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Inhibitory effect of noradrenaline uptake inhibitors on contractions of rat aortic smooth muscle.

1 The effects of noradrenaline (NA) uptake inhibitors on contractions induced by NA, high K+, and 12-O-tetradecanoylphorbol-13-acetate (TPA) in rat isolated aorta were investigated. 2 Protriptyline (0.3 microM) and amitriptyline (0.3 microM) produced an approximately parallel shift to the right in the dose-response curve to NA. Protriptyline (> 0.3 microM), amitriptyline (> 0.3 microM) and xylamine (0.01-1 microM) significantly reduced the maximal contractile response to NA. The IC50 values for inhibition of the contractile response to 3 microM NA were 1.58 microM for xylamine, 1.70 microM for amitriptyline and 2.57 microM for protriptyline. 3 Protriptyline and amitriptyline dose-dependently inhibited the high K+ (60 mM)-induced contraction (IC50 = 0.69 microM for protriptyline and IC50 = 3.15 microM for amitriptyline). In contrast, xylamine did not affect the high K(+)-induced contraction. 4 Protriptyline and amitriptyline dose-dependently inhibited TPA (1 microM)-induced contraction in calcium-free solution; xylamine (up to 30 microM) was without effect. Staurosporine (10 nM) completely inhibited the TPA- and NA-induced contraction. 5. Protriptyline (3 microM) and amitriptyline (3 microM) caused about 54% and 60% inhibition, respectively, of aortic contractions caused by endothelin-1 (10 nM) in the absence of endothelium. Xylamine (10 microM) was without effect. 6 Inhibitory effects of NA uptake inhibitors on contractions were independent of the presence of endothelium and were unaffected by the K+ channel blockers, tetraethylammonium ions (up to 3 mM) and glibenclamide (up to 30 microM). 7 These results indicate that tricyclic antidepressant drugs such as protriptyline and amitriptyline could act as both postsynaptic adrenoceptor antagonists and direct inhibitors of muscle contraction; whereas, xylamine, a structurally distinct NA uptake blocker might principally exert its action only at alpha-adrenoceptors on rat aortic smooth muscle.

Adrenergic Uptake Inhibitors↗

Relationships between chronotropic effect, 1-3H-noradrenaline uptake and tissue concentrations of desipramine, protripyline and doxepin in rat isolated atria.

The pharmacological effects of three tricyclic antidepressant agents (desipramine, protriptyline and doxepin) are evaluated in rat isolated atria in relation to their accumulation and efflux kinetics. The pharmacological effects studed are: inhibition of 1-3H-noradrenaline uptake, potentiation of 1-noradrenaline chronotropic response, and changes in spontaneous atrial rate. All drugs inhibit noradrenaline uptake and potentiate noradrenaline chronotropic response (desipramine congruent to protriptyline greater than doxepin). Desipramine and protriptyline, at concentrations of 10(-7) -- 10(-6)M stimulate the spontaneous rate; higher concentrations (greater than 10(-6)M) depress it. Doxepin has only a negative chronotropic effect. When the drugs are removed from the incubation medium, the depressing effect starts to disappear immediately for doxepin and desipramine and after 20 min for protriptyline. On the contrary the stimulating effect persists after repeatedly washing the preparations. Desipramine, protriptyline and doxepin extensively accumulate in the myocardial tissue (desipramine larger than or equal to protriptyline greater than doxepin). In the efflux studies doxepin is washed out more rapidly than desipramine and protriptyline. Although the kinetics of uptake and efflux of the three compounds are not sufficient to interpret their different pharmacological activities in isolated atria, they give useful information on the persistance of the sympathomimetic effect and the rapid disappearing of the negative chronotropic effect after washing.

Animals↗

Inhibition of contractions by tricyclic antidepressants and xylamine in rat vas deferens.

The effects of noradrenaline uptake inhibitors on contractions evoked by electric field stimulation, noradrenaline, clonidine. 5-hydroxytryptamine, ATP, high K+, and BaCl2 in the epididymal half of rat isolated vas deferens were examined. Protriptyline, amitriptyline and xylamine concentration-dependently inhibited monophasic contractions induced by low frequency electrical stimulation (0.3 Hz, 1 ms duration, 60 V). Protriptyline and xylamine inhibited in a noncompetitive manner the contractile response induced by noradrenaline (3 x 10(-8)-3 x 10(-5) M) and the inhibitory effect of protriptyline was reversible, while xylamine produced long-lasting inhibition. All three noradrenaline uptake blockers inhibited the clonidine (3 x 10(-6) M) or 5-hydroxytryptamine (10(-5) M)-induced contraction. Protriptyline and amitriptyline at concentrations of 3 x 10(-6)-3 x 10(-5) M reversibly inhibited the ATP (10(-4) M)-induced monophasic contraction. In contrast, xylamine ((1-3) x 10(-5) M) had no effect. Protriptyline and amitriptyline but not xylamine concentration-dependently reduced the high K+ (6 x 10(-2) M)-induced sustained contraction with respective IC50 values of 1.81 x 10(-6) M and 8.6 x 10(-7) M. Protriptyline and amitriptyline at 10(-5) M reversibly inhibited BaCl2 (3 x 10(-3) M)-induced phasic contractions and xylamine (10(-5) M) had no effect. These findings demonstrate that tricyclic antidepressants might exert direct inhibitory action on mechanical contraction pathway, whilst xylamine, a structurally different inhibitor of noradrenaline uptake, may act mainly at alpha-adrenoceptors and other amine receptors on the smooth muscle of the rat vas deferens as a long-lasting nonselective antagonist, and it at least in part blocks sympathetic transmission.

Adenosine Triphosphate↗

Antiarrhythmic action of bethanidine.

Studies were performed in 20 patients with symptomatic ventricular tachycardia (VT) to determine the efficacy of bethanidine compared with procainamide in preventing VT induced by programmed electrical stimulation. Before administering bethanidine, 5 to 10 mg/kg, the patients received 15 mg of protriptyline orally 24 and 2 hours before electrophysiologic studies to prevent the orthostatic hypotensive effects of bethanidine. Sustained VT (VT not spontaneously stopping) was induced in 8 and nonsustained VT (10 beats or more, terminating spontaneously) was induced in 4 patients. Bethanidine, 5 mg/kg, protected in 7 patients, and 10 mg/kg protected 1 additional patient. Procainamide, 1,000 and 1,500 mg intravenously, protected 8 of 16 patients. Bethanidine prevented VT induction in 50% of the patients not protected by procainamide. Bethanidine facilitated VT induction in 3 patients, while procainamide facilitated VT induction in 1 patient. Four patients with symptomatic VT have received bethanidine therapy for an average of 11 +/- 1.3 months, without clinical recurrence of their VT. Concomitant administration of protriptyline attenuated the acute hemodynamic changes caused by bethanidine and chronic combined therapy of protriptyline and bethanidine abolished the severe orthostatic changes in blood pressure caused by bethanidine. These studies show that bethanidine is effective in preventing VT induction and, thus, its use may not be restricted only to cases of primary ventricular fibrillation.

Bethanidine↗