在原型核心实验室中简化微阵列技术。

American clinical laboratory Pub Date : 2002-10-01
Brian Soriano, Pamela Bean, Jeanette Gaydos, Boris Tabakoff
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引用次数: 0

摘要

微阵列实验的总体方案如图3所示。在研究中使用微阵列的真正好处是从一系列相关的微阵列实验提供的丰富数据中获得知识。核心实验室已经生产了三种cDNA阵列,小鼠15K阵列,人类13K阵列和人类凋亡阵列,其中包含350多个凋亡元件。最近,15K阵列被用于建立小鼠大脑几个区域的基因表达数据库,并用于研究转基因和基因敲除小鼠。细胞凋亡阵列已被癌症研究人员用于进一步阐明导致细胞死亡和癌症的基因之间的变化和相互作用。UCHSC基因表达阵列核心由国家衰老研究所和国家癌症研究所(Bethesda, MD)支持,为所有学术用户提供服务,并为对酒精和癌症研究感兴趣的基因组研究人员提供坚实的技术基础。
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Streamlining microarray technology in a prototype core laboratory.

The overall scheme of a microarray experiment is summarized in Figure 3. The real benefit of using microarrays in research is gaining knowledge from the abundant data provided from the series of related microarray experiments. The core laboratory has produced three cDNA arrays, a mouse 15K array, a human 13K array, and a human apoptosis array with 350 plus apoptotic elements. Recently, the 15K array is being used in building a database for gene expression in several areas of the mouse brain and for studying transgenic and knockout mice. The apoptosis array has been used by cancer researchers to further elucidate changes and interactions between genes leading to cell death and cancer. The UCHSC Gene Expression Array Core is supported by the National Institute on Aging and the National Cancer Institute (Bethesda, MD) to serve all academic users and has a special interest in providing a solid technological base for genomic researchers interested in alcohol and cancer research.

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