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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.
Aim:
To describe the presenting features and molecular genetics of primary hyperparathyroidism (PHPT) in the paediatric population.
Methods:
Retrospective study of 63 children diagnosed with primary PHPT from 1998 to 2018.
Results:
Compared to older children, infants were often asymptomatic (54% vs 15%, P = 0.002) with a milder form of PHPT. When symptomatic, children and adolescents mostly presented with non-specific complaints such as asthenia, depression, weight loss, vomiting or abdominal pain. A genetic cause of PHPT was identified in about half of this cohort (52%). The infancy period was almost exclusively associated with mutation in genes involved in the calcium-sensing receptor (CaSR) signalling pathway (i.e. CaSR and AP2S1 genes, 'CaSR group'; 94% of infants with mutations) whereas childhood and adolescence were associated with mutation in genes involved in parathyroid cell proliferation (i.e. MEN1, CDC73, CDKN1B and RET genes, 'cell proliferation group'; 69% of children and adolescents with mutations). Although serum calcium levels did not differ between the two groups (P = 0.785), serum PTH levels and the urinary calcium/creatinine ratio were significantly higher in 'cell proliferation group' patients compared to those in the 'CaSR group' (P = 0.001 and 0.028, respectively).
Conclusion:
Although far less common than in adults, PHPT can develop in children and is associated with significant morbidity. Consequently, this diagnosis should be considered in children with non-specific complaints and lead to monitoring of mineral homeostasis parameters. A genetic cause of PHPT can be identified in about half of these patients.
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