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首页> 外文期刊>Molecular Neurobiology >Maternal Folic Acid Supplementation During Pregnancy Improves Neurobehavioral Development in Rat Offspring
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Maternal Folic Acid Supplementation During Pregnancy Improves Neurobehavioral Development in Rat Offspring

机译:妊娠期间的母体叶酸补充改善了大鼠后代的神经兽性发育

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摘要

Abstract Maternal folate status during pregnancy may influence central nervous system (CNS) development in offspring. However, the recommended intakes of folic acid for women of childbearing age differ among countries and there is still no consensus about whether folic acid should be supplemented continuously throughout pregnancy. We hypothesized that folic acid supplementation may be more beneficial for offspring’s neurobehavioral development if prolonged throughout pregnancy instead of being limited to the periconceptional period. In this study, three groups of the female rats were fed folate-normal, folate-deficient, or folate-supplemented diets throughout pregnancy. In another group, the female rats were fed folate-supplemented diet from mating for 10 consecutive days and then fed folate-normal diet for remainder days of pregnancy. The results showed that maternal folate deficiency increased plasma homocysteine (Hcy) concentration in dams, delayed early sensory-motor reflex development, impaired spatial learning and memory ability, and caused ultrastructural damages in the hippocampus of offspring. Maternal folic acid supplementation would be more effective on improving early sensory-motor reflex development and spatial learning and memory ability in offspring if prolonged throughout pregnancy instead of being limited to the periconceptional period. In conclusion, prolonged maternal folic acid supplementation throughout pregnancy would be more effective in neurobehavioral development of offspring in rats.
机译:摘要怀孕期间的母体叶酸地位可能影响后代中枢神经系统(CNS)发展。然而,对于育龄年龄的妇女的叶酸的推荐摄入量不同,仍然对叶酸是否应在整个妊娠中不断补充叶酸。我们假设如果在整个怀孕期间延长,则叶酸补充可能更有利于后代的神经兽性发育,而不是限于围攻时期。在本研究中,在妊娠期间喂养叶酸正常,叶酸缺乏或叶酸缺乏的叶酸饮食的三组。在另一组中,将雌性大鼠饲喂叶酸补充饮食,连续10天交配,然后喂养叶酸正常饮食余量的妊娠。结果表明,母体叶酸缺乏增加了水坝中的血浆同型半胱氨酸(HCY)浓度,延迟了早期的感官电动机反射发育,空间学习和记忆能力受损,并导致后代海马的超微结构损害。如果在整个怀孕期间延长,母体叶酸补充剂将更有效地改善后代早期的感官电动机反射发育和空间学习和记忆能力,而不是限于围攻时期。总之,妊娠期间延长的孕产妇叶酸在大鼠后代的神经兽性发育中会更有效。

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