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Microarray,SAGE and their applications to cardiovascular diseases

查看全文 作  者:SHUI QING YE, TERA LAVOIE, DAVID C USHER, LI Q. ZHANG1 Division of Pulmonary and Critical Care Medicine, Johns Hopkins University, School of Medicine, Baltimore, MD 21224, USA2Department of Biological Science, University of Delaware, Newark, DE 19716, USA 高影响力作者 出  处:《Cell Research》索引2002年第12卷第2期,共11页高影响力期刊 基  金:Part of studies cited in this review was in partsupported by Johns Hopkins Institutional ResearchGrant(Ye,SQ),a pilot project(Ye,SQ)in The Hop-kins DK Center for the Analysis of Gene Expres-sion(R24DK58757-01,NIDDK)and Dorothy WallisWagner Charitable Tru 摘  要:The wealth of DNA data generated by the human genome project coupling with recently invented high-throughput gene expression profiling techniques has dramatically sped up the process for biomedical researchers on elucidating the role of genes in human diseases. One powerful method to reveal insight into gene functions is the systematic analysis of gene expression. Two popular high-throughput gene expression technologies, microarray and Serial Analysis of Gene Expression (SAGE) are capable of producing large amounts of gene expression data with the potential of providing novel insights into fundamental disease processes, especially complex syndromes such as cardiovascular disease, whose etiologies are due to multiple genetic factors and their interplay with the environment. Microarray and SAGE have already been used to examine gene expression patterns of cell-culture, animal and human tissues models of cardiovascular diseases. In this review, we will first give a brief introduction of microarray and SAGE technologies and point out their limitations. We will then discuss the major discoveries and the new biological insightsthat have emerged from their applications to cardiovascular diseases. Finally we will touch upon potential challenges and future developments in this area. 关 键 词:Microarray, SAGE, CARDIOVASCULAR diseases, RNA, GENE expression profiling.
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