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A New Platform for Discovering Antibiotics
Harvard chemists hope to shorten time, difficulty in measuring their effectiveness, potential.
The Need for Speed
Evaluating MALDI-TOF as a high-throughput screening technology for the pharmaceutical industry.
Antarctic Sponge Extract Kills MRSA
New findings may provide opportunity for developing new drugs to fight dangerous bacteria currently highly resistant to treatment.
US-India Collab Finds Molecular Signatures of Severe Malaria
Study may be a significant advancement in understanding the causes of severe malaria.
Novel Way to Prevent Deadly Bacterial Infections
Monash scientists may have found a way to stop deadly bacteria from infecting patients. The discovery could lead to a whole new way of treating antibiotic-resistant “superbugs”
Gene Expression Controls Revealed
Researchers have modelled every atom in a key part of the process for switching on genes, revealing a whole new area for potential drug targets.
An Old-New Weapon Against Emerging Chikungunya Virus
Researchers utilize existing drugs to interfere with host factors required for replication of Chikungunya virus.
Using Gene-editing Technology for Faster, Cheaper Antiviral Drug Development
UCLA scientists are working to develop special screening libraries based on a gene-editing technology called CRISPR.
Can Gender Play A Role In Determining Cancer Treatment Choices?
MD Anderson study reveals “sex-biased” gene signatures in review of 13 cancer types.
New Autism Blood Biomarker Identified
Researchers at UT Southwestern Medical Center have identified a blood biomarker that may aid in earlier diagnosis of children with autism spectrum disorder, or ASD.
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Label-Free Technologies For Drug Discovery
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Over the past two decades the benefits of label-free biosensor analysis have begun to make an impact in the market, and systems are beginning to be used as mainstream research tools in many drug discovery laboratories.

Label-Free Technologies For Drug Discovery summarises the latest and emerging developments in label-free detection systems, their underlying technology principles and end-user case studies that reveal the power and limitations of label-free in all areas of drug discovery.

Label-free technologies discussed include SPR, NMR, high-throughput mass spectrometry, resonant waveguide plate-based screening, transmitted-light imaging, isothermal titration calorimetry, optical and impedance cell-based assays and other biophysical methods. The technologies are discussed in relation to their use as screening technologies, high-content technologies, hit finding and hit validation strategies, mode of action and ADME/T, access to difficult target classes, cell-based receptor/ligand interactions particularly orphan receptors, and antibody and small molecule affinity and kinetic analysis.

Label-Free Technologies For Drug Discovery is an essential guide to this emerging class of tools for researchers in drug discovery and development, particularly high-throughput screening and compound profiling teams, medicinal chemists, structural biologists, assay developers, ADME/T specialists, and others interested in biomolecular interaction analysis.

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