Genedata Announces AstraZeneca Standardizes on Genedata Screener as its Global Screening Platform

New five-year license agreement extends AstraZeneca-Genedata partnership; Genedata Screener now AstraZeneca’s corporate platform for expediting drug discovery

20 Nov 2015
Lois Manton-O'Byrne, PhD
Executive Editor

Industry news

Genedata, a leading provider of advanced software solutions for drug discovery and life science research, has announced it has signed a five-year license agreement with AstraZeneca. The agreement will make Genedata Screener® the cornerstone for all screening activities in search of novel small-molecule drugs at the new AstraZeneca MRC UK Centre for Lead Discovery and other AstraZeneca sites worldwide.

Genedata Screener, already used globally by AstraZeneca, routinely handles full-library screens of one to two million chemical structures as well as all follow-up screening activities in lead identification and optimization. Working in partnership, new applications such as DMPK screening, compound combination screening, screening by mass spectrometry, and support for external collaborations have been developed. With this partnership, AstraZeneca joins the growing number of leading pharma companies and CROs worldwide that are using Genedata Screener for all screening activities in early-stage drug discovery.

Genedata Screener Increases Productivity While Lowering Costs

“We believe that Genedata Screener is the gold standard for screening data analysis,” said Steve Rees, vice president of Screening Sciences and Sample Management at AstraZeneca. “It simplifies data analysis, automates processing, and makes complex technologies and experiments accessible to all scientists. During our initial Screener deployment, we recorded quantifiable increases in productivity,” continued Rees. “For example, the number of results posted to our data warehouse more than doubled, indicating that we could capture results from many more experiments, while the cost of running day-to-day operations decreased. Screener truly enables collaboration by making results comparable and data analysis comprehensible – across projects, geographies, and therapeutic areas.”

The adoption of Genedata Screener at the AstraZeneca MRC UK Centre for Drug Discovery is part of a transformative technology initiative announced by AstraZeneca, which also brings together advanced robotics for compound management and high throughput screening. Supporting AstraZeneca collaborations with global partners, CROs, and academic institutions, Genedata Screener manages all types of screening data during the life cycle of a research project and uniquely imports data from any screening instrument. The platform is used for all screening activities by AstraZeneca Discovery Sciences including specialized departments such as Biophysical Screening, High Content Biology, DMPK, and Safety Screening.

With robust screening analysis capabilities that support a wide range of workflows and technologies, Genedata Screener -- out-of-the-box -- addresses confidentiality, security, and chain-of-custody policies. The platform also enables:

  • Generation of screening results, according to AstraZeneca business rules, for the global organization as well as external partners.
  • Easy sharing and comprehension of results, including original data, both for standard and complex screening technologies such as High Content Screening and Surface Plasmon Resonance.
  • Defined access to results in restricted spaces with project-specific authorizations.

“We are very proud of our relationship with AstraZeneca and of the innovations in early-stage R&D that result from our collaboration,” noted Dr. Othmar Pfannes, CEO of Genedata. “This expanded agreement with AstraZeneca validates the strength of our partnership and underscores our shared vision and commitment to advancing research integrity and making drug discovery more efficient.”

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Mass SpectrometryMass spectrometry (MS) is a powerful analytical technique used to identify and quantify molecules based on the mass-to-charge ratio of gas-phase ions. It provides detailed information about the structure, composition, and properties of compounds and is widely used across fields such as environmental monitoring, materials science, drug discovery and development, food and beverage testing, and wider chemical research. Key MS techniques include tandem mass spectrometry (MS/MS), liquid chromatography–mass spectrometry (LS-MS) and inductively coupled plasma (ICP-MS). Choosing from these wide range of techniques and technologies can be a daunting task, so keep up to date with scientific applications, performance expectations, and customer reviews here all in one place. Visit our product directory to receive quotes direct from the manufacturer. High-Throughput ScreeningHigh-throughput screening (HTS) is an automated drug discovery technique for identification of active compounds against a compound library. Use HTS readers and integrated assay preparation / analysis workstations to screen your compounds. Identify active compounds against various HTS libraries, including membranes, proteins and peptides and HTS cell lines. Find the best high-throughput screening products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Data AnalysisData analysis hardware and software is available to make data processing straight-forward yet powerful. Data software can be used for math and stats, technical graphing and image analysis. In addition, software is available for specific data analysis of electrophoresis, densitometry, ELISA and DNA sequencing.Drug DiscoveryDrug discovery is the process of identifying potential new medications, involving stages such as target identification, compound screening, and preclinical development. It relies on cutting-edge technologies like high-throughput screening, artificial intelligence, and molecular modeling to accelerate the identification of drug candidates. Drug discovery plays a pivotal role in developing new therapies for diseases ranging from cancer to rare genetic disorders. Browse our peer-reviewed product directory to find the latest drug discovery technologies, compare options, check customer feedback, and get pricing directly from manufacturers.ScreeningUsing robotics, data processing and control software, liquid handling devices and sensitive detectors, screening allows a researcher to quickly conduct millions of chemical, genetic or pharmacological tests.Sample ProcessingSample processing is required to prepare samples prior to analysis. Technologies used for sample processing include homogenizers, grinders, mills and mixers.AutomationAutomation in laboratories and manufacturing processes enhances efficiency, precision, and scalability by reducing the need for manual intervention. It plays a critical role in improving productivity, minimizing human error, and accelerating workflows in fields like diagnostics, drug development, and industrial testing. Automation technologies include robotic systems, automated liquid handlers, and process control systems that streamline complex tasks and ensure consistent, reproducible results. Explore our peer-reviewed product directory to discover the best automation solutions, compare options, read user reviews, and get prices directly from manufacturers.High ThroughputHigh throughput experiments allow the simultaneous processing of several samples. This parallelization reduces the cost per experiment and increases reproducibility and output volume of data.Laboratory ManagementLaboratory management involves overseeing the operations of a lab, ensuring compliance with safety regulations, optimizing workflows, and maintaining equipment. Efficient lab management is key to ensuring accurate results and minimizing downtime. Technologies like laboratory information management systems (LIMS) and automated lab equipment are helping labs streamline operations. Browse our peer-reviewed product directory to find the best laboratory management tools, compare products, read reviews, and get pricing directly from manufacturers.