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营养生物活性和功效的生物标志物:通向个性化营养的途径。

Biomarkers of nutrient bioactivity and efficacy: a route toward personalized nutrition.

机构信息

Department of BioAnalytical Sciences, Nestlé Research Center, Vers-chez-les-Blanc, Lausanne, Switzerland.

出版信息

J Clin Gastroenterol. 2012 Aug;46(7):545-54. doi: 10.1097/MCG.0b013e3182548df2.

Abstract

Personalized nutrition has been traditionally based on the adjustment of food and diet according to individual needs and preferences. At present, this concept is being reinforced through the application of state-of-the-art high-throughput technologies to help understand the molecular mechanisms underlying a healthy state. This knowledge could enable the adjustment of general dietary recommendations to match the needs of specific population groups based on their molecular profiles. The optimal development of evidence-based nutritional guidance to promote health requires an adequate assessment of nutrient bioavailability, bioactivity, and bioefficacy. To achieve this, reliable information about exposure to nutrients, their intake, and functional effects is required; thus, the identification of valid biomarkers using standardized analytical procedures is necessary. Although some nutritional biomarkers are now successfully used (eg, serum retinol, zinc, ferritin, and folate), a comprehensive set to assess the nutritional status and metabolic conditions of nutritional relevance is not yet available. Also, there is very limited knowledge on how the extensive human genetic variability influences the interpretation of these biomarkers. In this context, nutrigenomics seems to be a promising approach to identify new biomarkers in nutrition, through an integrative application of transcriptomics, proteomics, metabolomics, epigenomics, and nutrigenetics in human nutritional research.

摘要

个性化营养传统上是根据个人需求和喜好来调整食物和饮食。目前,通过应用最先进的高通量技术来帮助理解健康状态背后的分子机制,这一概念正在得到加强。这些知识可以使我们根据特定人群的分子特征,调整一般饮食建议以满足其需求。为了促进健康而制定循证营养指导的最佳发展需要充分评估营养素的生物利用度、生物活性和生物功效。为此,需要关于营养素暴露、摄入和功能作用的可靠信息,因此需要使用标准化分析程序来确定有效的生物标志物。虽然现在已经成功使用了一些营养生物标志物(例如血清视黄醇、锌、铁蛋白和叶酸),但尚未获得一套全面的、可用于评估营养状况和与代谢相关的生物标志物。此外,关于广泛的人类遗传变异如何影响这些生物标志物的解释,人们知之甚少。在这种情况下,营养基因组学似乎是一种很有前途的方法,可以通过在人类营养研究中综合应用转录组学、蛋白质组学、代谢组学、表观基因组学和营养遗传学,来确定新的营养生物标志物。

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