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关注替代采样技术的营养素摄入生物标志物。

Biomarkers for nutrient intake with focus on alternative sampling techniques.

作者信息

Holen T, Norheim F, Gundersen T E, Mitry P, Linseisen J, Iversen P O, Drevon C A

机构信息

Division of Molecular Nutrition, Department of Nutrition, Institute of Basic Medical Sciences, University of Oslo, POB 1046, Blindern, 0317 Oslo, Norway.

Department of Medicine/Division of Cardiology, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA USA.

出版信息

Genes Nutr. 2016 Apr 16;11:12. doi: 10.1186/s12263-016-0527-1. eCollection 2016.

Abstract

Biomarkers of nutrient intake or nutrient status are important objective measures of foods/nutrients as one of the most important environmental factors people are exposed to. It is very difficult to obtain accurate data on individual food intake, and there is a large variation of nutrient composition of foods consumed in a population. Thus, it is difficult to obtain precise measures of exposure to different nutrients and thereby be able to understand the relationship between diet, health, and disease. This is the background for investing considerable resources in studying biomarkers of nutrients believed to be important in our foods. Modern technology with high sensitivity and specificity concerning many nutrient biomarkers has allowed an interesting development with analyses of very small amounts of blood or tissue material. In combination with non-professional collection of blood by finger-pricking and collection on filters or sticks, this may make collection of samples and analyses of biomarkers much more available for scientists as well as health professionals and even lay people in particular in relation to the marked trend of self-monitoring of body functions linked to mobile phone technology. Assuming standard operating procedures are used for collection, drying, transport, extraction, and analysis of samples, it turns out that many analytes of nutritional interest can be measured like metabolites, drugs, lipids, vitamins, minerals, and many types of peptides and proteins. The advantage of this alternative sampling technology is that non-professionals can collect, dry, and mail the samples; the samples can often be stored under room temperature in a dry atmosphere, requiring small amounts of blood. Another promising area is the potential relation between the microbiome and biomarkers that may be measured in feces as well as in blood.

摘要

营养素摄入或营养状况的生物标志物是人们接触的最重要环境因素之一——食物/营养素的重要客观指标。获取个体食物摄入量的准确数据非常困难,而且人群中所消费食物的营养成分存在很大差异。因此,难以获得不同营养素暴露量的精确测量值,从而难以理解饮食、健康和疾病之间的关系。这就是投入大量资源研究被认为在我们食物中很重要的营养素生物标志物的背景。针对许多营养素生物标志物具有高灵敏度和特异性的现代技术,使得对极少量血液或组织材料进行分析有了有趣的进展。结合通过手指采血以及在滤器或试纸上采集的非专业血液采集方式,这可能会使科学家、健康专业人员甚至普通民众更易于获取样本并进行生物标志物分析,特别是与借助手机技术进行身体功能自我监测的显著趋势相关。假设样本的采集、干燥、运输、提取和分析采用标准操作程序,结果表明许多具有营养研究价值的分析物都可以进行测量,如代谢物、药物、脂质、维生素、矿物质以及多种类型的肽和蛋白质。这种替代采样技术的优势在于非专业人员可以采集、干燥并邮寄样本;样本通常可以在室温干燥环境下储存,所需血量较少。另一个有前景的领域是微生物群与可在粪便和血液中测量的生物标志物之间的潜在关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1006/4968438/4710f39e5e72/12263_2016_527_Fig1_HTML.jpg

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