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使用基因表达微阵列进行基因组分析。

Genome analysis with gene expression microarrays.

作者信息

Schena M

机构信息

Department of Biochemistry, Beckman Center, Stanford University Medical Center, CA 94305-5307, USA.

出版信息

Bioessays. 1996 May;18(5):427-31. doi: 10.1002/bies.950180513.

Abstract

Advances in biochemistry, chemistry and engineering have enabled the development of a new gene expression assay. This 'chip-based' approach utilizes microscopic arrays of cDNAs printed on glass as high-density hybridization targets. Fluorescent probe mixtures derived from total cellular messenger RNA (mRNA) hybridize to cognate elements on the array, allowing accurate measurement of the expression of the corresponding genes. Array densities of > 1,000 cDNAs per cm2 enable quantitative expression monitoring of a large number of genes in a single hybridization. A two-color fluorescence detection scheme allows rapid and simultaneous differential expression analysis of independent biological samples. Mass-produced microarrays provide a new tool for genome expression analysis that may revolutionize genetic dissection, drug discovery and human disease diagnostics.

摘要

生物化学、化学和工程学的进展推动了一种新的基因表达检测方法的发展。这种“基于芯片”的方法利用印刷在玻璃上的cDNA微观阵列作为高密度杂交靶标。源自总细胞信使RNA(mRNA)的荧光探针混合物与阵列上的同源元件杂交,从而能够准确测量相应基因的表达。每平方厘米大于1000个cDNA的阵列密度使得在一次杂交中能够对大量基因进行定量表达监测。双色荧光检测方案允许对独立生物样品进行快速且同时的差异表达分析。大规模生产的微阵列为基因组表达分析提供了一种新工具,可能会给基因剖析、药物发现和人类疾病诊断带来变革。

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