Feezor Robert J, Cheng Angela, Paddock Heather N, Baker Henry V, Moldawer Lyle L
Department of Surgery, University of Florida College of Medicine, Gainesville, FL 32610, USA.
Clin Infect Dis. 2005 Nov 15;41 Suppl 7:S427-35. doi: 10.1086/431993.
Functional genomics involving genome-wide expression analyses is rapidly finding applications in clinical medicine. New technologies now permit the simultaneous analysis of mRNA levels for the entire human transcriptome from as few as 1000 cells. This approach is dramatically changing the way we define health and disease, allowing, for the first time, an unbiased view of the global changes in gene expression that are occurring. For the study of trauma biology and sepsis, this technology offers a powerful tool to develop molecular signatures for inflamed tissues and specific cell populations. At present, functional genomics is being used to classify the progress of disease and survival in response to traumatic and burn injury, sepsis and visceral ischemia, and reperfusion injury, as well as to describe patterns of gene expression in response to varying microbial pathogens. As the number of bioinformatics tools increases, functional genomics is beginning to reveal the underlying complexity of the biological response to a variety of inflammatory diseases and is providing new approaches for their exploration. Functional genomics is becoming a standard tool in inflammation research as a means to unravel the basic biological processes.
涉及全基因组表达分析的功能基因组学正在迅速在临床医学中得到应用。新技术现在允许从少至1000个细胞中同时分析整个人类转录组的mRNA水平。这种方法正在极大地改变我们定义健康和疾病的方式,首次使我们能够无偏见地了解正在发生的基因表达的全球变化。对于创伤生物学和脓毒症的研究,这项技术提供了一个强大的工具,用于为炎症组织和特定细胞群体开发分子特征。目前,功能基因组学正被用于对创伤和烧伤、脓毒症和内脏缺血以及再灌注损伤后的疾病进展和生存进行分类,以及描述对不同微生物病原体作出反应时的基因表达模式。随着生物信息学工具数量的增加,功能基因组学开始揭示对各种炎症性疾病的生物学反应的潜在复杂性,并为其探索提供新方法。作为揭示基本生物学过程的一种手段,功能基因组学正成为炎症研究中的一种标准工具。