Scintillation proximity assays in high-throughput screening.
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A high-throughput scintillation proximity-based assay for human DNA ligase IVLigand binding assays at equilibrium: validation and interpretationFluorescence anisotropy (polarization): from drug screening to precision medicine.Tools for GPCR drug discovery.4'-Phosphopantetheinyl transferase PptT, a new drug target required for Mycobacterium tuberculosis growth and persistence in vivoFunctional Stability of the Human Kappa Opioid Receptor Reconstituted in Nanodiscs Revealed by a Time-Resolved Scintillation Proximity AssayEpigenetic assays for chemical biology and drug discovery.Comparison of bioluminescent kinase assays using substrate depletion and product formation.Scintillation proximity assay for total p53 protein as an alternative to ELISA.Identification of pregnane X receptor ligands using time-resolved fluorescence resonance energy transfer and quantitative high-throughput screening.Development and application of PI3K assays for novel drug discovery.High-throughput screening using the differential radial capillary action of ligand assay identifies ebselen as an inhibitor of diguanylate cyclases.Development of a Novel High-Density [3H]Hypoxanthine Scintillation Proximity Assay To Assess Plasmodium falciparum GrowthAdvances in functional X-ray imaging techniques and contrast agentsLabel-free screening assays: a strategy for finding better drug candidates.An update of novel screening methods for GPCR in drug discovery.Ligand-receptor interaction platforms and their applications for drug discovery.New-generation screening assays for the detection of anti-influenza compounds targeting viral and host functions.Scintillation proximity assay (SPA) as a new approach to determine a ligand's kinetic profile. A case in point for the adenosine A1 receptor.Present and future approaches to screening of G-protein-coupled receptors.Scintillation proximity assay of arginine methylation.Development and validation of reagents and assays for EZH2 peptide and nucleosome high-throughput screens.A high throughput scintillation proximity imaging assay for protein methyltransferases.Correction for interference by test samples in high-throughput assays.Label-Free Quantification of Small Molecule Binding to Membrane Proteins on Single Cells by Tracking Nanometer-Scale Cellular Membrane Deformation.Deuterium- and Tritium-Labelled Compounds: Applications in the Life Sciences.Bright X-ray and up-conversion nanophosphors annealed using encapsulated sintering agents for bioimaging applications.Protein-ligand (un)binding kinetics as a new paradigm for drug discovery at the crossroad between experiments and modelling
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Scintillation proximity assays in high-throughput screening.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on June 2008
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
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vědecký článek
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name
Scintillation proximity assays in high-throughput screening.
@en
Scintillation proximity assays in high-throughput screening.
@nl
type
label
Scintillation proximity assays in high-throughput screening.
@en
Scintillation proximity assays in high-throughput screening.
@nl
prefLabel
Scintillation proximity assays in high-throughput screening.
@en
Scintillation proximity assays in high-throughput screening.
@nl
P2093
P356
P1476
Scintillation proximity assays in high-throughput screening.
@en
P2093
Andres Schmid
J Fraser Glickman
Sandrine Ferrand
P304
P356
10.1089/ADT.2008.135
P577
2008-06-01T00:00:00Z