Presenting features and molecular genetics of primary hyperparathyroidism in the paediatric population

Yasmine El Allali1, Coralie Hermetet2, Justine Bacchetta3

  • 1Paediatric Unit, Blois General Hospital, Blois, France.

Insights

Primary hyperparathyroidism (PHPT) in children presents differently based on age, with infants often asymptomatic and older children experiencing non-specific symptoms. Genetic mutations are found in about half of pediatric PHPT cases, influencing disease presentation.

Area of Science:

  • Pediatric Endocrinology
  • Medical Genetics
  • Biochemistry

Background:

  • Primary hyperparathyroidism (PHPT) is rare in children but can lead to significant health issues.
  • Understanding the distinct clinical and genetic features of pediatric PHPT is crucial for timely diagnosis and management.

Purpose of the Study:

  • To characterize the clinical presentation and molecular genetic underpinnings of primary hyperparathyroidism in the pediatric population.
  • To differentiate PHPT features between infants and older children/adolescents.

Main Methods:

  • Retrospective analysis of 63 pediatric patients diagnosed with PHPT between 1998 and 2018.
  • Categorization of patients into 'CaSR group' (calcium-sensing receptor pathway mutations) and 'cell proliferation group' (parathyroid cell proliferation gene mutations).

Main Results:

  • Infants with PHPT were more frequently asymptomatic (54%) and had milder disease compared to symptomatic older children (15%).
  • Genetic mutations were identified in 52% of cases, with distinct gene associations based on age: CaSR pathway genes in infants and cell proliferation genes in older children.
  • The 'cell proliferation group' exhibited higher serum PTH and urinary calcium/creatinine ratios than the 'CaSR group'.

Conclusions:

  • Pediatric PHPT, though uncommon, necessitates consideration in children with nonspecific symptoms due to associated morbidity.
  • Genetic testing can identify the cause in approximately half of pediatric PHPT cases, guiding tailored management.
  • Monitoring mineral homeostasis is essential for children diagnosed with PHPT.
Abstract

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