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用于神经科学研究的定制微阵列的生产。

Production of custom microarrays for neuroscience research.

作者信息

Newton Samuel S, Bennett Alicia, Duman Ronald S

机构信息

Division of Molecular Psychiatry, Yale University School of Medicine, New Haven, CT 06508, USA.

出版信息

Methods. 2005 Nov;37(3):238-46. doi: 10.1016/j.ymeth.2005.09.004.

Abstract

Microarray chips produced by commercial vendors and academic laboratories are mostly generic in nature to facilitate wide applicability. With the sequencing of the human, mouse, and rat genomes, the thrust is to expand clone and oligonucleotide sets and increase the number of genes represented on a particular array. This is appropriate for discovery based investigations where microarray technology has been successfully utilized. However, array technology can also be employed to perform hypothesis based studies if optimized chips can be produced with relevant content. Existing array technology available at core facilities can be effectively utilized to produce a custom microarrays with genes that are most relevant to the research interests of individual investigators or research groups for use as a standard molecular tool. The power of this technology can be harnessed to further our understanding of specific biological problems without involvement in extensive data mining and analysis. The custom microarray approach is presented with procedural details for design and production in the context of neurobiological investigations.

摘要

商业供应商和学术实验室生产的微阵列芯片本质上大多是通用的,以促进广泛应用。随着人类、小鼠和大鼠基因组测序的完成,重点是扩大克隆和寡核苷酸集,并增加特定阵列上所代表的基因数量。这适用于成功利用微阵列技术进行的基于发现的研究。然而,如果能够生产出具有相关内容的优化芯片,阵列技术也可用于进行基于假设的研究。核心设施现有的阵列技术可有效用于生产定制微阵列,这些微阵列包含与个别研究人员或研究小组的研究兴趣最相关的基因,用作标准分子工具。可以利用这项技术的力量来进一步加深我们对特定生物学问题的理解,而无需进行大量的数据挖掘和分析。本文结合神经生物学研究,介绍了定制微阵列方法在设计和生产方面的程序细节。

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