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Isolation of Neonatal Extrahepatic Cholangiocytes
Published on: June 5, 2014
Novel Melano-Cortin-2-Receptor Gene Mutation Presenting With Infantile Cholestasis: A Case Report
Abdulaziz Alsaedi1, Naglaa M Kamal2, Ayman Bakkar1
1Consultant Pediatric Endocrinologist, Alhada Armed Forces Hospital, Taif, Saudi Arabia.
Insights
Isolated cortisol deficiency can cause infantile cholestasis and liver failure. Prompt diagnosis and cortisol replacement therapy resolved cholestasis in a male infant with familial primary glucocorticoid deficiency.
Area of Science:
- Pediatric Endocrinology
- Hepatology
- Genetics
Background:
- Congenital panhypopituitarism is a known cause of infantile cholestasis.
- Isolated cortisol deficiency as a cause of cholestasis and liver failure is rarely reported.
Observation:
- A 32-day-old male infant presented with infantile cholestasis, progressing to acute liver failure and hypoglycemia.
- Hormonal workup and genetic testing revealed isolated cortisol deficiency due to a novel homozygous mutation in the Melanocortin 2 receptor gene (MC2R).
- The patient was diagnosed with familial primary glucocorticoid deficiency.
Findings:
- The infant exhibited elevated liver enzymes, hyperbilirubinemia, hypoglycemia, hyponatremia, and signs of adrenal insufficiency.
- A novel homozygous mutation c.763_764delAT (p. Met255ValfsX17) in the MC2R gene was identified.
- Cortisol replacement therapy led to the resolution of cholestasis and normalization of liver function tests.
Implications:
- Infantile cholestasis with hypoglycemia warrants investigation for familial glucocorticoid deficiency.
- Early diagnosis and cortisol replacement are crucial for managing this condition.
- This case highlights the importance of genetic testing in diagnosing rare endocrine disorders.
Introduction:
For many years, congenital panhypopituitarism has been recognized to cause infantile cholestasis. However, the isolated cortisol deficiency as a cause of cholestasis and liver failure was rarely reported.
Case Description:
A 32-days old male infant presented to the hepatology clinic with infantile cholestasis. His initial workup revealed alanine transaminase (ALT) level of 138 U/L, aspartate transaminase level of 76 U/L, total bilirubin (T.Bil) of 103 mmol/L, direct bilirubin of (D.Bil) 83 mmol/L, gamma-glutamyl transpeptidase (GGT) level of 28 U/L with normal prothrombin time (PT) of 13 seconds. One week later, the patient developed severe bronchiolitis necessitating mechanical ventilation associated with acute liver failure and worsening cholestasis. His ALT increased to 303.5 U/L and direct bilirubin increased to 204 mmol/L with prolongation of PT to 18.9 seconds reflecting derangement in synthetic liver functions. There was associated hypoglycemia, hyponatremia and high normal potassium level with a picture of adrenal insufficiency. Hormonal workup and genetic testing revealed isolated cortisol deficiency with a novel homozygous mutation c.763_764delAT (p. Met255ValfsX17) in Melanocortin 2 receptor gene (MC2R) and the patient was diagnosed as familial primary glucocorticoid deficiency. The patient was maintained on cortisol replacement therapy with the resolution of cholestasis and normalization of liver functions.
Conclusions:
Patients presenting with infantile cholestasis associated with documented hypoglycemia should alert pediatricians about the possibility of familial glucocorticoid deficiency and prompt investigation of adrenal function should be considered. Cortisol replacement therapy leads to the resolution of cholestasis.
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