Early cardiac remodeling in aortic coarctation: insights from fetal and neonatal functional and structural assessment

I Soveral1, F Crispi1,2,3, C Walter4

  • 1BCNatal-Barcelona Center for Maternal-Fetal and Neonatal Medicine (Hospital Clínic and Hospital Sant Joan de Déu), Barcelona, Spain.

Insights

Fetal coarctation of the aorta (CoA) causes unique cardiac remodeling with an elongated left ventricle (LV). Postnatal adaptation involves LV geometry changes and altered diastolic function, improving understanding of CoA evolution.

Area of Science:

  • Cardiovascular Research
  • Fetal Cardiology
  • Neonatal Adaptation

Background:

  • Coarctation of the aorta (CoA) is linked to left ventricular (LV) dysfunction in neonates and adults.
  • Cardiac structure and function in fetal CoA and early neonatal adaptation remain understudied.

Purpose of the Study:

  • To investigate cardiovascular structural remodeling and dysfunction in fetuses with CoA.
  • To analyze early postnatal cardiac adaptation in neonates with CoA.

Main Methods:

  • Prospective observational case-control study of fetuses with CoA and controls.
  • Comprehensive echocardiography in the third trimester and postnatally.
  • Microstructural analysis of fetal and neonatal CoA heart specimens using synchrotron tomography and histology.

Main Results:

  • Fetal CoA displayed significant left-to-right volume redistribution, right ventricular (RV) dominance, and LV elongation.
  • Biventricular function was preserved, with no observed ventricular hypertrophy in fetuses.
  • Postnatally, CoA neonates showed LV remodeling to a globular shape, preserved systolic function, altered diastolic parameters, and increased RV longitudinal function.

Conclusions:

  • Fetal CoA involves unique remodeling where the LV is smaller due to reduced volume load.
  • Postnatal adaptation leads to acute LV volume loading, changing geometry with higher filling velocities and preserved systolic function.
  • Findings enhance understanding of CoA's evolution from fetal to neonatal stages.
Abstract