heart and Vascular Institute, Boston (I.L., T.I., L.P.C., I.G., J.C., R.M., G.D.L.).

G

Gregory D. Lewis

Division of Cardiology, Department of Medicine, Massachusetts General Hospital, Boston