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Updated: Jul 28, 2025

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Pediatric reference values of alkaline phosphatase: Analysis from a German population-based cohort and influence of
Jacqueline-Michéle Strauch1, Mandy Vogel2, Christof Meigen2
1Leipzig Research Center for Civilization Diseases - LIFE, University of Leipzig, Philipp-Rosenthal-Str. 27, 04103 Leipzig, Germany; Faculty of Medicine, University of Leipzig, Augustusplatz 10, 04109 Leipzig.
Insights
Alkaline phosphatase (AP) reference ranges in children vary by age and sex, influenced by growth and BMI. These findings are crucial for interpreting liver and bone metabolism markers in pediatric health.
Area of Science:
- Pediatric Endocrinology
- Clinical Biochemistry
- Population Health Studies
Background:
- Alkaline phosphatase (AP) reference values in children (3 months–18 years) differ from adults due to growth and metabolic variations.
- Age and sex significantly impact AP levels, necessitating age- and sex-specific reference ranges.
- Previous literature shows controversial associations between AP and Body Mass Index (BMI).
Purpose of the Study:
- To establish continuous, age- and sex-specific reference percentiles for alkaline phosphatase (AP) in children aged 3 months to 18 years.
- To investigate the association between AP levels and anthropometric parameters, including BMI and height.
- To examine the relationship between AP and liver enzymes (ALAT, ASAT, GGT) in pediatric populations.
Main Methods:
- Analysis of serum samples from 3704 healthy children (10,272 visits) aged 3 months to 18 years from the LIFE Child study.
- Calculation of continuous reference percentiles for AP based on age, sex, growth, and Tanner stages.
- Examination of associations between AP and height-SDS, growth velocity, BMI-SDS, and liver enzymes using linear regression models.
Main Results:
- AP levels peak in infancy, plateau, then rise during puberty (earlier in girls) before declining by age 18.
- A strong positive association was observed between AP-SDS and BMI-SDS, and between AP-SDS and height-SDS (stronger in boys).
- Positive associations were found between AP and ALAT (girls only), and between AP-SDS and ASAT-SDS/GGT-SDS (both sexes).
Conclusions:
- Age, sex, and BMI are significant confounding factors for AP reference ranges in children.
- The study confirms strong associations between AP and growth parameters (velocity, height-SDS) during development.
- Specific sex differences in AP associations with liver enzymes (ALAT, ASAT, GGT) highlight the need for careful interpretation of these markers in pediatric liver and bone health.
Background:
Due to different growth and metabolic processes, reference values of alkaline phosphatase (AP) for children aged 3 month to 18 years are dependent on age and sex. They are not constant and differ from those of adults due to the growth processes taking place. Accordingly, reference levels of AP continuous across these ages were generated for boys and girls based on of a large German health- and population-based study, LIFE Child. We considered AP at different growth and Tanner stages and additionally its association with other anthropometric parameters. The association between AP and BMI was of particulary great interest due to controversial literature on this topic. The role of AP in liver metabolism was investigated by examining ALAT, ASAT, and GGT.
Methods:
3976 healthy children (12,093 visits) were included from the LIFE Child study from 2011 to 2020. The subjects´ age ranged from 3 months to 18 years. Serum samples from 3704 subjects (10,272 cases, 1952 boys and 1753 girls) were analysed for AP after applying specific exclusion criteria. After calculating of reference percentiles, associations between AP and height-SDS, growth velocity, BMI-SDS, Tanner stage and the liver enzymes ALAT, ASAT and GGT were examined via linear regression models.
Results:
In the continuous reference levels, AP showed a first peak during the first year of life, followed by a plateau at a lower level until the start of puberty. In girls, AP increased beginning at the age 8, with a peak around 11 years, in boys beginning at the age 9, with a peak around age 13. Afterwards, AP values decreased continuously until age 18. In Tanner stages 1 and 2, AP levels did not differ between the two sexes. We found a strong positive association between AP-SDS and BMI-SDS. We also observed a significantly positive association between AP-SDS and height-SDS, which was stronger in boys than in girls. We found different intensities in the associations of AP with growth velocity depending on age group and sex. Furthermore, we found a significantly positive association between ALAT and AP in girls but not in boys, whereas ASAT-SDS and GGT-SDS were significantly positively associated with AP-SDS in both sexes.
Conclusion:
Sex and age, but also BMI may act as confounding factors for AP reference ranges. Our data confirm the remarkable association between AP and growth velocity (or height-SDS, respectively) during infancy and puberty. In addition, we were able to specify the associations between AP and ALAT, ASAT, and GGT and their differences in both sexes. These relations should be considered when evaluating liver and bone metabolism markers, especially in infancy.
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