Skip to content

Effect of Antifibrotic Therapy on Regression of Myocardial Fibrosis After Transcatheter Aortic Valve Implantation (TAVI) in Aortic Stenosis Patients With High Fibrotic Burden

Effect of Antifibrotic Therapy on Regression of Myocardial Fibrosis After Transcatheter Aortic Valve Implantation (TAVI) in Aortic Stenosis Patients With High Fibrotic Burden

Status
Recruiting
Phases
Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05230901
Acronym
Reduce-MFA
Enrollment
300
Registered
2022-02-09
Start date
2022-02-23
Completion date
2026-03-31
Last updated
2022-06-28

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Aortic Stenosis, Severe

Brief summary

The aim of the study is to evaluate the effect of antifibrotic therapy on regression of myocardial fibrosis after TAVI in patients with baseline high fibrotic burden. Therefore, patients will be treated with Spironolactone in addition to standard of care, Spioronolactone + Dihydralazine in addition to standard of care or according to standard of care alone without any study medication. First, differences between patients in the control arm and patients randomized to anti-fibrotic therapy will be analyzed. The second analysis will determine, whether dihydralazine medication in addition to spironolactone is able to increase a potential antifibrotic effect. Myocardial fibrosis will be assessed by cardiac magnetic resonance imaging (CMR) before TAVI and 1 year after. Quantification of potentially irreversible replacement fibrosis will be carried out by late gadolinium enhancement (LGE), and quantification of the potentially reversible diffuse interstitial fibrosis will be performed by measurement of the extracellular volume fraction (ECV), thereby deriving matrix volume and cell volume.

Interventions

OTHERStandard of Care

Patients with CMR-derived ECV% levels ≥25.9% will be treated with standard of care according to current guidelines (Control group).

Patients with CMR-derived ECV% levels ≥25.9% in Arm Spironolactone will receive spironolactone 25 mg/d in addition to standard of care medication .

Patients with CMR-derived ECV% levels ≥25.9% in arm Spironolactone + Dihydralazine will receive spironolactone 25 mg/d + dihydralazine (2x12.5 mg/d p.o. in slow acethylators, and 2x25mg/d p.o. in fast acethylators, confirmed by genetic testing)

Sponsors

University Medical Center Goettingen
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
60 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Male, female age ≥ 60 * Diagnosis of severe symptomatic aortic stenosis * Transcatheter aortic valve implantation (TAVI) scheduled * Written informed consent

Exclusion criteria

* 1\. Pre-existing dilative or ischemic heart disease with EF\<35% and guideline indication for spironolactone * Patient on current medication with spironolactone, eplerenone, or dihydralazine * Presence of coexistent myocardial pathology such as cardiac amyloidosis, hypertrophic cardiomyopathy, or myocarditis * Presence of coexistent severe aortic regurgitation or severe mitral stenosis * Previous surgical valve replacement or repair * Pacemaker or ICD implanted * Renal impairment (serum creatinine \> 1,8 mg/dl and/ or GFR \< 30 ml/min/1,73 m² BSA) * Significant hypotension (blood pressure \< 90 mm Hg systolic and/or \< 50 mm Hg diastolic * Serum potassium \> 5,1 mmol/l * Contraindications for Spironolactone (anuria, acute renal failure, serum creatinine \> 1.8 mg/dl, hyperkalemia, pregnancy) * Contraindications for Dihydralazine (known allergy or hypersensitivity, systemic lupus erythematodes, adrenocortical disorders) * Known active malignant disease with life expectancy \< 1 year * Women with child-bearing potential * Simultaneous participation (including a waiting period of 4 weeks) in other interventional clinical trials * Patient without legal capacity who is unable to understand the nature, significance and consequences of the trial * Person who is in a relationship of dependence/employment with the sponsor or the investigator

Design outcomes

Primary

MeasureTime frameDescription
Extracellular volume (ECV)-derived matrix volume (measured by CMR)12 monthsDifferences between treatment groups in reduction of extracellular volume (ECV)- derived matrix volume (measured by CMR) after 12 months

Secondary

MeasureTime frameDescription
Global longitudinal strain12 monthsDifferences in recovery of global longitudinal strain (GLS) in % (measured by CMR) after 12 months
diastolic function12 monthsDifferences in recovery of diastolic function (measured by CMR) after 12 months
Left ventricular myocardial tissue volumes12 monthsDifferences in reduction of left ventricular myocardial tissue volumes (measured by CMR) after 12 months
Left ventricular blood volumes12 monthsDifferences in reduction of left ventricular blood volumes (measured by CMR) after 12 months
Kansas City Cardiomyopathy Questionnaire12 monthsDifferences in quality of life changes according to 23-items Kansas City Cardiomyopathy Questionnaire (KCCQ) after 12 months
NYHA status12 monthsDifferences in NYHA status after 12 months
6min-walking test distance (6MWT)12 monthsDifferences in 6min-walking test distance (6MWT; in m) after 12 months
NT-proBNP-levels12 monthsDifferences in NT-proBNP-levels (in pg/ml) after 12 months
Heart failure hospitalizations12 monthsRate of Heart failure hospitalizations within 12 months
Total mortality12 monthsRate of total mortality within 12 months
Cardiovascular mortality12 monthsRate of Cardiovascular mortality within 12 months
Biomarker Procollagen type I carboxy-terminal propeptide (PICP)12 monthsMeasurement of PICP in ng/ml
Biomarker Procollagen III N-terminal propeptid (PIIINP)12 monthsMeasurement of PIIINP in ng/ml
Left ventricular ejection fraction12 monthsDifferences in recovery of left ventricular ejection fraction (EF) in % (measured by CMR) after 12 months
Methylation of Iroquois Homeobox 3 (IRX3)12 monthsMeasurement of Methylation of IRX3 in %
Methylation of rfGAP With Coiled-Coil, Ankyrin Repeat And PH Domains 3 (ACAP3)12 monthsMeasurement of Methylation of ACAP3 in %
Methylation of Growth Arrest And DNA Damage Inducible Gamma (GADD45G)12 monthsMeasurement of Methylation of GADD45G in %
Methylation of Chordin (CHRD)12 monthsMeasurement of Methylation of CHRD in %
Methylation of Klotho12 monthsMeasurement of Methylation of Klotho in %
Methylation of RAS Protein Activator Like 1 (RASAL1)12 monthsMeasurement of Methylation of RASAL1 in %
Methylation of ATPase Sarcoplasmic/Endoplasmic Reticulum Ca2+ Transporting 2 (ATP2A2)12 monthsMeasurement of Methylation of ATP2A2 in %
Methylation of B9 Domain Containing 1 (B9D1)12 monthsMeasurement of Methylation of B9D1 in %
Methylation of Bone Morphogenetic Protein 7 (BMP7)12 monthsMeasurement of Methylation of BMP7 in %
Methylation of Latency associated peptide (LAP)12 monthsMeasurement of Methylation of LAP in %
Serum creatinine12 monthsChange in serum creatinine (in mg/dl) after 12 months
Cystatin c12 monthsChange in cystatin c (in mg/l) after 12 months
Phosphate12 monthsChange in phosphate (in mmol/l) after 12 months
Ratio of Increased collagen degradation (CITP) vs. matrix metalloproteinase-1 (MMP-1)12 monthsMeasurement of CITP (in ng/l) and MMP-1 (in ng/ml)

Countries

Germany

Contacts

Primary ContactMiriam Puls, Prof.
dr.m.puls@med.uni-goettingen.de+49 551 3910958
Backup ContactFlorian Walker, Dr.
florian.walker@med.uni-goettingen.de+49 551 3960825

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026