Faster Characterisation of Enzymes with Avacta's Optim® 1000

18 Mar 2013
Sarah Thomas
Associate Editor

Product news

The DSM Biotechnology Centre, based in Delft, Netherlands, is taking advantage of Avacta Analytical's Optim® 1000 micro-volume protein analysis instrument to characterise enzymes for use in the food industry. Mark Stor, an associate scientist in the applied biochemistry department, explained: "Enzymes are sold on an activity basis, and that requires biochemical characterisation to establish what the enzyme looks like and how it behaves. We need to know the limitations of each enzyme to determine which applications it is most suitable for."

"We saw the Optim at some laboratory fairs, and were interested in its ability to run temperature gradients and produce stability profiles. This is really important for us; stability is always an issue with enzymes. If an enzyme is produced at 30 °C, will it also work at 60 °C? We have to test the enzyme to establish its limits, looking at its activity at different temperatures and in a range of formulations. To do this manually is extremely time consuming, but using the Optim it is possible to study 96 formulations in a day, obtaining a complete temperature profile that gives an indication of the most stable products. It is much quicker, and reduces the amount of work required. We can screen samples more quickly and, in the future, may even be able to replace lengthy shelf life studies."

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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.EnzymesEnzymes are macromolecular biological catalysts used across life science, pharmaceutical and clinical research. Various enzymes can be purchased for research applications including ligases, high fidelity polymerases, nuclease, protease, restriction enzymes, tissue dissociation enzymes and enzyme inhibitors. Find the best enzymes 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.BiopharmaceuticalsBiopharmaceuticals are proteins and other compounds (such as nucleic acids) produced by living organisms that have uses as therapeutics or for in vivo diagnostics. The most well known example of a biopharmaceutical product, and the first to be approved for therapeutic use, was recombinant human insulin.TherapeuticsTherapeutics are treatments designed to alleviate or cure diseases. These include pharmaceuticals, biologics, and gene therapies, which work by targeting specific disease mechanisms. Advances in personalized medicine and biologics offer new hope for patients with conditions that were previously difficult to treat. Browse our peer-reviewed product directory to find therapeutic solutions for various diseases; compare products, check user reviews, and get pricing directly from manufacturers.BiopharmaceuticalsBiopharmaceuticals are proteins and other compounds (such as nucleic acids) produced by living organisms that have uses as therapeutics or for in vivo diagnostics. The most well known example of a biopharmaceutical product, and the first to be approved for therapeutic use, was recombinant human insulin.
Faster Characterisation of Enzymes with Avacta's Optim® 1000