Liver disease in infancy caused by oxysterol 7 α-hydroxylase deficiency: successful treatment with chenodeoxycholic

Insights

This case study highlights a rare genetic liver disease caused by oxysterol 7 α-hydroxylase deficiency. Chenodeoxycholic acid (CDCA) treatment rapidly improved liver function and patient health by reducing toxic bile acids.

Area of Science:

  • Biochemistry
  • Genetics
  • Hepatology

Background:

  • Oxysterol 7 α-hydroxylase deficiency is a rare genetic disorder affecting bile acid synthesis.
  • This condition can lead to severe liver dysfunction and neurological complications in children.

Observation:

  • A child of Pakistani origin presented with jaundice, coagulopathy, hypoalbuminemia, and hypoglycemia.
  • Genetic analysis revealed a homozygous mutation in CYP7B1, confirming oxysterol 7 α-hydroxylase deficiency.
  • Elevated levels of hepatotoxic 3β-hydroxy-Δ5 bile acids were detected in plasma and urine.

Findings:

  • Ursodeoxycholic acid (UDCA) treatment worsened the patient's condition.
  • Chenodeoxycholic acid (CDCA) administration led to rapid clinical improvement and normalization of liver function tests.
  • Liver biopsy showed resolution of giant cell hepatitis and micronodular cirrhosis after CDCA treatment.
  • CDCA treatment decreased plasma and urinary concentrations of toxic 3β-hydroxy-Δ5 bile acids.

Implications:

  • CDCA therapy is effective in managing oxysterol 7 α-hydroxylase deficiency.
  • CDCA may reduce cholesterol 27-hydroxylase activity, a key enzyme in bile acid synthesis.
  • This case underscores the importance of early diagnosis and targeted bile acid therapy for genetic liver diseases.

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