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用于在标准格式微阵列上实时测量杂交和熔解的创新集成系统。

Innovative integrated system for real-time measurement of hybridization and melting on standard format microarrays.

作者信息

Marcy Yann, Cousin Pierre-Yves, Rattier Maxime, Cerovic Gordana, Escalier Guilhem, Béna Gilles, Guéron Maurice, McDonagh Lorcan, le Boulaire Françoise, Bénisty Henri, Weisbuch Claude, Avarre Jean-Christophe

机构信息

Genewave, Ecole Polytechnique Campus, Palaiseau, France.

出版信息

Biotechniques. 2008 Jun;44(7):913-20. doi: 10.2144/000112758.

DOI:10.2144/000112758
PMID:18533901
Abstract

Despite the great popularity and potential of microarrays, their use for research and clinical applications is still hampered by lengthy and costly design and optimization processes, mainly because the technology relies on the end point measurement of hybridization. Thus, the ability to monitor many hybridization events on a standard microarray slide in real time would greatly expand the use and benefit of this technology, as it would give access to better prediction of probe performance and improved optimization of hybridization parameters. Although real-time hybridization and thermal denaturation measurements have been reported, a complete walk-away system compatible with the standard format of microarrays is still unavailable. To address this issue, we have designed a biochip tool that combines a hybridization station with active mixing capability and temperature control together with a fluorescence reader in a single compact benchtop instrument. This integrated live hybridization machine (LHM) allows measuring in real time the hybridization of target DNA to thousands of probes simultaneously and provides excellent levels of detection and superior sequence discrimination. Here we show on an environmental single nucleotide polymorphism (SNP) model system that the LHM enables a variety of experiments unachievable with conventional biochip tools.

摘要

尽管微阵列具有很高的普及度和潜力,但其在研究和临床应用中的使用仍然受到冗长且昂贵的设计和优化过程的阻碍,主要是因为该技术依赖于杂交的终点测量。因此,能够在标准微阵列载玻片上实时监测多个杂交事件将极大地扩展该技术的用途和益处,因为这将有助于更好地预测探针性能并改进杂交参数的优化。尽管已经报道了实时杂交和热变性测量,但仍没有与微阵列标准格式兼容的完整无人值守系统。为了解决这个问题,我们设计了一种生物芯片工具,该工具在一个紧凑的台式仪器中将具有主动混合能力和温度控制的杂交工作站与荧光阅读器结合在一起。这种集成的实时杂交仪(LHM)允许实时测量靶DNA与数千个探针的杂交,并提供出色的检测水平和卓越的序列区分能力。在这里,我们在环境单核苷酸多态性(SNP)模型系统上表明,LHM能够进行各种传统生物芯片工具无法实现的实验。

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Biotechniques. 2008 Jun;44(7):913-20. doi: 10.2144/000112758.
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Sci Rep. 2017 Feb 7;7:41940. doi: 10.1038/srep41940.
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Salt concentration effects on equilibrium melting curves from DNA microarrays.盐浓度对 DNA 微阵列平衡融解曲线的影响。
Biophys J. 2010 Sep 22;99(6):1886-95. doi: 10.1016/j.bpj.2010.07.002.
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Direct calibration of PICKY-designed microarrays.直接校准 PICKY 设计的微阵列。
BMC Bioinformatics. 2009 Oct 23;10:347. doi: 10.1186/1471-2105-10-347.
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Real-time DNA microarrays: reality check.实时DNA微阵列:现实审视。
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Microfludic device for creating ionic strength gradients over DNA microarrays for efficient DNA melting studies and assay development.用于在DNA微阵列上创建离子强度梯度以进行高效DNA解链研究和分析开发的微流控装置。
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