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Completed

NCT Number: NCT04703361

Effects of Ketones and Niacin in Heart Failure Patients

Ketones, 3-hydroxybutyrate (3-OHB), have shown to have beneficial hemodynamics effect in patients with hearth failure with reduced ejection fraction. The mechanisms behind these marked hemodynamic effects are currently unknown, but could involve prostaglandin-release. 3-OHB is the endogenous ligand for the G protein-coupled receptor hydroxy-carboxylic acid 2 (HCA2) receptor. This receptor has proven downstream effects on cAMP and systemic effects via release of prostaglandins.

In this present study we will investigate the cardiovascular effects of HCA2-receptor stimulation in heart failure patients.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 2

Primary location

Aarhus University Hospital

Aarhus, 8200, Denmark

About this study

Heart Failure (HF) is a major public health issue because the disease affects 1-2% of the Western population and the lifetime risk of HF is 20%. HF is responsible for 1-2% of all healthcare expenditures and 5% of all hospital admissions. The cornerstone in the medical treatment of chronic HF is a combination of ACE-inhibitors/ATII-receptor antagonists, beta-blockers and mineralocorticoid receptor antagonists. Despite major improvements in the management and care of patients with HF, the 1-year mortality in patients with HF is 13 % 4 and >50% of HF-patients are admitted within a 2.5 year period 5. Furthermore, patients with HF have markedly decreased physical capacity and quality of life. Thus, there is a need for new treatment modalities in this group of patients.

Ketone bodies are produced in the liver and are crucial for energy generation during fasting in the heart and brain during, exercise and severe illnesses. However, ketosis can be safely obtained using dietary supplements and can increase exercise capacity in athletes. The most important ketone bodies are 3-hydroxybutyrate (3-OHB) and acetoacetate. Recently, it was demonstrated that patients with severe HF have increased myocardial utilization of the ketone body 3-OHB. It has been hypothesized that ketone bodies may act as a "superfuel" for the failing heart. In support of this, the glucose-lowering SGLT-2 inhibitor empagliflozin reduces the risk of hospitalizations and cardiovascular death in diabetic patients with HF and also increases circulating levels of 3-OHB.

By Positron Emission Tomography (PET) we have shown that ketone body infusion reduces myocardial glucose uptake and increases myocardial blood flow in healthy subjects. Data from another study conducted by our group show a 40% increase in cardiac output during infusion of 3-OHB. The mechanisms behind these marked hemodynamic effects are currently unknown, but could involve prostaglandin-release. 3-OHB is the endogenous ligand for the G protein-coupled receptor hydroxy-carboxylic acid 2 (HCA2) receptor. This receptor has proven downstream effects on cAMP and systemic effects via release of prostaglandins.

3-OHB have affinity to the HCA2 receptor and possibly a downstream effect resulting in the release of prostaglandins. The prostaglandin synthesis is dependent of cyclooxygenase (COX) enzyme, which can be inhibited by aspirin (ASA).

Niacin, vitamin B3, has been used as a treatment for dyslipidemia. Niacin is also a ligand for HCA2 receptor and the downstream release of prostaglandin cause side effects such as cutaneous flushing.

In this study we will investigate the cardiovascular effects of HCA2-receptor stimulation in heart failure patients. This will be done by comparing infusion of 3-OHB (preceded with ASA) and niacin.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Chronic heart failure, Age ≥ 18 years old, LVEF ≤40%, New York Heart Association (NYHA) classification 2-3, Negative urine-HCG for women of childbearing potential, Ability to understand the written patient information and to give informed consent.

Exclusion criteria

  • Symptomatic cardiac valve disease, Signs or history of major myocardial infarction (STEMI) within 1 month, Insulin treatment, Other disease or treatment making subject unsuitable for study participation as judged by the investigator.

Significant liver disease (defined by serum levels of alanine aminotransferase (ALAT) above 3 x upper limit of normal).

Treatment and study plan

Placebo NaCl

Biological

Placebo

Niacin

Biological

B3 vitamin, Niacin

Na-3-OHB

Biological

Na-3-OHB

Primary outcomes

  1. Cardiac Output

    Time frame: 3 hours

    L/min

Secondary outcomes

  1. Mixed venous saturation

    Time frame: 3 hours

    SvO2

  2. Pulmonary wedge pressure

    Time frame: 3 hours

    PWR

  3. Left ventricular ejection fraction

    Time frame: 3 hours

    EF

  4. Circulating prostaglandin levels

    Time frame: 3 hours

    prostaglandins

Sponsors and collaborators

Lead sponsor

University of Aarhus

Other

Registry information

Acronym: KETO-COX

Important dates

Study start
2021
Primary completion
2021
Study completion
2021
First posted
Jan 11, 2021
Registry last updated
Dec 3, 2021

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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