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Diverse genetic aetiologies and clinical outcomes of paediatric hypoparathyroidism
Ja Hye Kim1, Young-Lim Shin2, Seung Yang3
1Department of Paediatrics, Asan Medical Centre Children's Hospital, University of Ulsan College of Medicine, Seoul, Korea.
Insights
Genetic causes are key in pediatric hypoparathyroidism, with 22q11.2 microdeletion syndrome being most common. Early diagnosis and genetic identification aid in predicting outcomes and managing potential renal complications from treatment.
Area of Science:
- Pediatric Endocrinology
- Genetics
- Metabolic Disorders
Background:
- Hypoparathyroidism presents with hypocalcemia, hyperphosphatemia, and abnormal parathyroid hormone (PTH) levels.
- Genetic and idiopathic factors are primary causes in pediatric patients.
Purpose of the Study:
- To investigate the causes and clinical progression of primary hypoparathyroidism in infants and children.
- To analyze the genetic etiologies, clinical presentation, and long-term outcomes.
Main Methods:
- Retrospective analysis of 37 pediatric patients diagnosed with primary hypoparathyroidism before age 18.
- Evaluation of etiologies, initial symptoms, age at diagnosis, endocrine/radiological findings, and treatment outcomes.
Main Results:
- 22q11.2 microdeletion syndrome accounted for 59.5% of cases.
- Other identified causes included hypoparathyroidism-deafness-renal dysplasia syndrome (13.5%) and rare genetic syndromes.
- Basal ganglia calcification (33.3%) and renal complications (19.2%) were observed; 43.2% discontinued medication.
- Higher final PTH levels were noted in transient hypoparathyroidism cases compared to permanent ones.
Conclusions:
- Identifying genetic causes of hypoparathyroidism enables outcome prediction and genetic counseling.
- Long-term calcium and calcitriol supplementation requires vigilant monitoring for renal complications.
Context:
Hypoparathyroidism is characterized by hypocalcaemia, hyperphosphataemia, and low or inappropriately normal parathyroid hormone (PTH) levels. Idiopathic or genetic drivers are the predominant causes of hypoparathyroidism in paediatric-age patients.
Objective:
This study investigated the aetiology and clinical course of primary hypoparathyroidism in infancy and childhood.
Subjects And Measurements:
This study included 37 patients (23 males, 14 females) with primary hypoparathyroidism diagnosed prior to 18 years of age. We analysed aetiologies, initial presentation, age at diagnosis, endocrine and radiological findings, and outcomes.
Results:
The median age at presentation was 1·7 months (range 1 day-17 years), and the mean follow-up duration was 7·0 ± 5·3 years (range 0·5-16·8 years). Our cohort included 22 cases (59·5%) of 22q11·2 microdeletion syndrome. Other aetiologies included hypoparathyroidism-deafness-renal dysplasia syndrome (5/37, 13·5%) and one patient each with autoimmune polyglandular syndrome type 1, Kearns-Sayre syndrome and Kenny-Caffey syndrome. The remaining 7 (18·9%) patients were classified as idiopathic hypoparathyroidism cases. Among the 15 patients who underwent brain imaging, 5 (33·3%) had basal ganglia calcification. Among the 26 patients examined by renal imaging, 5 (19·2%) had either nephrocalcinosis or a renal stone. After 11 months of calcium or calcitriol supplementation, 16 patients (43·2%) discontinued medication. The final PTH levels were significantly higher in patients with transient hypoparathyroidism than those with permanent hypoparathyroidism.
Conclusions:
Identification of the genetic aetiologies of hypoparathyroidism makes it possible to predict patient outcomes and provide appropriate genetic counselling. Long-term treatment with calcium and calcitriol necessitates monitoring for renal complications.
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