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Primary Cortisol Deficiency and Growth Hormone Deficiency in a Neonate With Hypoglycemia: Coincidence or Consequence?
Jasmine Gujral1, Mabel Yau1, Amy C Yang2
1Division of Pediatric Endocrinology and Diabetes, Mount Sinai Kravis Children's Hospital, Icahn School of Medicine at Mount Sinai, New York, New York.
Insights
Neonatal hypoglycemia can stem from cortisol and growth hormone (GH) deficiencies. This case shows an ACTH receptor defect causing transient GH deficiency, resolving with glucocorticoid replacement.
Area of Science:
- Pediatric Endocrinology
- Genetics
- Metabolic Disorders
Background:
- Neonatal hypoglycemia is a common concern, with cortisol and growth hormone (GH) deficiencies being potential causes.
- Coexisting deficiencies often suggest an underlying pituitary disorder.
Observation:
- A full-term infant presented with severe hypoglycemia and undetectable cortisol, alongside diffuse hyperpigmentation.
- Initial assessments indicated both cortisol and GH deficiency, with elevated ACTH levels.
- Genetic testing revealed a mutation in the melanocortin 2 receptor (MC2R) gene, confirming an ACTH receptor defect.
Findings:
- Glucocorticoid replacement normalized blood glucose and cholestasis, and reduced ACTH levels.
- Growth hormone (GH) secretion normalized without direct GH therapy, suggesting a link between glucocorticoid levels and GH secretion.
- The patient's GH levels and Insulin-like Growth Factor 1 (IGF-1) normalized over time with hydrocortisone treatment.
Implications:
- This case highlights that ACTH receptor defects can lead to transient GH deficiency in neonates.
- Physiologic glucocorticoid levels appear crucial for optimal GH secretion, as evidenced by the normalization of GH function upon glucocorticoid replacement.
- Understanding MC2R mutations is vital for diagnosing and managing neonatal hypoglycemia and associated endocrine dysfunctions.
Abstract:
Cortisol and growth hormone (GH) deficiencies are causes of neonatal hypoglycemia. When they coexist, a pituitary disorder is suspected. We present an infant with hypoglycemia in whom an ACTH receptor defect was associated with transient GH deficiency. A full-term boy with consanguineous parents presented with hypoglycemia (serum glucose 18 mg/dL) at 4 hours of life with undetectable serum cortisol (<1 μg/dL). Examination showed diffuse hyperpigmentation with normal male genitalia. Patient developed hyperbilirubinemia and elevated transaminase levels. GH levels of 6.8 ng/mL and 7.48 ng/mL during episodes of hypoglycemia, peak of 9.2 ng/mL with glucagon stimulation, and undetectable IGF-1 suggested GH deficiency. Thyroid function, prolactin, and gonadotropins were normal. Baseline ACTH was elevated at 4868 pg/mL, whereas serum cortisol remained undetectable with ACTH stimulation. Hydrocortisone replacement resulted in normalization of blood glucose and cholestasis with decline in ACTH level. GH therapy was not initiated, given improvement in cholestasis and euglycemia. An ACTH receptor defect was confirmed with molecular genetic testing that revealed homozygosity for a known mutation of the melanocortin 2 receptor (MC2R) gene. At 12 weeks, a random GH level was 10 ng/mL. IGF-1 was 75 ng/mL and 101 ng/mL at 7 and 9 months, respectively. This report describes glucocorticoid deficiency from an MC2R mutation associated with GH deficiency. With glucocorticoid replacement, GH secretion normalized. Our findings are consistent with a previously stated hypothesis that physiologic glucocorticoid levels may be required for optimal GH secretion [1].
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