Tecan Microarray Solutions Transform Functional Proteomics Workflows at Arizona State University

21 Feb 2013

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Researchers at The Virginia G. Piper Center for Personalized Diagnostics at the Biodesign Institute, Arizona State University, have invested in an HS 4800™ Pro automated hybridization station and two PowerScanner™ units from Tecan for processing protein microarrays. Dr Joshua LaBaer, Director of the Center, explained: “We have adopted a unique approach to functional proteomics which involves printing the gene for the proteins on the slide and adding a cell-free extract that synthesizes the proteins in situ. The proteins are made literally an hour before we test them.”

Dr LaBaer continued: “These instruments, our newest pieces of Tecan equipment, are real workhorses. The HS 4800 Pro runs by itself overnight and allows us to produce proteins in situ on the glass, wash them off, and even incubate them with samples, all in a single run, without any manual intervention at all. This instrument has done wonders in terms of reproducibility; we can do the same array on two different days and still get the same answer. The PowerScanners are also essential, with very good optics giving us strong signals. We run many slides repeatedly, which can be extremely tedious, and having reliable autoloaders on the PowerScanners has been very helpful.”

Dr LaBaer concluded: “In both cases, the devices were by far the best thing on the market. In the case of the PowerScanner, there was nothing out there with the same combination of good autoloading features, images and software. Other devices simply didn’t match the quality.”

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ProteomicsProteomics is the systemic bioinformatics study of proteins and amino acids, including their structure, size, function and identification. Tools used in proteomics include chromatography, blotting and gels, protein arrays, mass spectrometry and ELISA and associated analysis software. Analyzers and proteomic systems should be sensitive, high resolution, fast and may be automated for high-throughput.Sample ManagementSample management systems include sample storage devices such as freezers and plate storers, sample environment enclosures and sample organization, retrieval and sorter systems. Useful system features include high-throughput, automation, robotic arms, automated liquid handling and associated database systems. Accessories in sample management include barcode scanners, heat sealers and tubes.Microarray AnalysisMicroarrays, also known as biochips, are used for the detection and analysis of multiple genes, proteins, antibodies, or biomarkers on a single microchip. This can reveal information on protein or gene expression, single nucleotide polymorphism (SNP), copy number variation (CNV), epigenetics and patient health in clinical diagnostic tests. Discover a range of microarray scanners and prefabricated antibody, protein, RNA and DNA microarrays for your analysis or consider creating your own custom microarrays with a microarray printer. Find the best microarray products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Robotic InstrumentsRobotic instruments can be used for high-throughput automation of many lab processes. Such processes use instruments for assays like cell based assays and ELISA, for sample preparation like shakers, centrifuges and incubators, and for analysis such as sequencing and western blot analyzers. Useful features of robotic instruments include speed, reproducibility, barcode readers, software and automation.Robotic WorkstationsRobotic workstations are automated platforms enabling the user to perform high-throughput, multi-application processes, from sample preparation tasks such as PCR set-up, DNA purification and NGS library preparation, to integrated sample prep and analysis workstations. Automation makes processes consistent, fast, precise and fully walk-away. Find the best robotic workstations in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Automated Liquid HandlingAutomated liquid handling equipment is used to mix, dilute and dispense allotted volumes of liquid into microplates and other vessels automatically. The robotic, liquid handling arms can dispense from single channel to 3456 multichannel as well as operate nanoliter dispensing, enabling high throughput of samples. Find the best automated liquid handlers in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Protein ExpressionProtein expression is the utilization of cell machinery for the synthesis of proteins and has become a critical tool in biotherapeutic, genomic, and proteomic research. Produce recombinant proteins with expression vectors in combination with a host cell suitable for high-level protein expression. For production of toxic proteins, consider cell-free expression vectors. Create and monitor post-translational modifications with protein modification kits. Find the best protein expression products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Protein BiologyThe analysis of protein expression, identity and function is vital for many areas of life science research and drug discovery. Some of the most commonly used techniques in protein analysis include Western blotting, electrophoresis and mass spectrometry.In Situ Hybridization