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Tissue and Metabolic Characterization of Arrhythmogenic Cardiomyopathies by Hybrid PET-MRI Imaging, Impact of the Observed Profiles on the Phenotype and on the Evolution of Cardiomyopathy (CharACTPET-MR)

N

Nantes University Hospital (NUH)

Status

Enrolling

Conditions

Arrhythmogenic Cardiomyopathies

Treatments

Other: Biocollection

Study type

Observational

Funder types

Other

Identifiers

NCT05450783
RC22_0010

Details and patient eligibility

About

Status of the research project: The main complications of arrhythmogenic cardiomyopathies (AC) are sudden death, more rarely heart failure. Recently, data are emerging in favor of an associated role of myocardial inflammation and myocarditis in this pathology, but the impact of inflammation on the presentation and prognosis of the cardiomyopathy, as well as its mechanisms, are not clearly elucidated. To date, endomyocardial biopsy is the gold standard for documenting myocardial inflammation.

Aim of the research: To evaluate the interest of a new hybrid PET-MR imaging tool for tissue and metabolic characterization of AC associating MRI and 18F-FDG PET, already used in inflammatory pathologies (cardiac sarcoidosis).

Project description: Multicentric observational study of 80 patients with genetic AC undergoing PET-MR. Description of the observed profiles and their impact on the phenotype of the cardiomyopathy and its evolution, study of associated immunological mechanisms, correlation with available anatomopathological data.

Expected results and perspectives: first non-invasive description of tissue and metabolic phenotype of AC by PET-MR imaging and its prognostic role, basis for pathophysiological and therapeutic research in case of confirmation of the performances of this imaging for the detection of myocardial inflammation.

Full description

Status of the research project: The main complications of arrhythmogenic cardiomyopathies (AC) are sudden death, more rarely heart failure. Recently, data are emerging in favor of an associated role of myocardial inflammation and myocarditis in this pathology, but the impact of inflammation on the presentation and prognosis of the cardiomyopathy, as well as its mechanisms, are not clearly elucidated. To date, endomyocardial biopsy is the gold standard for documenting myocardial inflammation.

Aim of the research: To evaluate the interest of a new hybrid PET-MR imaging tool for tissue and metabolic characterization of AC associating MRI and 18F-FDG PET, already used in inflammatory pathologies (cardiac sarcoidosis).

Project description: Multicentric observational study of 80 patients with genetic AC undergoing PET-MR. Description of the observed profiles and their impact on the phenotype of the cardiomyopathy and its evolution, study of associated immunological mechanisms, correlation with available anatomopathological data.

Expected results and perspectives: first non-invasive description of tissue and metabolic phenotype of AC by PET-MR imaging and its prognostic role, basis for pathophysiological and therapeutic research in case of confirmation of the performances of this imaging for the detection of myocardial inflammation.

Enrollment

80 estimated patients

Sex

All

Ages

16 to 99 years old

Volunteers

No Healthy Volunteers

Inclusion criteria

  • Male and female over 16 years old

Exclusion criteria

  • Patients and their relatives with left ventricular or biventricular AC and carrier of a pathogenic or likely pathogenic variant in one of the following genes : PKP2, DSG2, DSC2, JUP, DSP, DES, FLNC, PLN, LMNA, TMEM43, CDH2, BAG3, RYR2, RBM20 Consent form

Exclusion Criteria :

  • Sarcoidosis or known or diagnosed autoimmune disease
  • History of myocardial infarction
  • Patient under guardianship, curatorship or safeguard of justice

Trial design

80 participants in 1 patient group

Patients group
Description:
Patients and their relatives affected with left ventricular or biventricular AC and carrier of a pathogenic or likely pathogenic variant in one of the following genes : PKP2, DSG2, DSC2, JUP, DSP, DES, FLNC, PLN, LMNA, TMEM43, CDH2, BAG3, RYR2, RBM20
Treatment:
Other: Biocollection

Trial contacts and locations

5

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Central trial contact

Nicolas Piriou, PH; Aurélie Thollet

Data sourced from clinicaltrials.gov

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