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Relationship of vitamin D status and bone mass according to vitamin D-binding protein genotypes

机译:维生素D结合蛋白基因型与维生素D状况和骨量的关系

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Background Vitamin D-binding protein (DBP) may alter the biological activity of total 25-hydroxyvitamin D [25(OH)D]; this could influence on the effects of vitamin D in relation to bone mineral density (BMD) and fractures. Emerging data suggest that fetuin-A may be involved in bone metabolism. We aimed to investigate the influence of DBP gene polymorphism on the relationship of vitamin D status and fetuin-A levels to BMD and bone markers. Methods This cross-sectional study was part of a health survey of employees of the Electricity Generating Authority of Thailand (1,734 healthy subjects, 72% male). Fasting blood samples were assayed for 25(OH)D, fetuin-A, N-terminal propeptides of type 1 procollagen (P1NP), C-terminal cross-linking telopeptides of type I collagen (CTx-I), and DBP rs2282679 genotypes. L1–L4 lumbar spine and femoral BMD were measured using dual-energy X-ray absorptiometry. Results The DBP rs2282679 genotype distribution conformed to the Hardy–Weinberg equilibrium. There were no correlations between 25(OH)D levels and BMD and bone markers. But a trend of positive correlation was observed for the DBP genotypes with total hip BMD, and for the interaction between 25(OH)D and DBP genotypes with BMD at all femoral sites. We further analyzed data according to DBP genotypes. Only in subjects with the AA (common) genotype, 25(OH)D levels were positively related to BMD and bone markers, while fetuin-A was negatively related to total hip BMD, independently of age, gender and BMI. Conclusions The interaction between vitamin D status, as measured by circulating 25(OH)D and DBP rs2282679 genotypes, modified the association between 25(OH)D and BMD and bone markers. Differences in DBP genotypes additionally influenced the correlation of fetuin-A levels with femoral BMD.
机译:背景维生素D结合蛋白(DBP)可能会改变总25-羟基维生素D [25(OH)D]的生物活性。这可能会影响维生素D与骨矿物质密度(BMD)和骨折有关的影响。新兴数据表明,胎球蛋白A可能参与了骨代谢。我们旨在研究DBP基因多态性对维生素D状态和胎球蛋白A水平与骨密度和骨标记物之间关系的影响。方法这项横断面研究是泰国发电局(1734名健康受试者,其中72%为男性)员工健康调查的一部分。测定空腹血样中的25(OH)D,胎球蛋白-A,1型胶原蛋白(P1NP)的N端前肽,I型胶原蛋白的C端交联端肽(CTx-1)和DBP rs2282679基因型。 L1-L4腰椎和股骨BMD使用双能X线骨密度仪测量。结果DBP rs2282679基因型分布符合Hardy-Weinberg平衡。 25(OH)D水平与BMD和骨标志物之间没有相关性。但是观察到与全髋BMD的DBP基因型以及所有股骨部位的25(OH)D和DBP基因型与BMD的相互作用呈正相关的趋势。我们根据DBP基因型进一步分析了数据。仅在具有AA(常见)基因型的受试者中,25(OH)D水平与BMD和骨标记呈正相关,而胎球蛋白-A与总髋部BMD呈负相关,而与年龄,性别和BMI无关。结论通过循环25(OH)D和DBP rs2282679基因型测量的维生素D状态之间的相互作用改变了25(OH)D和BMD与骨标志物之间的联系。 DBP基因型的差异还会影响胎球蛋白A水平与股骨BMD的相关性。

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