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January 29, 2021International Heart Journal5 citationsOpen Access

Subclinical Cardiomyopathy in Miyoshi Myopathy Detected by Late Gadolinium Enhancement Cardiac Magnetic Resonance Imaging

STSarah Ming Li TanCOChing Ching OngKTKong Bing Tan

Key Result

Late gadolinium enhancement cardiac magnetic resonance imaging detected subclinical mid-wall myocardial fibrosis in a 35-year-old woman with Miyoshi myopathy.

Study Design

Type

Case Report (n=1)

Structured PICO

P
Population
A 35-year-old woman with Miyoshi myopathy who was incidentally found to have subclinical mid-wall myocardial fibrosis on cardiac magnetic resonance imaging.
E
Exposure
Cardiac magnetic resonance (CMR) imaging with late gadolinium enhancement (LGE)
O
Outcome
Detection of subclinical myocardial fibrosissurrogate

CMR with late gadolinium enhancement can detect subclinical myocardial fibrosis in patients with Miyoshi myopathy, suggesting a potential role for routine cardiac screening in dysferlinopathies.

Limitations

  • Late gadolinium enhancement is not disease-specific.
  • Unable to categorically rule out other causes of cardiomyopathy without endocardial biopsy.
  • Findings are based on a single case report, limiting generalizability.
  • LGE is not disease-specific
  • Unable to categorically rule out other causes of cardiomyopathy without endocardial biopsy

Abstract

Dysferlin is a sarcolemmal protein present in muscle cells. It is responsible for muscle membrane repair. Dysferlin gene (DYSF) mutation, resulting in deficiency in this protein, is termed dysferlinopathy. Clinically, it manifests as early adulthood onset of muscle weakness with markedly elevated creatine kinase levels. The main phenotypes are limb-girdle muscular dystrophy type 2B (LGMD2B), affecting proximal muscles, and Miyoshi myopathy (MM), affecting distal muscles. Dysferlin is also present in cardiomyocytes, and case reports have emerged of cardiac abnormalities in dysferlinopathy. While routine methods of cardiac screening, namely, electrocardiography or echocardiography, are convenient and noninvasive, they often exhibit insufficient diagnostic sensitivity for detecting subclinical cardiac remodeling during early stages of cardiomyopathy. Cardiac magnetic resonance imaging though can provide accurate assessment of cardiac chamber sizes and function. With gadolinium administration, it can also detect areas of myocardial scarring and fibrosis. Early diagnosis of neuromuscular disease-related cardiomyopathy is of clinical significance, as appropriate treatment can retard myocardial fibrosis, delaying cardiomyopathy progression. We present a case of a patient with MM incidentally diagnosed with concomitant cardiomyopathy.

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Cite This Study

Tan et al. (2021) conducted a case report in Miyoshi Myopathy (n=1). Late Gadolinium Enhancement Cardiac Magnetic Resonance Imaging was evaluated on Detection of subclinical myocardial fibrosis. Late gadolinium enhancement cardiac magnetic resonance imaging detected subclinical mid-wall myocardial fibrosis in a 35-year-old woman with Miyoshi myopathy.

synapsesocial.com/papers/6a9d82b715f03e7590bf1c51https://doi.org/10.1536/ihj.20-354
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Phenotypic Study in 40 Patients With Dysferlin Gene Mutations2007 · 266 citations
  2. 2Late Gadolinium Enhancement on Cardiac Magnetic Resonance Predicts Adverse Cardiovascular Outcomes in Nonischemic Cardiomyopathy2013 · 384 citations
  3. 3Respiratory and cardiac function in japanese patients with dysferlinopathy2015 · 29 citations
  4. 4Early detection of cardiac involvement in Miyoshi myopathy: 2D strain echocardiography and late gadolinium enhancement cardiovascular magnetic resonance2010 · 39 citations
  5. 5The Added Value of Cardiac Magnetic Resonance in Muscular Dystrophies2019 · 23 citations