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芬兰儿童和青少年中FGF23基因变异及其与磷稳态和骨密度的关联

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

作者信息

Pekkinen Minna, Laine Christine M, Mäkitie Riikka, Leinonen Eira, Lamberg-Allardt Christel, Viljakainen Heli, Mäkitie Outi

机构信息

Folkhälsan Institute of Genetics, Biomedicum Helsinki, Helsinki, Finland.

Folkhälsan Institute of Genetics, Biomedicum Helsinki, Helsinki, Finland; Department of Endocrinology, Sahlgrenska University Hospital and Institute of Medicine, Sahlgrenska Academy, Sweden.

出版信息

Bone. 2015 Feb;71:124-30. doi: 10.1016/j.bone.2014.10.013. Epub 2014 Oct 24.

Abstract

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.

摘要

成纤维细胞生长因子23(FGF23)是一种骨源性激素,参与由甲状旁腺激素(PTH)、1,25 - 二羟基维生素D、血磷(Pi)和饮食调节的激素性骨 - 甲状旁腺 - 肾轴。在某些遗传和后天性疾病中出现的血清FGF23异常升高,会导致尿磷流失和骨矿化受损。本研究调查了FGF23基因变异对磷稳态和骨骼健康的影响。该研究纳入了183名7至19岁(中位年龄13.2岁)的儿童和青少年(110名女孩)。分析了钙和磷稳态的尿液和血液参数。通过双能X线吸收法(DXA)和外周定量计算机断层扫描(pQCT)对骨骼特征进行量化。通过对编码外显子和侧翼内含子区域进行直接测序来评估FGF23基因变异。检测到9种FGF23多态性;其中3种较为常见:rs3832879(c.212 - 37insC)、rs7955866(c.716C>T,p.T239M)和rs11063112(c.2185A>T)。在这三种多态性中观察到四种不同的单倍型和六种不同的双倍型。即使在调整相关协变量后,FGF23的变异仍与血浆PTH和尿Pi排泄显著相关。FGF23变异与全髋骨密度Z值独立相关,但与其他骨骼指标无关。在工具分析中,FGF23的遗传变异被认为是一个弱工具,因为它仅在循环FGF23、PTH和Pi浓度中引起小的变异(F统计量小于10)。观察到的FGF23变异与循环PTH、Pi排泄和全髋骨密度Z值之间的关联表明,FGF23多态性可能在矿物质稳态和骨代谢中起作用。

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