Abstract 4367331: How Preload Influences Left Ventricular Volumetric Changes in Heart Failure with Preserved Ejection Fraction

S Syed Abbas (IEEM, Dallas, Texas, United States) T Tiffany Brazile (Inova Schar Heart and Vascular, Falls Church, Virginia, United States) D Denis Wakeham (UT Southwestern Medical Center, Dallas, Texas, United States) M Michael Leahy (UT Southwestern Medical Center, Dallas, Texas, United States) C Christopher Hearon (IEEM, Dallas, Texas, United States) M Mitchel Samels (IEEM, Dallas, Texas, United States) B Bryce Balmain (UT Southwestern Medical Center, Dallas, Texas, United States) A Andrew Tomlinson (University of Texas Southwestern, Dallas, Texas, United States) T Tony Babb (UT Southwester Medical Center, Dallas, Texas, United States) B Benjamin Levine (UT SOUTHWESTERN MEDICAL CENTER, Dallas, Texas, United States) S Satyam Sarma (Institute for Exercise and Environmental Medicine, University of Texas Southwestern Medical Center, Dallas, TX (S.S.).) J James Macnamara (University of Texas Southwestern Medical Center, Dallas, Texas, United States)

Abstract

Background: During exercise, many patients with heart failure with preserved ejection fraction (HFpEF) have an have impaired stroke volume response, which often attributed to increased left ventricular (LV) stiffness and external constraint, limiting end-diastolic volume (EDV). It is thought, but not known, that patients with HFpEF may be more dependent on end-systolic volume (ESV) to augment stroke volume during exercise. In this study, we used nitroglycerin (NTG) to alter venous return at rest and during exercise. Hypothesis: HFpEF patients would be more dependent on changes to ESV compared to EDV when preload was experimentally attenuated. Methods: Patients with invasively confirmed HFpEF (n = 36, 70±7 years, 69% female, average BMI = 37.3±6.1 kg/m 2 ) underwent 2 consecutive seated-upright cardiopulmonary exercise test with right heart catheterization in a cross-over design with placebo and NTG. NTG was used to decrease venous return and preload. LV volumes (3D echocardiography) and pulmonary capillary wedge pressure (PCWP) were measured during rest and during 20W steady state submaximal exercise. Differences in volumes during rest and exercise conditions with and without NTG were compared, controlling for multiple comparisons. Results: As shown in Table, NTG significant reduced PCWP during rest (Δ-1.3±1.6 mmHg, p <0.001) and exercise (Δ-4.7±4.5, p<0.001). NTG significant reduced stroke volume during rest (Δ-8.9±10.6 mL, p <0.001) and exercise (Δ-4.3±8.9, p = 0.040) with no change in heart rate. Both LV EDV and LV ESV were significantly lowered by NTG at rest (EDV Δ-13.5±15.3 mL p <0.001, ESV Δ-4.3±7.3 mL, p 0.007). There was a small, variable decrease in EDV with NTG during exercise (Δ-4.4±10.4mL, p =0.110) and no change in ESV (Δ0.0±6.0, p = 0.999). Conclusions: A reduction in venous return resulted in decreased LV filling pressure and stroke volume at rest and during exercise. At rest, LV end-diastolic volume dropped significantly and end-systolic volume decreased maintain stroke volume. Contrary to our hypothesis, end-systolic volume was unchanged both from baseline and with NTG. While variable there was a similar decrease in end-diastolic volume as stroke volume with NTG during exercise. This study demonstrates a dependency on preload and EDV, specifically, to maintain stroke volume during exercise in HFpEF and may explain why patients with HFpEF have not responded to therapies targeting preload during exercise.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (12)

S

Syed Abbas

IEEM, Dallas, Texas, United States

T

Tiffany Brazile

Inova Schar Heart and Vascular, Falls Church, Virginia, United States

D

Denis Wakeham

UT Southwestern Medical Center, Dallas, Texas, United States

M

Michael Leahy

UT Southwestern Medical Center, Dallas, Texas, United States

C

Christopher Hearon

IEEM, Dallas, Texas, United States

M

Mitchel Samels

IEEM, Dallas, Texas, United States

B

Bryce Balmain

UT Southwestern Medical Center, Dallas, Texas, United States

A

Andrew Tomlinson

University of Texas Southwestern, Dallas, Texas, United States

T

Tony Babb

UT Southwester Medical Center, Dallas, Texas, United States

B

Benjamin Levine

UT SOUTHWESTERN MEDICAL CENTER, Dallas, Texas, United States

S

Satyam Sarma

Institute for Exercise and Environmental Medicine, University of Texas Southwestern Medical Center, Dallas, TX (S.S.).

J

James Macnamara

University of Texas Southwestern Medical Center, Dallas, Texas, United States