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Effect of genetic polymorphisms involved in folate metabolism on the concentration of serum folate and plasma total homocysteine (p-tHcy) in healthy subjects after short-term folic acid supplementation: a randomized double blind crossover study

机译:叶酸代谢相关基因多态性对短期补充叶酸后健康受试者血清叶酸浓度和血浆总同型半胱氨酸(p-tHcy)的影响:一项随机双盲交叉研究

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摘要

Data on the effect of combined genetic polymorphisms, involved in folate metabolism, on the concentration of serum folate after folic acid supplementation are scarce. Therefore, we investigated the impact of seven gene polymorphisms on the concentration of serum folate and p-tHcy in healthy subjects after short-term folic acid supplementation. In a randomized, double blind, crossover study, apparently healthy subjects were given either 0.8 mg folic acid per day (n = 46) or placebo (n = 45) for 14 days. The washout period was 14 days. Fasting blood samples were collected on day 1, 15, 30 and 45. Data on subjects on folic acid supplementation (n = 91) and on placebo (n = 45) were used for the statistical analysis. The concentration of serum folate increased higher in subjects with higher age (53.5 ± 7.0 years) than in subjects with lower age (24.3 ± 3.2 years) after folic acid supplementation (p = 0.006). The baseline concentration of serum folate in subjects with polymorphism combination, reduced folate carrier protein, RFC1-80 GA and methylenetetrahydrofolate reductase, MTHFR677 CT+TT, was lower than RFC1-80 AA and MTHFR677 CT+TT (p = 0.002). After folic acid supplementation, a higher increase in the concentration of serum folate was detected in subjects with polymorphism combination RFC1-80 GA and MTHFR677 CC than RFC1-80 GG and MTHFR CT+TT combination (p < 0.0001). The baseline concentration of plasma total homocysteine (p-tHcy) was altered by combined polymorphisms in genes associated with folate metabolism. After folic acid supplementation, in subjects with combined polymorphisms in methylenetetrahydrofolate dehydrogenase, MTHFD1-1958 and MTHFR-677 genes, the concentration of p-tHcy was changed (p = 0.002). The combination of RFC1-80 and MTHFR-677 polymorphisms had a profound affect on the concentration of serum folate in healthy subjects before and after folic acid supplementation.
机译:缺乏有关叶酸代谢的综合遗传多态性对补充叶酸后血清叶酸浓度影响的数据。因此,我们调查了短期补充叶酸后健康受试者中七个基因多态性对血清叶酸和p-tHcy浓度的影响。在一项随机,双盲,交叉研究中,看似健康的受试者每天服用0.8 mg叶酸(n = 46)或安慰剂(n = 45)14天。清除期为14天。在第1、15、30和45天收集空腹血样。补充叶酸(n = 91)和安慰剂(n = 45)的受试者数据用于统计分析。叶酸补充后,年龄较大的受试者(53.5±7.0年)的血清叶酸浓度升高,而年龄较低的受试者(24.3±3.2年)的血清叶酸浓度升高(p = 0.006)。具有多态性组合,减少的叶酸载体蛋白,RFC1-80 GA和亚甲基四氢叶酸还原酶MTHFR677 CT + TT的受试者血清叶酸的基线浓度低于RFC1-80 AA和MTHFR677 CT + TT(p = 0.002)。补充叶酸后,与RFC1-80 GG和MTHFR CT + TT组合相比,具有多态性组合RFC1-80 GA和MTHFR677 CC的受试者中发现的血清叶酸浓度更高(p <0.0001)。血浆总同型半胱氨酸(p-tHcy)的基线浓度通过与叶酸代谢相关的基因的多态性组合而改变。在补充叶酸之后,在亚甲基四氢叶酸脱氢酶,MTHFD1-1958和MTHFR-677基因具有多态性的受试者中,p-tHcy的浓度发生了变化(p = 0.002)。 RFC1-80和MTHFR-677多态性的组合对健康受试者补充叶酸前后叶酸的浓度产生了深远的影响。

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