Effects of oxatomide and derivatives on high affinity IgE receptor-activated signal transduction pathways in rat basophilic leukemia cells: role of protein tyrosine hyperphosphorylation and inhibition of extracellular calcium influx

Author:

Paulussen Jeannette J.C,Fischer Marcel J.E,Roozendaal Ramon L,van der Heijden Vincent C,van Dijken Peter,de Mol Nico J,Janssen Lambert H.M

Publisher

Elsevier BV

Subject

Pharmacology,Biochemistry

Reference27 articles.

1. Oxatomide and derivatives as inhibitors of mediator release from a mast cell model; structure activity relationships;Paulussen;Drug Res,1996

2. Kok-van Esterik JAE, Tiemessen RC, de Mol NJ and Janssen LHM, Influence of the anti-allergic drug oxatomide on the signal transduction mechanism in a mast cell model;Paulussen;Eur J Pharmacol,1996

3. Paulussen JJC, Influence of oxatomide and derivatives on membrane structures: relation with inhibition of calcium influx in RBL cells. In: The antiallergic drug oxatomide: Mechanism of action in a mast cell model, pp. 71–89, Thesis, Utrecht University, 1996.

4. Protein-tyrosine phosphorylation: an essential component of FcϵRI signaling;Benhamou;Immunol Today,1992

5. FcϵRI-induced protein tyrosine phosphorylation of pp72 in rat basophilic leukemia cells (RBL-2H3);Stephan;J Biol Chem,1992

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