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Clinical and Molecular Characteristics and Long-term Follow-up of Children With Pseudohypoparathyroidism Type IA
Hanna Ludar1, Yael Levy-Shraga2,3, Osnat Admoni4
1Pediatric Endocrinology and Diabetes Unit, Clalit Health Services, 35024 Haifa and Western Galilee District, Israel.
Insights
Pseudohypoparathyroidism type IA (PHPIA) is a rare genetic disorder. Early diagnosis and molecular analysis are crucial as the full Albright hereditary osteodystrophy phenotype develops over time.
Area of Science:
- Genetics
- Endocrinology
- Pediatrics
Background:
- Pseudohypoparathyroidism type IA (PHPIA) is a rare genetic disorder characterized by hormone resistance and Albright hereditary osteodystrophy.
- Delayed diagnosis is common due to lack of awareness of PHPIA.
Purpose of the Study:
- To describe clinical and molecular features of PHPIA patients with confirmed GNAS mutations.
- To evaluate long-term outcomes in genetically confirmed PHPIA patients.
Main Methods:
- Retrospective review of PHPIA patients diagnosed in two Israeli referral centers.
- Analysis of clinical data and GNAS mutation types (missense, deletion, frameshift).
Main Results:
- Nine children (8 female) from 6 families were studied.
- Four novel GNAS mutations were identified.
- Patients presented with congenital hypothyroidism, short stature, or obesity; early obesity was common.
- Elevated parathyroid hormone noted by age 3, hypocalcemia by age 5.9.
- Mild to moderate intellectual disability was observed in all subjects.
- Adult females experienced short stature and menstrual irregularities.
Conclusions:
- Long-term follow-up is essential for newborns with congenital hypothyroidism, early obesity, and dysmorphic features suggestive of PHPIA.
- Molecular analysis is recommended for early diagnosis, as the full phenotype may manifest later.
Context:
Pseudohypoparathyroidism type IA (PHPIA) is a rare genetic disorder characterized by hormone resistance and a typical phenotype named Albright hereditary osteodystrophy. Unawareness of this rare disease leads to delays in diagnosis.
Objective:
The aims of this study were to describe the clinical and molecular characteristics of patients with genetically confirmed GNAS mutations and to evaluate their long-term outcomes.
Methods:
A retrospective search for all patients diagnosed with PHPIA in 2 referral centers in Israel was conducted.
Results:
Nine children (8 females) belonging to 6 families were included in the study. Five patients had GNAS missense mutations, 2 had deletions, and 2 had frameshift mutations. Four mutations were novel. Patients were referred at a mean age of 2.4 years due to congenital hypothyroidism (5 patients), short stature (2 patients), or obesity (2 patients), with a follow-up duration of up to 20 years. Early obesity was observed in the majority of patients. Elevated parathyroid hormone was documented at a mean age of 3 years; however, hypocalcemia became evident at a mean age of 5.9 years, about 3 years later. All subjects were diagnosed with mild to moderate mental retardation. Female adult height was very short (mean -2.5 SD) and 5 females had primary or secondary amenorrhea.
Conclusion:
Long-term follow-up of newborns with a combination of congenital hypothyroidism, early-onset obesity, and minor dysmorphic features associated with PHPIA is warranted and molecular analysis is recommended since the complete clinical phenotype may develop a long time after initial presentation.
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