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Choline: Clinical Nutrigenetic/Nutrigenomic Approaches for Identification of Functions and Dietary Requirements

机译:胆碱:临床营养学/营养术方法,用于识别功能和膳食要求

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Nutrigenetics/nutrigenomics (the study of the bidirectional interactions between genes and diet) is a rapidly developing field that is changing research and practice in human nutrition. Though eventually nutrition clinicians may be able to provide personalized nutrition recommendations, in the immediate future they are most likely to use this knowledge to improve dietary recommendations for populations. Currently, estimated average requirements are used to set dietary reference intakes because scientists cannot adequately identify subsets of the population that differ in requirement for a nutrient. Recommended intake levels must exceed the actual required intake for most of the population in order to assure that individuals with the highest requirement ingest adequate amounts of the nutrient. As a result, dietary reference intake levels often are set so high that diet guidelines suggest almost unattainable intakes of some foods. Once it is possible to identify common subgroups that differ in nutrient requirements using nutrigenetic/nutrigenomic profiling, targeted interventions and recommendations can be refined. In addition, when a large variance exists in response to a nutrient, statistical analyses often argue for a null effect. If responders could be differentiated from nonre-sponders based on nutrigenetic/nutrigenomic profiling, this statistical noise could be eliminated and the sensitivity of nutrition research greatly increased.
机译:Nutrigenetics / Nutrigenomics(基因和饮食之间的双向相互作用的研究)是一种快速发展的领域,即在人类营养中不断变化的研究和实践。虽然最终营养临床医生可能能够提供个性化的营养建议,但在即时的未来,他们最有可能利用这些知识来改善人口的饮食建议。目前,估计的平均要求用于设定膳食参考摄入量,因为科学家不能充分识别营养素要求的人口的子集。推荐的进气水平必须超过大多数人口的实际所需的摄入量,以确保具有最高要求的个体摄取足够的营养素。因此,饮食参考摄入量通常如此高,饮食指南表明一些食物的差不可少的摄入量。一旦使用使用营养遗传/营养素分析的营养需求不同的常见亚组,可以精制靶向干预和建议。此外,当响应营养素时存在大的差异时,统计分析通常争论效应。如果响应者可以根据营养遗传/营养素分析从非渗透者区分开,可以消除这种统计噪声,营养研究的敏感性大大增加。

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