Long-Term Clinical-Pathologic Results of Enzyme Replacement Therapy in Prehypertrophic Fabry Disease Cardiomyopathy.

Fabry disease cardiomyopathy enzyme replacement therapy globotrioasylceramide mannose‐6‐phosphate receptors

Journal

Journal of the American Heart Association
ISSN: 2047-9980
Titre abrégé: J Am Heart Assoc
Pays: England
ID NLM: 101580524

Informations de publication

Date de publication:
02 Apr 2024
Historique:
medline: 2 4 2024
pubmed: 2 4 2024
entrez: 2 4 2024
Statut: aheadofprint

Résumé

The limited ability of enzyme replacement therapy (ERT) in removing globotriaosylceramide from cardiomyocytes is recognized for advanced Fabry disease cardiomyopathy (FDCM). Prehypertrophic FDCM is believed to be cured or stabilized by ERT. However, no pathologic confirmation is available. We report here on the long-term clinical-pathologic impact of ERT on prehypertrophic FDCM. Fifteen patients with Fabry disease with left ventricular maximal wall thickness ≤10.5 mm at cardiac magnetic resonance required endomyocardial biopsy because of angina and ventricular arrhythmias. Endomyocardial biopsy showed coronary small-vessel disease in the angina cohort, and vacuoles in smooth muscle cells and cardiomyocytes ≈20% of the cell surface containing myelin bodies at electron microscopy. Patients received α-agalsidase in 8 cases, and β-agalsidase in 7 cases. Both groups experienced symptom improvement except 1 patients treated with α-agalsidase and 1 treated with β-agalsidase. After ERT administration ranging from 4 to 20 years, all patients had control cardiac magnetic resonance and left ventricular endomyocardial biopsy because of persistence of symptoms or patient inquiry on disease resolution. In 13 asymptomatic patients with FDCM, left ventricular maximal wall thickness and left ventricular mass, cardiomyocyte diameter, vacuole surface/cell surface ratio, and vessels remained unchanged or minimally increased (left ventricular mass increased by <2%) even after 20 years of observation, and storage material was still present at electron microscopy. In 2 symptomatic patients, FDCM progressed, with larger and more engulfed by globotriaosylceramide myocytes being associated with myocardial virus-negative lymphocytic inflammation. ERT stabilizes storage deposits and myocyte dimensions in 87% of patients with prehypertrophic FDCM. Globotriaosylceramide is never completely removed even after long-term treatment. Immune-mediated myocardial inflammation can overlap, limiting ERT activity.

Sections du résumé

BACKGROUND BACKGROUND
The limited ability of enzyme replacement therapy (ERT) in removing globotriaosylceramide from cardiomyocytes is recognized for advanced Fabry disease cardiomyopathy (FDCM). Prehypertrophic FDCM is believed to be cured or stabilized by ERT. However, no pathologic confirmation is available. We report here on the long-term clinical-pathologic impact of ERT on prehypertrophic FDCM.
METHODS AND RESULTS RESULTS
Fifteen patients with Fabry disease with left ventricular maximal wall thickness ≤10.5 mm at cardiac magnetic resonance required endomyocardial biopsy because of angina and ventricular arrhythmias. Endomyocardial biopsy showed coronary small-vessel disease in the angina cohort, and vacuoles in smooth muscle cells and cardiomyocytes ≈20% of the cell surface containing myelin bodies at electron microscopy. Patients received α-agalsidase in 8 cases, and β-agalsidase in 7 cases. Both groups experienced symptom improvement except 1 patients treated with α-agalsidase and 1 treated with β-agalsidase. After ERT administration ranging from 4 to 20 years, all patients had control cardiac magnetic resonance and left ventricular endomyocardial biopsy because of persistence of symptoms or patient inquiry on disease resolution. In 13 asymptomatic patients with FDCM, left ventricular maximal wall thickness and left ventricular mass, cardiomyocyte diameter, vacuole surface/cell surface ratio, and vessels remained unchanged or minimally increased (left ventricular mass increased by <2%) even after 20 years of observation, and storage material was still present at electron microscopy. In 2 symptomatic patients, FDCM progressed, with larger and more engulfed by globotriaosylceramide myocytes being associated with myocardial virus-negative lymphocytic inflammation.
CONCLUSIONS CONCLUSIONS
ERT stabilizes storage deposits and myocyte dimensions in 87% of patients with prehypertrophic FDCM. Globotriaosylceramide is never completely removed even after long-term treatment. Immune-mediated myocardial inflammation can overlap, limiting ERT activity.

Identifiants

pubmed: 38563373
doi: 10.1161/JAHA.123.032734
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

e032734

Auteurs

Andrea Frustaci (A)

Cellular and Molecular Cardiology Lab IRCCS L. Spallanzani Rome Italy.

Romina Verardo (R)

Cellular and Molecular Cardiology Lab IRCCS L. Spallanzani Rome Italy.

Nicola Galea (N)

Department of Clinical, Internal, Anesthesiology and Cardiovascular Sciences Sapienza University of Rome Rome Italy.

Maria Alfarano (M)

Department of Clinical, Internal, Anesthesiology and Cardiovascular Sciences Sapienza University of Rome Rome Italy.

Michele Magnocavallo (M)

Cardiology Division, Arrhythmology Unit S. Giovanni Calibita Hospital Rome Italy.

Livia Marchitelli (L)

Department of Radiological, Oncological, and Pathological Anatomy Sciences Sapienza University of Rome Rome Italy.

Luigi Sansone (L)

Department of Human Sciences and Promotion of the Quality of Life San Raffaele Roma Open University Rome Italy.
Laboratory of Molecular and Cellular Pathology IRCCS San Raffaele Roma Rome Italy.

Manuel Belli (M)

Department of Human Sciences and Promotion of the Quality of Life San Raffaele Roma Open University Rome Italy.
Laboratory of Molecular and Cellular Pathology IRCCS San Raffaele Roma Rome Italy.

Mario Cristina (M)

Department of Molecular Medicine Sapienza University of Rome Rome Italy.
MEBIC Consortium and IRCCS San Raffaele Roma Rome Italy.

Emanuela Frustaci (E)

Department of Molecular Medicine Sapienza University of Rome Rome Italy.
Technoscience, Parco Scientifico e Tecnologico Pontino Latina Italy.
MEBIC Consortium and IRCCS San Raffaele Roma Rome Italy.

Matteo Antonio Russo (MA)

MEBIC Consortium and IRCCS San Raffaele Roma Rome Italy.

Cristina Chimenti (C)

Department of Clinical, Internal, Anesthesiology and Cardiovascular Sciences Sapienza University of Rome Rome Italy.

Classifications MeSH