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Braz. J. Psychiatry (São Paulo, 1999, Impr.) ; 35(4): 387-392, Oct-Dec. 2013. graf
Article in English | LILACS | ID: lil-697330

ABSTRACT

Objective: Despite the recognized anti-inflammatory potential of heterocyclic antidepressants, the mechanisms concerning their modulating effects are not completely known. Thus, we evaluated the anti-inflammatory effect of amitriptyline, clomipramine, and maprotiline and the possible modulating properties of these drugs on neutrophil migration and mast cell degranulation. Methods: The hind paw edema and air-pouch models of inflammation were used. Male Wistar rats were treated with saline, amitriptyline, clomipramine or maprotiline (10, 30, or 90 mg/kg, per os [p.o.]) 1 h before the injection of carrageenan (300 μg/0.1 mL/paw) or dextran (500 μg/0.1 mL/paw). Then, edema formation was measured hourly. Neutrophil migration to carrageenan (500 μg/pouch) and N-formyl-methionyl-leucyl-phenylalanine (fMLP) (10-6 M/mL/pouch) was also investigated in 6-day-old air-pouch cavities. Compound 48/80-induced mast cell degranulation was assessed in the mesenteric tissues of antidepressant-treated rats. Results: All tested antidepressants prevented both carrageenan- and dextran-induced edema. The anti-inflammatory effect of these drugs partially depends on the modulation of neutrophil migration, since they significantly counteracted the chemotactic response of both carrageenan and fMLP (p < 0.01). Furthermore, amitriptyline, clomipramine and maprotiline inhibited compound 48/80-induced mast cell degranulation (p < 0.001). Conclusions: These results suggest an important anti-inflammatory role of heterocyclic antidepressants, which is dependent on the modulation of neutrophil migration and mast cell stabilization. .


Subject(s)
Animals , Male , Rats , Amitriptyline/pharmacology , Anti-Inflammatory Agents/pharmacology , Cell Degranulation/drug effects , Clomipramine/pharmacology , Maprotiline/pharmacology , Mast Cells/drug effects , Neutrophil Infiltration/drug effects , Carrageenan/adverse effects , Cell Movement/drug effects , Disease Models, Animal , Edema/chemically induced , Mast Cells/physiology , Rats, Wistar
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