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Spasmolytic effects of tetrazepam on rat duodenum and guinea-pig ileum.

This study was designed to examine the inhibitory effects exerted by tetrazepam isolated rat duodenum and guinea pig ileum contractive responses and to further clarity the mechanisms involved. Tetrazepam produced concentration-dependent and complete relaxation of muscle contractions induced by KCl (80 mM) in guinea-pig ileum and this relaxant action was not antagonized by pretreatment with hexamethonium (0.1 mM), antagonist for nicotinic receptors, or atropine (1 microM), antagonist for muscarinic receptors, or PK 11195 (1 microM) antagonist for peripheral-type benzodiazepines receptors. Tetrazepam also modified the concentration-response curves of CaCl2 in calcium-free and high K/ depolarizing medium as soon as concentration-response curves of acetylcholine in Tyrode solution. The results suggested that tetrazepam inhibits the contractile responses to guinea-pig ileum and rat duodenum, probably through a reduction of calcium influx by way of calcium channels and these events are not related to high-affinity peripheral benzodiazepine binding sites.

Acetylcholine↗

Studies on the spasmolytic and uterine relaxant actions of n -ethyl and n -benzyl-1,2-diphenyl ethanolamines: elucidation of the mechanisms of action.

The influence of N -ethyl- and N -benzyl-1,2-diphenyl ethanolamines (compounds E and B, respectively) was examined on the spontaneously contracting rabbit jejunum and the rat uterus together with their influence on the contractions induced by some spasmogens in the guinea-pig ileum and oxytocics and CaCl2in the pregnant rat uterus. Both E and B inhibited the spontaneous contractions of the rabbit jejunum with ID50values of 0.13 and 0.03 micromol ml-1. Their inhibitory activities were not antagonized by alpha- or beta-adrenoceptor blockers but significantly reversed by CaCl2(0.015 micromol ml-1). The compounds also antagonized nicotine, ACh-, histamine-, 5-HT- and CaCl2-induced contractions by 44-100%. Compound E seemed to be several times more potent than B in inhibiting the spontaneous uterine contractions with an ID50of (7 nmol ml-1). Their inhibitory effects were not antagonized by beta2-adrenoceptor or H2-receptor blocking drugs. Both compounds (40 nmol ml-1) antagonized in a competitive manner CaCl2-induced contractions in the K+-depolarised uterus and PGE2and oxytocin-induced uterine contractions. The ID50values were in the range of 1.6-10.7 nmol ml-1. The results suggest that E and B compounds may be considered as putative L-Ca2+channel blockers with certain selectivities. The E compound seemed to be more selective against uterine L-Ca2+channels and the B compound against intestinal smooth muscles. Thus, the compounds may be of potential value in treatment of some colics, the irritant bowel syndrome, dysmenorrhoea and premature deliveries.

Adrenergic alpha-Antagonists↗

Spasmolytic action of histamine in airway smooth muscle of horse.

Histamine, 2-methylhistamine (a specific H1-agonist), 5-HT, PGF2alpha, SRS-A, bradykinin (BK) and carbachol contract bronchial and tracheal smooth muscles of the horse. Isoprenaline, PGE1, E2, dimaprit and 4-methylhistamine (last two = specific H2-agonists) relaxed airways which were partially contracted to carbachol. Mepyramine (a specific H1-antagonist) selectively antagonized contractions to histamine. In the presence of mepyramine, histamine caused relaxation of airways partially contracted to carbachol. Metiamide and burimamide (specific H2-antagonists) specifically antagonized or reversed histamine-induced bronchorelaxation. However the H2-antagonists, indomethacin and propranolol each failed to block histamine-induced relaxations in trachea. Thus, the results of this study show: (i) preponderence of H1-receptors-mediating contractions in horse airways; (ii) presence of H2-receptors-mediating bronchorelaxation and (iii) the existence of an atypical (relaxant) response (resistance to H2-antagonists; indomethacin and propranolol) in the horse trachea.

Animals↗