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首页> 外文期刊>Proceedings of the Nutrition Society >Addressing optimal folate and related B-vitamin status through the lifecycle: health impacts and challenges
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Addressing optimal folate and related B-vitamin status through the lifecycle: health impacts and challenges

机译:通过生命周期解决最佳叶酸和相关的B-维生素状态:健康影响和挑战

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The functional effects of folate within C1 metabolism involve interrelationships with vitamin B12, vitamin B6 and riboflavin, and related gene–nutrient interactions. These B vitamins have important roles throughout life, from pregnancy, through childhood, to middle and older age. Achieving optimal nutritional status for preventing folate-related disease is challenging, however, primarily as a result of the poor stability and incomplete bioavailability of folate from natural food sources when compared with the synthetic vitamin form, folic acid. Thus, in European countries, measures to prevent neural tube defects (NTD) have been largely ineffective because of the generally poor compliance of women with folic acid supplementation as recommended before and in early pregnancy. In contrast, countries worldwide with mandatory folic acid fortification policies have experienced marked reductions in NTD. Low vitamin B12 status is associated with increased risk of cognitive dysfunction, CVD and osteoporosis. Achieving optimal B12 status can be problematic for older people, however, primarily owing to food-bound B12 malabsorption which leads to sub-clinical deficiency even with high dietary B12 intakes. Optimising B-vitamin intake may be particularly important for sub-populations with impaired folate metabolism owing to genetic characteristics, most notably the 677C→T variant in the gene encoding the enzyme methylenetetrahydrofolate reductase (MTHFR). This common folate polymorphism is linked with several adverse health outcomes, including stroke, however, recent evidence has identified its novel interaction with riboflavin (the MTHFR cofactor) in relation to blood pressure and risk of developing hypertension. This review addresses why and how the optimal status of folate-related B vitamins should be achieved through the lifecycle.
机译:C1代谢内叶酸的功能效果涉及与维生素B12,维生素B6和核黄素的相互关系,以及相关的基因营养相互作用。这些B维生素在整个生命中具有重要作用,妊娠,通过儿童,中老年人。然而,实现预防叶酸与叶酸相关疾病的最佳营养状况是挑战性的,这主要是由于与合成维生素形式,叶酸与天然食物来源的叶酸的稳定性和不完全不完全生物利用度差。因此,在欧洲国家,防止神经管缺陷(NTD)的措施在很大程度上是无效的,因为妇女在怀孕之前和妊娠之前的推荐均衡的叶酸补充的依从性均衡。相比之下,全世界具有强制性叶酸设防政策的国家经历了NTD的显着减少。低维生素B12状态与认知功能障碍,CVD和骨质疏松症的风险增加有关。然而,实现最佳B12状态对于老年人来说可能是有问题的,但由于食物结合的B12不良机,即使在高膳食B12摄入量也导致临床缺陷。优化B-维生素摄入可能对由于遗传特征而言,叶酸代谢受损的亚群体可能尤为重要,最重要的是,在编码酶甲基四乙烯酸还原酶(MTHFR)中的基因中的677C→T变体。这种常见的叶酸多态性与若干不利健康结果有关,包括中风,然而,最近的证据已经确定了与核黄素(MTHFR辅因子)相对于血压和发展高血压的风险的新酶促。本次审查符合为什么通过生命周期实现叶酸相关的B族维生素的最佳状态。

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