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首页> 外文期刊>Nutrition Journal >Changes in circulating 25-hydroxyvitamin D according to vitamin D binding protein genotypes after vitamin D3 or D2 supplementation
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Changes in circulating 25-hydroxyvitamin D according to vitamin D binding protein genotypes after vitamin D3 or D2 supplementation

机译:补充维生素D 3 或D 2 后维生素D结合蛋白基因型在循环25-羟基维生素D中的变化

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Background It is not known whether genetic variation in the vitamin D binding protein (DBP) influences 25-hydroxyvitamin D levels [25(OH)D] after vitamin D supplementation. We aimed to investigate the changes of total 25(OH)D, 25(OH)D3 and 25(OH)D2 in a Thai cohort, according to type of vitamin D supplement (vitamin D3 or D2) and DBP genotype, after receiving vitamin D3 or D2 for 3?months. Methods Thirty-nine healthy subjects completed the study. All subjects received 400?IU of either vitamin D3 or D2, plus a calcium supplement, every day for 3?months. Total serum 25(OH)D, 25(OH)D3 and 25(OH)D2 were measured by LC-MS/MS. Individual genotyping of rs4588 in the DBP gene was performed using real-time PCR. Results Vitamin D3 supplementation of 400?IU/d increased 25(OH)D3 significantly (+16.2?±?4.2?nmol/L, p <0.001). Vitamin D2 (400?IU/d) caused increased 25(OH)D2 levels (+22.0?±?2.11?nmol/L, p <0.001), together with a decrease of 25(OH)D3 (?14.2?±?2.0?nmol/L, p <0.001). At 3?month, subjects in vitamin D3 group tended to have higher total 25(OH)D levels than those in vitamin D2 (67.8?±?3.9 vs. 61.0?±?3.0?nmol/L; p?=?0.08). Subjects were then classified into two subgroups: homozygous for the DBP rs4588 C allele (CC), and the rest (CA or AA). With D3 supplementation, subjects with CA or AA alleles had significantly less increase in 25(OH)D3 and total 25(OH)D when compared with those with the CC allele. However, no difference was found when the supplement was vitamin D2. Conclusion Genetic variation in DBP (rs4588 SNP) influences responsiveness to vitamin D3 but not vitamin D2.
机译:背景技术补充维生素D后,维生素D结合蛋白(DBP)的遗传变异是否会影响25-羟基维生素D的水平[25(OH)D],这一点尚不清楚。我们的目的是根据维生素D补充剂的类型(维生素D3或D2)和DBP基因型,调查泰国队列中总25(OH)D,25(OH)D3和25(OH)D2的变化D3或D2 3个月。方法39名健康受试者完成了研究。所有受试者每天接受400?IU的维生素D3或D2,加上钙补充剂,持续3个月。通过LC-MS / MS测量总血清25(OH)D,25(OH)D3和25(OH)D2。使用实时PCR对DBP基因中的rs4588进行个体基因分型。结果补充400?IU / d的维生素D3可显着增加25(OH)D3(+16.2≤±4.24.2nmol / L,p <0.001)。维生素D2(400?IU / d)导致25(OH)D2水平升高(+22.0?±?2.11?nmol / L,p <0.001),并降低25(OH)D3(?14.2?±? 2.0 nmol / L,p <0.001)。在3个月时,维生素D3组的受试者的总25(OH)D水平往往高于维生素D2组(67.8?±?3.9 vs. 61.0?±?3.0?nmol / L; p?=?0.08)。 。然后将受试者分为两个亚组:DBP rs4588 C等位基因(CC)的纯合子,其余(CA或AA)。与CC等位基因相比,补充D3的CA或AA等位基因受试者25(OH)D3和总25(OH)D的增加明显更少。但是,补充剂是维生素D2时,没有发现差异。结论DBP(rs4588 SNP)的遗传变异影响对维生素D3的响应能力,但不影响对维生素D2的响应。

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