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A Lecci

Publications and source records attributed to A Lecci.

92 records · Page 6Linked to original sources

Tachykinin receptors mediate atropine-resistant rat duodenal reflex contractions in vivo.

The study aimed to establish the possible role of tachykinins as mediators of atropine-resistant reflex contractions evoked by balloon distension in the proximal duodenum of urethane-anesthetized, guanethidine (34 mumol/kg s.c.)-pretreated rats. Distension of the balloon with a small amount (0.2-0.3 ml) of saline induced the appearance of phasic rhythmic contractions (about 11 mmHg in amplitude) which were promptly suppressed by either atropine (3 mumol/kg i.v.) or hexamethonium (28 mumol/kg i.v.). Despite the continuous i.v. infusion of atropine (2 mumol/h), low-amplitude rhythmic phasic contractions recovered, which were promptly suppressed by hexamethonium, to indicate the involvement of an atropine-resistant excitatory reflex. The amplitude of these atropine-resistant contractions was increased to about 4-5 mmHg by further distension of the balloon (0.4-0.6 ml) : under these conditions, the atropine-resistant contractions undergo a progressive fading. The fading was prevented by i.v. administration of the nitric oxide (NO) synthase inhibitor, L-nitroarginine methyl ester (L-NAME, 55 mumol/h), to provide a suitable baseline (amplitude of contractions was 7-8 mmHg) for studying the effect of tachykinin receptor antagonists. I.v. administration of the selective tachykinin NK2 receptor antagonists, MEN 10,627 (10-100 nmol/kg) and SR 48968 (100-300 nmol/kg) or of the selective NK1 antagonist SR 140333 (100 nmol/kg), at doses which do not affect the duodenal contractions induced by acetylcholine (5.5 mumol/kg i.v.), produced a prompt and long lasting suppression of the atropine-resistant reflex duodenal contractions produced by balloon distension in urethane-anesthetized rats, whilst SR-48965 (300 nmol/kg), the enantiomer of SR-48968 devoid, of NK2 receptor blocking activity, was without effect. I.v. administration of the selective NK1 receptor agonists [Sar9] substance P sulfone and septide or of the NK2 receptor selective agonist, [beta Ala8] neurokinin A(4-10) produced dose-dependent contractions of the duodenum. SR 140333 (100 nmol/kg i.v.) selectively antagonized the duodenal contractions produced by [Sar9] substance P sulfone and septide without affecting those produced by [beta Ala8] neurokinin A(4-10). On the other hand, MEN 10,627 (30-100 nmol/kg i.v.) and SR 48968 (100-300 nmol/kg i.v.) but not SR 48965 (300 nmol/kg i.v.) antagonized, at a comparable extent, duodenal contractions induced by both the selective NK2 and NK1 receptor agonists. We conclude that endogenous tachykinins are involved in mediating atropine-resistant reflex contractions evoked by distension of the rat duodenum in vivo: both NK1 and NK2 receptors are activated by endogenous ligands to produce NANC contractions of rat duodenum in vivo. However, the contractile response to i.v. administered NK1 receptor agonists, [Sar9] substance P sulfone and septide, may involve the release of mediators producing smooth muscle contraction via NK2 receptors.

Analysis of Variance↗

Activation of capsaicin-sensitive primary afferents in the rat urinary bladder by compound 48/80: a direct action on sensory nerves?

We have assessed the ability of compound 48/80, a mast cell degranulating agent, to activate the sensory and efferent function of capsaicin-sensitive primary afferents in the rat urinary bladder. Compound 48/80 produced a calcium-dependent release of calcitonin gene-related peptide-like immunoreactivity from the superfused rat urinary bladder. This effect was prevented by in vitro capsaicin desensitization, but was not affected by indomethacin, methysergide, ondansetron, chlorpheniramine or cimetidine, nor by systemic pretreatment with compound 48/80 at a dose regimen which prevented lethality produced by intravenous administration of it in anesthetized rats. Compound 48/80 also produced a contraction of the rat isolated bladder which was not reduced by methysergide, indomethacin or in vitro capsaicin desensitization. In vivo, topical application of compound 48/80 on the serosal surface of the rat urinary bladder activated a series of high amplitude rhythmic bladder contractions which were hexamethonium-sensitive (micturition reflex). This effect was prevented by systemic capsaicin desensitization while it was unchanged by chlorpheniramine, methysergide, indomethacin or ondansetron. Administered intravenously, compound 48/80 produced a plasma protein extravasation (Evans blue leakage technique) in the rat urinary bladder which was abolished by systemic capsaicin pretreatment or chlorpheniramine while it was unaffected by methysergide or indomethacin. The present findings provide direct neurochemical evidence that compound 48/80 activates the peripheral endings of capsaicin-sensitive primary afferent neurons, leading to a stimulation of their sensory and efferent functions in the rat urinary bladder. The possibility of a direct action of compound 48/80 in producing excitation of capsaicin-sensitive sensory nerves should be considered.

Animals↗