Résultats de la recherche

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Chemokine neutraligands as tools to study inflammation
Chemical libraries screening in the academy and drug discovery
How does paracetamol work ?
The chemokine system in physiology and pathophysiology
Functional dynamics of GPCR
Allosteric functional switch of GPCRs : The example of the neurokinin NK2 receptor
Chalcone 4, an anti CXCL12 molecule with multiple in vivo effects
Neutraligands : anti-chemokine molecules
Cellular therapies and synthetic biology approaches to treat diabetes
Chemical biology of the chemokine system
Label-Free Assays to Discover and Characterize Small Neutralizing Molecules Targeting Chemokines/Cytokines that Bind to GPCRs
Concluding remarks : Bioorthogonal chemistry contributing to molecular therapeutic innovation
Anti-Chemokine Neutraligands as Potential Anti-inflammatory Drugs: From in vitro to in vivo Studies
Decoy chemokine ligands: Discovery and anti-inflammatory activity
Probing chemokine functions with neutraligands
Fluorescent dyes and dye precursors
Pharmacological blockade of CXCL12/CXCR4 signaling prevents the development of hyperalgesia in mice.
Evidence for a bitopic (orthosteric/allosteric) nature of fluorescent ligands at muscarinic M1 receptors
Neuropeptide Y receptor mediates activation of ERK1/2 via transactivation of the IGF receptor
Contrôle qualité des chimiothèques. [= Quality control of chemical libraries]

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