Clinical Characteristics and Outcomes of Cardiomyopathy in Barth Syndrome: The UK Experience

Sok-Leng Kang1, Jonathan Forsey2, Declan Dudley3

  • 1Department of Paediatric Cardiology, Bristol Royal Hospital for Children, Paul O'Gorman Building, Upper Maudlin Street, Bristol, BS2 8BJ, UK. soklengkang@doctors.org.uk.

Pediatric Cardiology
|September 5, 2015
PubMed

Insights

Barth syndrome (BTHS) patients show improved cardiac function by conventional measures, but advanced strain analysis reveals persistent myocardial deformation and abnormal rotation, impacting long-term outcomes.

Area of Science:

  • Cardiology
  • Genetics
  • Pediatrics

Background:

  • Barth syndrome (BTHS) is a rare X-linked disorder affecting multiple organ systems, notably causing cardiomyopathy.
  • Understanding the long-term cardiac outcomes in BTHS is crucial for patient management.

Purpose of the Study:

  • To evaluate the clinical experience and echocardiographic outcomes of cardiomyopathy in UK patients with Barth syndrome.
  • To assess left ventricular function using advanced strain analysis in BTHS patients.

Main Methods:

  • Retrospective review of UK national clinical data for BTHS patients from 2004-2014.
  • Echocardiographic assessment including conventional measures and 2D speckle tracking strain analysis.

Main Results:

  • Of 27 patients, 22 survived with a median age of 12.6 years; 7 underwent cardiac transplantation, and 5 died (18.5%) due to cardiomyopathy.
  • Conventional echocardiographic measures like fractional shortening tended to normalize after age 3.
  • Strain analysis revealed significantly reduced global longitudinal and circumferential strain, abnormal apical rotation, and reduced left ventricular twist in BTHS patients compared to controls (p < 0.001).

Conclusions:

  • The cardiac phenotype in Barth syndrome is variable, but long-term prognosis appears favorable after the first five years.
  • Despite seemingly normal conventional echocardiographic function, BTHS patients exhibit impaired myocardial deformation and rotational mechanics, highlighting the utility of strain analysis for comprehensive cardiac assessment.

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