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May 1, 2023Journal of Cardiovascular Medicine8 citations

From the phenotype to precision medicine: an update on the cardiomyopathies diagnostic workflow

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CACamillo AutoreHeart Failure / CardiomyopathyRBRiccardo BarianiElectrophysiologyBBBarbara BauceElectrophysiology

Key Result

A contemporary multidisciplinary approach to cardiomyopathies utilizing advanced imaging and genetics is essential for precise phenotypic and etiological diagnosis to guide tailored precision medicine.

Structured PICO

P
Population
Patients with cardiomyopathies (including hypertrophic, dilated, arrhythmogenic, restrictive, transthyretin cardiac amyloidosis, Fabry disease, and laminopathies)
I
Intervention
Precision medicine diagnostic workflow including advanced imaging, genetic testing, and multidisciplinary methodology, alongside tailored treatments (e.g., mavacamten, aficamten)

This review highlights the shift towards precision medicine in cardiomyopathies, emphasizing the need for comprehensive diagnostic workflows incorporating genetics and advanced imaging to guide emerging targeted therapies.

Abstract

Cardiomyopathies are disease of the cardiac muscle largely due to genetic alterations of proteins with 'structural' or 'functional' roles within the cardiomyocyte, going from the regulation of contraction-relaxation, metabolic and energetic processes to ionic fluxes. Modifications occurring to these proteins are responsible, in the vast majority of cases, for the phenotypic manifestations of the disease, including hypertrophic, dilated, arrhythmogenic and restrictive cardiomyopathies. Secondary nonhereditary causes to be excluded include infections, toxicity from drugs or alcohol or medications, hormonal imbalance and so on. Obtaining a phenotypic definition and an etiological diagnosis is becoming increasingly relevant and feasible, thanks to the availability of new tailored treatments and the diagnostic advancements made particularly in the field of genetics. This is, for example, the case for transthyretin cardiac amyloidosis, Fabry disease or dilated cardiomyopathies due to laminopathies. For these diseases, specific medications have been developed, and a more tailored arrhythmic risk stratification guides the implantation of a defibrillator. In addition, new medications directly targeting the altered protein responsible for the phenotype are becoming available (including the myosin inhibitors mavacantem and aficamten, monoclonal antibodies against Ras-MAPK, genetic therapies for sarcoglycanopathies), thus making a precision medicine approach less unrealistic even in the field of cardiomyopathies. For these reasons, a contemporary approach to cardiomyopathies must consider diagnostic algorithms founded on the clinical suspicion of the disease and developed towards a more precise phenotypic definition and etiological diagnosis, based on a multidisciplinary methodology putting together specialists from different disciplines, facilities for advanced imaging testing and genetic and anatomopathological competencies.

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Cite This Study

Autore et al. (2023) conducted a review in Cardiomyopathies. Precision medicine and diagnostic algorithms was evaluated. A contemporary multidisciplinary approach to cardiomyopathies utilizing advanced imaging and genetics is essential for precise phenotypic and etiological diagnosis to guide tailored precision medicine.

synapsesocial.com/papers/6a08dbc81b91a3b1ea5b6937https://doi.org/10.2459/jcm.0000000000001424
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