Familial defective apolipoprotein B versus familial hypercholesterolemia: an assessment of risk

Sigrid W Fouchier1, Joep C Defesche, John J P Kastelein

  • 1Department of Vascular Medicine, Academic Medical Center at the University of Amsterdam, 1100 DD Amsterdam, The Netherlands.

Insights

Familial defective apolipoprotein B (FDB) and familial hypercholesterolemia (FH) increase risks for coronary artery disease (CAD). FDB patients have lower cholesterol and CAD risk than FH patients, but still higher than unaffected individuals.

Area of Science:

  • Cardiovascular Genetics
  • Lipid Metabolism
  • Atherosclerosis Research

Background:

  • Familial hypercholesterolemia (FH) and familial defective apolipoprotein B (FDB) are genetic disorders causing high LDL-cholesterol and premature coronary artery disease (CAD).
  • Previous FDB studies had referral bias; this study assesses FDB phenotype without CAD selection bias.

Purpose of the Study:

  • To compare the atherosclerotic burden in FDB patients with heterozygous FH.
  • To evaluate the clinical phenotype of FDB in a population screened for inherited hypercholesterolemia.

Main Methods:

  • Active recruitment in a large-scale inherited hypercholesterolemia screening program.
  • Molecular techniques used to diagnose FH and FDB heterozygotes.
  • Comparison of lipid levels and CAD risk between FH, FDB, and unaffected relatives.

Main Results:

  • Both FH and FDB patients showed significantly higher total and LDL-cholesterol than relatives.
  • 19% of FDB carriers and 17% of non-carriers could be misdiagnosed by cholesterol alone.
  • FH patients had 8.5x CAD risk; FDB patients had 2.7x CAD risk vs. unaffected relatives.
  • FDB patients exhibited lower cholesterol and CAD risk compared to FH heterozygotes.

Conclusions:

  • FDB patients, despite lower lipid levels and CAD risk than FH, face significantly elevated CAD risk compared to unaffected individuals.
  • Molecular diagnosis is crucial as cholesterol levels alone can misdiagnose FDB.
  • This study provides unbiased data on FDB phenotype and CAD risk.

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