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Use of a multi-thermal washer for DNA microarrays simplifies probe design and gives robust genotyping assays0

机译:将多热清洗器用于DNA微阵列可简化探针设计并提供可靠的基因分型分析0

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摘要

DNA microarrays are generally operated at a single condition, which severely limits the freedom of designing probes for allele-specific hybridization assays. Here, we demonstrate a fluidic device for multi-stringency posthybridization washing of microarrays on microscope slides. This device is called a multi-thermal array washer (MTAW), and it has eight individually controlled heating zones, each of which corresponds to the location of a subarray on a slide. Allele-specific oligonucleotide probes for nine mutations in the beta-globin gene were spotted in eight identical subarrays at positions corresponding to the temperature zones of the MTAW. After hybridization with amplified patient material, the slides were mounted in the MTAW, and each subarray was exposed to different temperatures ranging from 22 to 40 degrees C. When processed in the MTAW, probes selected without considering melting temperature resulted in improved genotyping compared with probes selected according to theoretical melting temperature and run under one condition. In conclusion, the MTAW is a versatile tool that can facilitate screening of a large number of probes for genotyping assays and can also enhance the performance of diagnostic arrays.
机译:DNA微阵列通常在单一条件下运行,这严重限制了设计用于等位基因特异性杂交测定的探针的自由度。在这里,我们展示了一种用于在显微镜载玻片上对多阵列进行多严格杂交后清洗的流体装置。该设备称为多热阵列洗衣机(MTAW),它具有八个独立控制的加热区,每个加热区都对应于载玻片上子阵列的位置。将β-珠蛋白基因中9个突变的等位基因特异性寡核苷酸探针点在8个相同的子阵列中,对应于MTAW的温度区。与扩增的患者材料杂交后,将载玻片固定在MTAW中,并将每个子阵列暴露于22至40摄氏度的不同温度下。在MTAW中加工时,不考虑解链温度而选择的探针与探针相比可改善基因分型根据理论熔融温度选择并在一种条件下运行。总之,MTAW是一种多功能工具,可以促进筛选大量用于基因分型测定的探针,还可以增强诊断阵列的性能。

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