Evidence mapPaperPMID 25533966Full record

Trial reportCirculation2015

Effect of inorganic nitrate on exercise capacity in heart failure with preserved ejection fraction.

Payman Zamani, Deepa Rawat, Prithvi Shiva-Kumar, Salvatore Geraci, Rushik Bhuva, Prasad Konda, Paschalis-Thomas Doulias, Harry Ischiropoulos, Raymond R Townsend, Kenneth B Margulies and 3 more

6 registry-linked trialsOpen access · bronzeAbstract readRandomized Controlled Trial
In one paragraph

Trial report in Circulation, 2015. The graph could read no effect estimate from its abstract, so it casts no vote on the map. It is linked to 6 registered trials, which are not on this map. Cited by 154 papers, 5 of them syntheses that pooled it.

0numbers the graph read from it
0cells of the map it votes in
154citing papers in PubMed, 5 pooled it
100.1field-weighted citation impact, top 1% of its field
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

NCT05719714 phase1 / phase2active not recruitingstarted 2024, after this paper: background citation

Effect of Dapagliflozin on Metabolomics and Cardiac Mechanics in Chronic Kidney Disease

Ran2024Enrolled18Registered outcomes5Posted comparisons0ConditionsChronic Kidney Diseases, Heart Failure, Heart Failure With Preserved Ejection Fraction, Kidney DiseasesArmsDapagliflozin 10 MG [Farxiga]
Open the trial in the graph
NCT01919177 phase2completednot on this map

Effect of Inorganic Nitrates on Arterial Hemodynamics and Exercise Capacity

TypeinterventionalSponsorCorporal Michael J. Crescenz VA Medical CenterRan2013 to 2014Enrolled17ConditionsHeart Failure With Normal Ejection FractionArmsNitrate rich beetroot juice, Nitrate depleted beetroot juice
NCT03832660 phase2completednot on this mapstarted 2019, after this paper: background citation

Clinical and Genetic Determinants of Disease Progression and Response to Sacubitril/Valsartan vs Lifestyle (Physical Activity and Dietary Nitrate) in Patients With Hypertrophic Cardiomyopathy

TypeinterventionalSponsorNewcastle UniversityRan2019 to 2022Enrolled168ConditionsHypertrophic CardiomyopathyArmsLifestyle, Sacubitril/Valsartan
NCT04434664 phase4completednot on this mapstarted 2021, after this paper: background citation

BLOCKade of Calcium Channels and Beta Adrenergic Receptors for the Treatment of Hypertension in Heart Failure With Preserved Ejection Fraction (BLOCK HFpEF) Trial

TypeinterventionalSponsorUniversity of PennsylvaniaRan2021 to 2024Enrolled50ConditionsHeart Failure With Preserved Ejection Fraction, HypertensionArmsAmlodipine Besylate, Metoprolol Succinate
NCT05366101 phase2 / phase3completednot on this mapstarted 2019, after this paper: background citation

Clinical and Genetic Determinants of Disease Progression and Response to Lifestyle and Pharmacological Interventions in Patients With Hypertrophic Cardiomyopathy

TypeinterventionalSponsorNewcastle-upon-Tyne Hospitals NHS TrustRan2019 to 2022Enrolled168ConditionsHypertrophic CardiomyopathyArmsSacubitril/Valsartan, Lifestyle
NCT07429396 not yet recruitingnot on this mapstarted 2026, after this paper: background citation

Data-Driven Phenotyping in Heart Failure With Preserved Ejection Fraction

TypeobservationalSponsorInstituto Politécnico de LeiriaRan2026 to 2028Enrolled200ConditionsHeart Failure, Heart Failure, Diastolic, Heart Failure With Preserved Ejection Fraction (HFPEF)
3 · Its place in the literature

Who cites it

154 citing papers in PubMed, 5 syntheses or guidelines pooled it, 301 citations in OpenAlex.

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94 more citing papers are in PubMed but not listed here.

4 · The record

Corrections and comments

5 · Who and what money

Authors and funding

13 authors at 3 institutions in 1 country.

Payman ZamaniFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Deepa RawatFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Prithvi Shiva-KumarFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Salvatore GeraciFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Rushik BhuvaFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Prasad KondaFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Paschalis-Thomas DouliasFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Harry IschiropoulosFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Raymond R TownsendFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Kenneth B MarguliesFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Thomas P CappolaFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
David C PooleFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.).
Julio A ChirinosFrom the Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Perelman School of Medicine, Philadelphia (P.Z., P.S.-K., P.K., K.B.M., T.P.C., J.A.C.); Division of Cardiology, Philadelphia Veterans Affairs Medical Center, Philadelphia, PA (D.R., P.S.-K., S.G., R.B., J.A.C.); Children's Hospital of Philadelphia Research Institute, Philadelphia, PA (P.-T.D., H.I.); Division of Nephrology/Hypertension. Perelman School of Medicine, University of Pennsylvania, Philadelphia (R.R.T.); and Departments of Kinesiology, Anatomy, and Physiology, Kansas State University, Manhattan (D.C.P.). Julio.Chirinos@uphs.upenn.edu.
Children's Hospital of Philadelphia · USUniversity of Pennsylvania · USVeterans Health Administration · US

Funding

Reactive Species in Vascular Disease: Mechanisms of InjuryR01HL054926 · NHLBI · UNIVERSITY OF PENNSYLVANIA · PI HARRY ISCHIROPOULOS · 1997 to 2023
$2.7M
NHLBI NIH HHS HL105993NHLBI NIH HHS HL110338NHLBI NIH HHS HL113777NHLBI NIH HHS HL54926NHLBI NIH HHS R01 HL054926NHLBI NIH HHS R01 HL105993NHLBI NIH HHS R21 HL113777NHLBI NIH HHS U10 HL110338
6 · The paper itself

Abstract

backgroundInorganic nitrate (NO3(-)), abundant in certain vegetables, is converted to nitrite by bacteria in the oral cavity. Nitrite can be converted to nitric oxide in the setting of hypoxia. We tested the hypothesis that NO3(-) supplementation improves exercise capacity in heart failure with preserved ejection fraction via specific adaptations to exercise. METHODS AND

resultsSeventeen subjects participated in this randomized, double-blind, crossover study comparing a single dose of NO3-rich beetroot juice (NO3(-), 12.9 mmol) with an identical nitrate-depleted placebo. Subjects performed supine-cycle maximal-effort cardiopulmonary exercise tests, with measurements of cardiac output and skeletal muscle oxygenation. We also assessed skeletal muscle oxidative function. Study end points included exercise efficiency (total work/total oxygen consumed), peak VO2, total work performed, vasodilatory reserve, forearm mitochondrial oxidative function, and augmentation index (a marker of arterial wave reflections, measured via radial arterial tonometry). Supplementation increased plasma nitric oxide metabolites (median, 326 versus 10 μmol/L; P=0.0003), peak VO2 (12.6±3.7 versus 11.6±3.1 mL O2·min(-1)·kg(-1); P=0.005), and total work performed (55.6±35.3 versus 49.2±28.9 kJ; P=0.04). However, efficiency was unchanged. NO3(-) led to greater reductions in systemic vascular resistance (-42.4±16.6% versus -31.8±20.3%; P=0.03) and increases in cardiac output (121.2±59.9% versus 88.7±53.3%; P=0.006) with exercise. NO3(-) reduced aortic augmentation index (132.2±16.7% versus 141.4±21.9%; P=0.03) and tended to improve mitochondrial oxidative function.

conclusionsNO3(-) increased exercise capacity in heart failure with preserved ejection fraction by targeting peripheral abnormalities. Efficiency did not change as a result of parallel increases in total work and VO2. NO3(-) increased exercise vasodilatory and cardiac output reserves. NO3(-) also reduced arterial wave reflections, which are linked to left ventricular diastolic dysfunction and remodeling. CLINICAL TRIAL REGISTRATION URL: www.clinicaltrials.gov. Unique identifier: NCT01919177.

Indexed as

AgedCross-Over StudiesDouble-Blind MethodExercise TestExercise ToleranceFemaleHeart FailureHumansMaleMiddle AgedNitratesOxygen ConsumptionStroke VolumeTreatment OutcomeNitratesexerciseheart failurenitratesnitric oxide

Identifiers

PMID25533966
PMCPMC5823250
OpenAlexW2000501615

What Socratic holds

Textmetadata
LicenceTDM
Read underepoch 390

Registered trials

Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.