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

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