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To this aim, a simple microarray assay for detection and typing of adenoviruses causing acute respiratory disease in humans was developed.
A MB microarray assay for label free detection of DNA based on streptavidin-Qdot labeling on the MB instead of the target was developed by Guo et al. [51].
Qualitative RT-PCR was performed to validate the microarray assay for selected genes of interest.
A novel, PCR-free, NP-based genomic microarray assay for subtyping influenza A virus H5N1 was developed and evaluated using different influenza A strains.
These results suggest that Solexa sequencing is a more specific and efficient tool than the miRNA microarray assay for identifying mature miRNAs.
In this report, we describe a rapid and simple gold nanoparticle (NP -based geNP -basedroarray assay for specific identification of avian influenza virus H5N1 and its discrimination from other major influenza A virus strains (H1N1, H3N2).
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Microarray assays for miRNAs were performed using a service provider (LC Sciences, Houston, Texas, USA).
The same tissue RNA pairs and cDNA microarray chips were also used for the regular cDNA microarray assays for comparison.
We present a novel three-step approach for the design of high-throughput microarray assays for HLA typing.
Herein, a novel three-step approach for the development of high-throughput microarray assays for HLA typing is presented.
In the future it cannot be ignored in annotating new unknown ESTs, underlined by DNA microarray assays for example.
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