Bambino Gesù Children's Hospital, Research Institute (IRCCS), Rome, Italy.
Crit Rev Food Sci Nutr. 2010 Aug;50(7):693-8. doi: 10.1080/10408390903044156.
Microarray technology is a powerful tool for the global evaluation of gene expression profiles in tissues and for understanding many of the factors controlling the regulation of gene transcription. This technique not only provides a considerable amount of information on markers and predictive factors that may potentially characterize a specific clinical picture, but also promises new applications for therapy. One of the most recent applications of microarrays concerns nutritional genomics. Nutritional genomics, known as nutrigenomics, aims to identify and understand mechanisms of molecular interaction between nutrients and/or other dietary bioactive compounds and the genome. Actually, many nutrigenomic studies utilize new approaches such as microarrays, genomics, and bioinformatics to understand how nutrients influence gene expression. The coupling of these new technologies with nutrigenomics promises to lead to improvements in diet and health. In fact, it may provide new information which can be used to ameliorate dietary regimens and to discover novel natural agents for the treatment of important diseases such as diabetes and cancer. This critical review gives an overview of the clinical relevance of a nutritional approach to several important diseases, and proposes the use of microarray for nutrigenomic studies.
微阵列技术是一种强大的工具,可用于对组织中的基因表达谱进行全局评估,并了解控制基因转录调节的许多因素。这项技术不仅提供了大量有关标记物和预测因子的信息,这些标记物和预测因子可能是特定临床症状的特征,而且还为治疗提供了新的应用前景。微阵列的最新应用之一涉及营养基因组学。营养基因组学,也称为营养遗传学,旨在确定和理解营养素和/或其他饮食生物活性化合物与基因组之间的分子相互作用的机制。实际上,许多营养基因组学研究利用微阵列、基因组学和生物信息学等新方法来了解营养素如何影响基因表达。这些新技术与营养基因组学的结合有望促进饮食和健康的改善。实际上,它可能提供新的信息,可用于改善饮食方案,并发现用于治疗糖尿病和癌症等重要疾病的新型天然药物。这篇评论性文章概述了营养方法对几种重要疾病的临床相关性,并提出了使用微阵列进行营养基因组学研究。