University Heart Center Zurich
Zurich, 8091, Switzerland
NCT Number: NCT04869124
The purpose of the DAPA-VOLVO trial is to investigate the effects of Dapagliflozin on top of recommended standard therapy on volume status and vascular function in clinically stable de novo or chronic heart failure patients after hospitalization because of an acute decompensated heart failure event.
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Notify Me18 year and older
All sexes
Interventional
Phase 4
Zurich, 8091, Switzerland
Recent clinical trials found that Dapagliflozin can reduce the risk of cardiovascular events, hospitalization and death in heart failure (HF) patients with reduced left ventricular ejection fraction (HFrEF) in the presence of absence of diabetes. Additional trials are ongoing to investigate whether these results can be translated also to HF-patients with preserved ejection fraction (HFpEF). However, the underlying mechanisms leading to the improved clinical outcomes are not completely understood but the beneficial effects of Dapagliflozin on volume status and vascular function are discussed as potential key factors. This study is designed as a mechanistic study to investigate the impact of Dapagliflozin on volume status and vascular function in clinically stable de novo or chronic heart failure patients after hospitalization/ ambulatory care because of an acute decompensated heart failure (ADHF) event. After being informed about the study and potential risks all patients given written informed consent will be screened for the defined eligibility criteria and thereafter randomized in a double-blind manner (patients, investigators) 1:1 ratio to either receive the sodium-glucose co-transporter 2 inhibitor (SGLT2i) Dapagliflozin (10mg/day) or Placebo on top of recommended standard therapy for in total 12 weeks. The results of this study may provide new mechanistic insight into the beneficial effects of Dapagliflozin on volume regulation and vascular function and have great potential to contribute to change current clinical guidelines in the management of patients with heart failure.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Dapagliflozin propanediol (FORXIGA) tablet: 10 mg once daily p.o. on top of recommended standard therapy, duration of administration: 12 weeks.
Other names: Forxiga
Placebo tablet, matching Dapagliflozin, once daily p.o. on top of recommended standard therapy, duration of administration: 12 weeks.
Time frame: Change between baseline (0 weeks) and after 2, 6 and 12 weeks of treatment.
Change in relative plasma volume status (PVS) from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The plasma volume (PV) will be measured via optimized CO-rebreathing technique.
Time frame: Change between baseline (0 weeks) and after 2, 6 and 12 weeks of treatment.
Change in BV from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The BV will be measured via optimized CO-rebreathing technique.
Time frame: Change between baseline (0 weeks) and after 2, 6 and 12 weeks of treatment.
Change in RBCV from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The RBCV will be measured via optimized CO-rebreathing technique.
Time frame: Change between baseline (0 weeks) and after 2, 6 and 12 weeks of treatment.
Change in Hbmass from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The Hbmass will be measured via optimized CO-rebreathing technique.
Time frame: Change between baseline (0 weeks) and after 2, 6 and 12 weeks of treatment.
Change in ECW/TBW ratio from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The ECW/TBW ratio will be measured via direct segmental multi-frequency bioelectrical impedance analaysis (DSM-BIA).
Time frame: Change between baseline (0 weeks) and after 2, 6 and 12 weeks of treatment.
Change in ICW/TBW ratio from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The ICW/TBW ratio will be measured via direct segmental multi-frequency bioelectrical impedance analaysis (DSM-BIA).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in FIDa from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The FIDa will be measured via dynamic retinal vessel analysis (DVA).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in FIDv from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The FIDv will be measured via dynamic retinal vessel analysis (DVA).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in AVR from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The AVR will be measured via static retinal vessel analysis (SVA).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in PWV from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The PWV as measure of arterial stiffness (AS) will be assessed via planar tonometry pulse wave analysis (PWA).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in FMD from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The FMD as measure of endothelial function will be assessed via arm sonography and short-term cuff-mediated arm ischemia.
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in GTN-induced dilatation of the brachial artery from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The GTN-induced dilatation of the brachial artery will be measured via arm sonography and sublingual GTN-puff.
Time frame: From baseline (0 weeks) to 12 weeks of treatment.
The first episode of WHF from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. WHF is defined as requiring intensification of therapy in the ambulatory or hospital setting including i.v. diuretics, i.v. nitrates, or other medications for HF, or institution of mechanical or ventilator support.
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in KCCQ overall score from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The KCCQ as a measure of HF-related quality of life will be assessed as self-administered 23-itmes questionnaire.
The KCCQ-score range: from 0 (worst) to 100 (best).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in PSQI total score from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed.The PSQI as a measure of sleep quality will be assessed as self-administered 19-itmes questionnaire.
The PSQI-score range: 0 (best) to 21 (worst).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change LVEF from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The LVEF will be measured via transthoracic echocardiography (TTE).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change PASP from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The PASP will be measured via transthoracic echocardiography (TTE).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in VO2peak from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The VO2peak as a measure of aerobic capacity will be assessed via cardio-pulmonary exercise test (CPET).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in VE/PETCO2 slope from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The VE/PETCO2 slope as a prognostic marker in HF will be assessed via cardio-pulmonary exercise test (CPET).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in MSNA stimulus response from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The MSNA will be measured via transcutanous microneurography before and after cold pressor test (CPT).
Time frame: Change between baseline (0 weeks) and after 12 weeks of treatment.
Change in Skin-Na from baseline to 12 weeks of dapagliflozin treatment in comparison to placebo will be assessed. The Skin-Na will be measured via 23Na-magnetic resonance imaging (23Na-MRI) technique.
Frank Ruschitzka
Other
Effects of Dapagliflozin on Blood Volume Status and Vascular Function in Clinically Compensated Heart Failure Patients After an Acute Heart Failure Event.
Acronym: DAPA-VOLVO
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)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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