ebook: Vaccines in the digital age
In this ebook, we’ll see how digitally enabling your organisation can increase capacity and improve vaccine production.
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In this ebook, we’ll see how digitally enabling your organisation can increase capacity and improve vaccine production.
This whitepaper describes the automated culturing of hiPSC-derived cells for high-throughput phenotypic screening, using validated phenotypic assays.
Researchers have developed a new mass spectrometer that uses rotation frequencies of ionised molecules to measure mass with high accuracy.
In this whitepaper we explore some of the major bottlenecks in the development lifecycle and the current barriers to effective digital transformation.
Learn how Simple Western automated immunoassays screen degraders and IMiD compounds to quantify degradation activity, providing accurate DC50 and Dmax values.
21 January 2021 | By Yokogawa Life Innovations
Watch our on-demand webinar and learn how image-based phenotypic screening relies on extraction of multivariate information from cells cultured in a large number of screened conditions. In this webinar, we explore the application of complex and biologically relevant model systems for drug screening, such as small intestinal organoids.
Discover how workflows are being accelerated to speed up the vaccine research and development process while maintaining safety and immunogenicity.
Getting a drug product to market can be a challenging process with lots to consider, but Recipharm’s team of experts is here to support you.
17 December 2020 | By Living Systems Institute, University of Exeter
Watch our on-demand webinar where we explore new methods to improve data quality from high-throughput screens. You'll learn about solutions for common problems in drug-target discovery and our keynote speaker will also look at case studies where new approaches to screening have identified high-quality candidate drugs for proliferative diseases.
Identify therapeutic effects and adverse responses to compounds earlier in the drug discovery process.
A major challenge within electrophysiology labs is 50 or 60 Hz line frequency electrical noise, which can either distort or completely drown out biological signal.
Combining 2D and 3D models with live-cell assays allows monitoring of cell responses in real time and provides important insights about compound treatment effects, biological complexity, and physiological relevance of assay results.
Learn how to perform complex analysis of calcium oscillations and assess cellular and mitochondrial toxicity.
Water immersion objectives are essential for capturing more data at greater depths in 3D structures, such as spheroids and thick tissues.
Evaluating and quantitating nuclear transduction.