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  • FGF23 gene variation and its association with phosphate homeostasis and bone mineral density in Finnish children and adolescents.

FGF23 gene variation and its association with phosphate homeostasis and bone mineral density in Finnish children and adolescents.

Bone (2014-12-03)
Minna Pekkinen, Christine M Laine, Riikka Mäkitie, Eira Leinonen, Christel Lamberg-Allardt, Heli Viljakainen, Outi Mäkitie
摘要

Fibroblast growth factor 23 (FGF23), a bone-derived hormone, participates in the hormonal bone-parathyroid-kidney axis, which is modulated by PTH, 1,25-dihydroxyvitamin D, plasma phosphate (Pi), and diet. Inappropriately high serum FGF23, seen in certain genetic and acquired disorders, results in urinary phosphate wasting and impaired bone mineralization. This study investigated the impact of FGF23 gene variation on phosphate homeostasis and bone health. The study included 183 children and adolescents (110 girls) aged 7-19 years (median 13.2years). Urine and blood parameters of calcium and phosphate homeostasis were analyzed. Bone characteristics were quantified by DXA and peripheral quantitative computed tomography (pQCT). Genetic FGF23 variation was assessed by direct sequencing of coding exons and flanking intronic regions. Nine FGF23 polymorphisms were detected; three of them were common: rs3832879 (c.212-37insC), rs7955866 (c.716C>T, p.T239M) and rs11063112 (c.2185A>T). Four different haplotypes and six different diplotypes were observed among these three polymorphisms. The variations in FGF23 significantly associated with plasma PTH and urinary Pi excretion, even after adjusting for relevant covariates. FGF23 variations independently associated with total hip BMD Z-score, but not with other bone outcomes. In instrument analysis, genetic variance in FGF23 was considered a weak instrument as it only induced small variations in circulating FGF23, PTH and Pi concentrations (F statistic less than 10). The observed associations between FGF23 variations and circulating PTH, and Pi excretion and total hip BMD Z-scores suggest that FGF23 polymorphisms may play a role in mineral homeostasis and bone metabolism.

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溴化乙啶 溶液, BioReagent, Molecular Biology, 10 mg/mL in H2O
Sigma-Aldrich
溴化乙锭, BioReagent, Molecular Biology, powder
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溴化乙啶 溶液, BioReagent, Molecular Biology, 500 μg/mL in H2O
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溴化乙锭, ~95% (HPLC)
Sigma-Aldrich
溴化乙啶 溶液, suitable for fluorescence, ~1% in H2O