Professor Rebecca Dragovic from the University of Oxford tells us about her journey toward the development of the first non-invasive test for endometriosis. Discover how the NanoSight Pro helps her team isolate and analyze extracellular vesicles (EVs) – critical biomarkers in disease detection – by providing rapid and accurate size and concentration measurements. She explains why NanoSight Pro’s user-friendly interface, reproducible data, and fluorescence capabilities are game-changers in developing future diagnostic tools and advancing everyday research workflows.
Learn more about the application of nanoparticle tracking analysis for extracellular vesicle research https://bit.ly/3R3ZEZ2
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Join Oliver Huseyin, at MPI Discovery to find out how he uses NanoSight Pro to develop, and QC assure molecularly imprinted polymers (MIP) for usage in sensors and COVID19 lateral flow tests.
Using the NanoSight Pro Oliver reliably sizes his MIP population and ensures effective MIP conjugation and batch homogeneity.
Oliver also discusses how quick it is to go from out-of-the-box to analysis with NanoSight Pro and the advantages this cutting-edge technology has over NS300.
Want to learn more about NanoSight Pro?
https://www.malvernpanalytical.com/en/products/product-range/nanosight-range/nanosight-pro
Discover how NanoSight Pro is making the invisible visible for other scientists.
https://www.malvernpanalytical.com/en/learn/knowledge-center/application-notes/an140303extracellularvesicles
Designed by Claisse fusion experts, the LeNeo™ from the Claisse Fluxer® brand is a compact electrical instrument for sample preparation by fusion. Designed to insure excellent analytical performance and provide operators with safe and simple operations, it is ready to use straight out of the box. With its adjustable fusion parameters, its capability to prepare glass disks for XRF analysis, borate solutions for ICP and as well as perform Peroxide fusions, the LeNeo Fluxer is fully adaptable to all your sample preparation needs.
The Epsilon 4 is a practical XRF spectromer for identifying elements and inspecting quality in many substances. In this video, Lieven Kempenaers explains why the Epsilon 4 is the perfect XRF solution for determining the quality and purity of pharmaceutical products. Lieven also explains the advantages that Epsilon 4 – an energy-dispersive XRF spectrometer – has over traditional analysis methods, and why this makes it especially suitable for pharmaceutical manufacturing environments.
Setting the new gold standard for protein stability characterization: MicroCal PEAQ-DSC – Differential Scanning Calorimetry for the regulated environment. This innovation from Malvern Panalytical gives you data you can trust, allowing you to make confident decisions on your biological molecules at any stage of development – from candidate selection all the way through to biosimilarity assessment or manufacture. _x000D_
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The MicroCal PEAQ-DSC is the ultimate platform for stability assessment – one technology which provides high-throughput, automated operation and analysis for all users._x000D_
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Read more about the MicroCal DSC range: https://www.malvernpanalytical.com/en/products/product-range/microcal-range/microcal-dsc-range
The MicroCal DSC team introduce what Differential Scanning Calorimetry (DSC) is and why it is the gold standard in characterizing the stability of a protein or other biomolecules. _x000D_
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The MicroCal team details how Differential Scanning Calorimetry (DSC) works and why you should be using it for testing protein stability._x000D_
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For more information on Scanning Calorimetry (DSC) here http://www.malvernpanalytical.com/en/products/technology/differential-scanning-calorimetry/default.aspx
This video describes the advantages of using MicroCal Differential Scanning Calorimetry (DSC) for protein stability characterization in comparison with other analysis techniques_x000D_
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For more Information visit: https://www.malvernpanalytical.com/en/products/product-range/microcal-range/microcal-dsc-range
Ensure the consistent quality of biopharmaceutical formulations throughout the manufacturing process using MicroCal Differential Scanning Calorimetry (DSC), the gold standard for thermal stability characterization.
Understand and minimize protein aggregation whilst developing and manufacturing your biotherapeutic product by monitoring the protein’s transition midpoint temperature – Tm – using Differential Scanning Calorimetry, the gold standard in thermal stability characterization of biopharmaceuticals.
https://www.malvernpanalytical.com/en/products/product-range/microcal-range/microcal-dsc-range/
Here is the newest version of the video showing Katherine Bowers, Lead Formulation Development Scientist at FUJIFILM Diosynth Biotechnologies. She shares her views on Differential Scanning Calorimetry. _x000D_
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Her team uses a MicroCal VP-Capillary DSC system for looking at thermal stability of protein molecules, for formulation development, for biophysical characterization and during process development support. Find out more about the Malvern Panalytical MicroCal DSC range here: http://bit.ly/MicroCalDSC
Biopharmaceutical Formulation Stability Testing – using Differential Scanning Calorimetry (DSC)_x000D_
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https://www.malvernpanalytical.com/en/products/product-range/microcal-range/microcal-dsc-range/_x000D_
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See how Differential Scanning Calorimetry (DSC) helps with biopharmaceutical formulation characterization from candidate molecule through to final drug product. Understand why MicroCal Differential Scanning Calorimetry (DSC) is the gold standard for thermal stability characterization of biotherapeutic formulations. Ensuring good thermal stability is vital so that the protein remains safe and effective throughout the shelf life of the product. _x000D_
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Differential Scanning Calorimetry (DSC) helps measure the stability of proteins.