The Validity of Serum Alkaline Phosphatase to Identify Nutritional Rickets in Nigerian Children on a Calcium-Deprived Diet

Abstract Context Nutritional rickets results from the interaction of low vitamin D status and limited calcium intake. Serum alkaline phosphatase (AP) activity is a biomarker of impaired mineralization in rickets. Objective To assess the performance of serum AP activity in identifying nutritional ric...

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Veröffentlicht in:The journal of clinical endocrinology and metabolism 2021-09, Vol.106 (9), p.e3559-e3564
Hauptverfasser: Thacher, Tom D, Sempos, Christopher T, Durazo-Arvizu, Ramon A, Fischer, Philip R, Munns, Craig F, Pettifor, John M
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Sprache:eng
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Zusammenfassung:Abstract Context Nutritional rickets results from the interaction of low vitamin D status and limited calcium intake. Serum alkaline phosphatase (AP) activity is a biomarker of impaired mineralization in rickets. Objective To assess the performance of serum AP activity in identifying nutritional rickets in calcium-deprived Nigerian children. Methods We reanalyzed data from a case-control study of children with active rickets and matched control subjects without rickets, using a multivariate logistic regression to assess the odds of rickets associated with AP activity, adjusting for age, sex, and weight-for-age z-score. Results A total of 122 children with rickets and 119 controls were included. Rachitic children had a mean (±SD) age of 54 ± 29 months, and 55 (45.1%) were male. Cases and controls had low dietary calcium intakes (216 ± 87 and 214 ± 96 mg/day, respectively). Serum AP activity levels in cases and controls were 812 ± 415 and 245 ± 78 U/L, respectively (P  350 U/L effectively discriminated between Nigerian children with and without nutritional rickets. AP is a low-cost biochemical test that could be used to screen for nutritional rickets, but cutoff values require validation in other populations, and laboratory values need to be standardized for widespread population studies.
ISSN:0021-972X
1945-7197
DOI:10.1210/clinem/dgab328