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Effect of target and probe concentrations on hybridization in DNA microarrays

机译:靶标和探针浓度对DNA微阵列杂交的影响

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Efficient hybridization of complementary strands of DNA is the underlying principle of all microarray-based techniques for gene expression analysis. Recently studies have been published to assess oligonucleotide (55-70 bases) performance on glass-slide microarrays and stress advantages over the cDNA arrays. Importantly the oligo arrays eliminate possible failure in PCR amplifications and attain sequence optimization. In the present study, we have used 60mer oligo microarrays to investigate the effect of target (immobilized on the glass slides) and probe concentrations and possible probe interactions on hybridization. Scanner calibration slides (manufactured by Full Moon BioSystems) were used to concert the fluorescence signals into fluorophore per μm~2 in order to eliminate possible variation from scanner. The retention of the target was determined based on mock hybridization using Cy3-labeled oligonucleotide. We found that hybridization signals fell within the linear response range when the target concentration (printing solution) was equal or less than 2.5 μM. With fixed target concentrations, there is a non-linear relationship between the probe concentration and the hybridization signal. Dual-probe hybridization measurements suggest that hybridization of probes is not ideally independent. In this study, hybridization signal from Cy5 is consistently lower than that from Cy3.
机译:DNA互补链的高效杂交是所有基于微阵列的基因表达分析技术的基本原理。最近发表了一些研究来评估玻片微阵列上寡核苷酸(55-70个碱基)的性能以及相对于cDNA阵列的应力优势。重要的是,寡核苷酸阵列消除了PCR扩增中可能的失败并实现了序列优化。在本研究中,我们已使用60mer寡核苷酸微阵列研究了靶标(固定在载玻片上)和探针浓度以及杂交中可能的探针相互作用的影响。扫描仪校准载玻片(由Full Moon BioSystems制造)用于使荧光信号每μm〜2协调成荧光团,以消除扫描仪可能产生的变化。基于使用Cy3标记的寡核苷酸的模拟杂交来确定靶标的保留。我们发现,当目标浓度(打印溶液)等于或小于2.5μM时,杂交信号落入线性响应范围内。在目标浓度固定的情况下,探针浓度和杂交信号之间存在非线性关系。双探针杂交测量表明探针的杂交不是理想地独立的。在这项研究中,来自Cy5的杂交信号始终低于来自Cy3的信号。

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