Seo David, Ginsburg Geoffrey S, Goldschmidt-Clermont Pascal J
Division of Cardiology, Department of Medicine and Center for Genomic Medicine, Institute for Genome Sciences and Policy, Duke University Medical Center, Durham, North Carolina 27710-0001, USA.
J Am Coll Cardiol. 2006 Jul 18;48(2):227-35. doi: 10.1016/j.jacc.2006.02.070. Epub 2006 Jun 23.
Although the contribution of genetics to complex cardiovascular diseases such as atherosclerosis has been accepted for quite some time, full and detailed knowledge of the individual causative genes has been elusive. With the advent of genomic technologies and methods, the necessary tools are now available to begin pinpointing the genes that contribute to disease susceptibility and progression. One approach being applied extensively in candidate gene discovery is gene expression analysis of human and animal tissues using microarrays. The genes identified by these genomic studies provide valuable insight into disease biology and represent the initial steps toward the development of diagnostic tests and therapeutic strategies that will substantially improve human health. This paper highlights the progress that has been made in using gene expression analysis cardiovascular genomic research and the potential for applying these findings in clinical medicine.
尽管遗传学对动脉粥样硬化等复杂心血管疾病的影响已被认可相当一段时间,但对于个体致病基因的全面详细了解却难以捉摸。随着基因组技术和方法的出现,现在已有必要的工具来开始确定导致疾病易感性和进展的基因。在候选基因发现中广泛应用的一种方法是使用微阵列对人和动物组织进行基因表达分析。这些基因组研究确定的基因提供了对疾病生物学的宝贵见解,并代表了开发诊断测试和治疗策略的初步步骤,这些策略将极大地改善人类健康。本文重点介绍了在利用基因表达分析进行心血管基因组研究方面取得的进展以及将这些发现应用于临床医学的潜力。