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Distribution of 5-Methyltetrahydrofolate and Folic Acid Levels in Maternal and Cord Blood Serum: Longitudinal Evaluation of Japanese Pregnant Women

机译:孕妇和脐血血清中5-甲基四氢叶酸和叶酸水平的分布:日本孕妇的纵向评价。

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摘要

“Total” folate in blood has usually been measured to evaluate the folate status of pregnant women. However, folate is composed of many metabolites. The main substrate is 5-methyltetrahydrofolate (5-MTHF), with folic acid (FA) representing a very small component as an unmetabolized species in blood. We longitudinally evaluated 5-MTHF, FA and total homocysteine in maternal and cord blood from Japanese pregnant women. Subjects were 146 pregnant women who participated in the Chiba study of Mother and Child Health (C-MACH) prospective cohort study. Sera were obtained in early and late pregnancy, at delivery, and from cord blood. Species levels were measured by isotope-dilution mass spectrometry. Both 5-MTHF and FA levels were lower than reported levels from pregnant women in populations from countries with mandatory FA fortification. As gestational age progressed, serum 5-MTHF levels decreased, whereas serum FA levels were slightly reduced only at delivery compared to early pregnancy. A significant negative association between serum 5-MTHF and total homocysteine was shown at all examined times, but no associations with FA were evident. At delivery, cord 5-MTHF was significantly higher than maternal levels, while FA again showed no significant correlation. These results suggest that 5-MTHF is actively transported to the fetus through placental transporters and may reflect folate status during pregnancy as a physiologically important species.
机译:通常测量血液中“总”叶酸以评估孕妇的叶酸状况。然而,叶酸由许多代谢物组成。主要底物是5-甲基四氢叶酸(5-MTHF),其中叶酸(FA)占血液中未代谢物种的成分非常小。我们纵向评估了日本孕妇母体和脐带血中的5-MTHF,FA和总半胱氨酸。受试者为146名孕妇,他们参加了千叶母亲与儿童健康研究(C-MACH)前瞻性队列研究。血清在妊娠早期和晚期,分娩时和脐带血中获得。通过同位素稀释质谱法测量物种水平。在强制性FA强化国家中,5-MTHF和FA的水平均低于孕妇报告的水平。随着胎龄的增长,与早孕相比,血清5-MTHF水平降低,而血清FA水平仅在分娩时略有降低。在所有检查的时间中,血清5-MTHF和总同型半胱氨酸之间均显示出显着的负相关性,但与FA的相关性未见明显。分娩时,脐带5-MTHF显着高于母亲水平,而FA再次显示无显着相关性。这些结果表明5-MTHF通过胎盘转运蛋白被主动转运到胎儿,并可能反映出怀孕期间叶酸的状态,这是一种重要的生理物种。

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