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Growth and disease burden in children with hypophosphatasia
Wolfgang Högler1,2, Agnès Linglart3, Anna Petryk4
1Department of Paediatrics and Adolescent Medicine, Johannes Kepler University Linz, Linz, Austria.
Insights
Hypophosphatasia can impact child growth, especially before age two. While short stature isn't always present, growth impairment in infants suggests effects on growth plates. Clinical signs vary widely, not solely based on height.
Area of Science:
- Pediatric Endocrinology
- Metabolic Disorders
- Skeletal Dysplasias
Background:
- Hypophosphatasia is an inborn error of metabolism impacting bone mineralization and growth in children.
- Understanding anthropometric parameters and clinical features is crucial for managing hypophosphatasia.
Purpose of the Study:
- To evaluate the relationship between anthropometric parameters (height, weight, BMI) and clinical manifestations of hypophosphatasia in children.
- To analyze growth patterns and their correlation with disease severity in different age groups.
Main Methods:
- Analysis of data from 215 children (<18 years) with hypophosphatasia from the Global Hypophosphatasia Registry.
- Evaluation of anthropometric parameters by age (<2 years and ≥2 years) and comparison of manifestations between children with short stature and normal stature.
Main Results:
- Short stature was observed in 16.1% (<2 years) and 20.4% (≥2 years).
- Significant growth worsening (height z score: -1.45) occurred before age 2, with stable trajectories thereafter.
- Broad hypophosphatasia manifestations were common, irrespective of height percentile.
Conclusions:
- Growth impairment in early infancy suggests hypophosphatasia affects growth plate activity.
- Height alone may not fully represent the disease burden; weight is less affected than longitudinal growth.
- Clinical manifestations are widespread and not solely predicted by stature.
Objective:
Hypophosphatasia, an inborn error of metabolism characterized by impaired bone mineralization, can affect growth. This study evaluated relationships between anthropometric parameters (height, weight, and body mass index) and clinical manifestations of hypophosphatasia in children.
Design:
Data from children (aged <18 years) with hypophosphatasia were analyzed from the observational Global Hypophosphatasia Registry.
Methods:
Anthropometric parameters were evaluated by age group (<2 years and ≥2 years) at assessment. The frequency of hypophosphatasia manifestations was compared between children with short stature (< percentile) and those with normal stature.
Results:
This analysis included 215 children (54.4% girls). Short stature presented in 16.1% of children aged <2 years and 20.4% of those aged ≥2 years at assessment. Among those with available data (n = 62), height was below the target height (mean: -0.66 standard deviations). Substantial worsening of growth (mean delta height z score: -1.45; delta weight z score: -0.68) occurred before 2 years of age, while in those aged ≥2 years, anthropometric trajectories were maintained (delta height z score: 0.08; delta weight z score: 0.13). Broad-ranging hypophosphatasia manifestations (beyond dental) were observed in most children.
Conclusions:
Short stature was not a consistent characteristic of children with hypophosphatasia, but growth impairment was observed in those aged <2 years, indicating that hypophosphatasia might affect growth plate activity during infancy. In addition, a broad range of clinical manifestations occurred in those above and below the third percentile for height, suggesting that height alone may not accurately reflect hypophosphatasia disease burden and that weight is less affected than longitudinal growth.
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