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E Martinotti

Publications and source records attributed to E Martinotti.

At least 37 records · Page 2Linked to original sources

Central GABA-A receptors exert a tonic inhibitory control on gastric pepsinogen secretion in anaesthetized rats.

1. The purpose of the present study was to analyse the role played by central gamma-aminobutyric acid (GABA-A) receptors in the regulation of gastric basal pepsinogen secretion in anaesthetized rats. 2. The central, but not parenteral, administration of the GABA-A receptor antagonist bicuculline or SR-95531 caused a significant and dose-dependent increase in basal pepsinogen secretion without changes in acid output. The stimulant effect exerted by bicuculline was prevented by atropine or pirenzepine, but not by vagotomy. 3. The central, but not parenteral, administration of the GABA-A receptor agonist muscimol or THIP induced a significant and dose-dependent stimulation of both basal pepsinogen and acid secretion. The excitatory effect exerted by muscimol was prevented by atropine, pirenzepine, or pretreatment with omeprazole, but not by vagotomy. 4. These results suggest that central GABA-A receptors mediate a tonic inhibitory control on gastric pepsinogen secretion, while their phasic activation leads to an excitatory effect on acid output. However, the agonist-induced pepsigogue action appears to be generated peripherally as an indirect consequence of the increase in acid secretion. 5. It is also suggested that central GABA-A receptors affect the gastric secretory functions through non-vagal pathways that are sensitive to the blockade of peripheral cholinergic receptors.

Anesthesia↗

Adenosine enhances the bronchocontractile response to histamine in anaesthetized and curarized guinea pigs through a mechanism partly blocked by hexamethonium.

The ability of adenosine to potentiate the airway narrowing induced by histamine in anaesthetized and curarized guinea pigs has been investigated in order to establish whether it could be ascribed to a modulatory activity by the nucleoside at the neuronal level. Bilateral vagotomy, atropine (2 mg/kg i.v.), and pretreatment with capsaicin (52 mg/kg s.c. 6 days before the experiment) did not result in any significant protection against the enhancement provoked by the nucleoside of the bronchocontractile effect of histamine. On the contrary, the latter was significantly reduced by the ganglionic blocking agent, hexamethonium (10 mg/kg i.v.). Moreover, the effect of adenosine on airway responsiveness to histamine was not modified in animals treated with propranolol (1 mg/kg i.v.) or guanethidine (20 mg/kg s.c. over a period of 2 days). In conclusion, current data suggest that the purine is able, in our experimental model, to potentiate the bronchospasm induced by histamine by means of a mechanism mediated, at least partly, by non-adrenergic-non-cholinergic nerves not related to capsaicin-sensitive afferent neurons.

Adenosine↗

Morphofunctional changes in the noradrenergic innervation of the rat cardiovascular system after varying duration of noise stress.

One, six and twelve hs of exposure to acoustic stress showed different influences on the noradrenergic pattern and receptor function of the rat atria and aorta. Moreover, the lipid content of the adrenal cortex and hepatic glycogen were histochemically evaluated in the same animals to correlate these observations with the previous results. The increase in exposure time induced a corresponding increase in sympathetic innervation, which was more evident at cardiac level. The functional results showed that the potency of the agonists on the alpha- and beta-adrenoceptors does not vary, with the exception of 6-h treatment, which affected beta-receptors. By contrast, the M.R.R. of beta-receptors proved to be modified in all treatments, suggesting that noise stress affected mainly postreceptorial mechanisms linked to beta-adrenoceptors rather than their density or affinity; no significant functional modifications were observed when alpha-receptors were considered.

Adrenal Cortex↗

Conformational effects on the activity of drugs. 13. A revision of previously proposed models for the activation of alpha- and beta-adrenergic receptors.

The alpha 1-, alpha 2-, beta 1-, and beta 2-adrenergic properties of the 2-(3,4-dihydroxyphenyl)morpholines 3 and 4 (2-DPMs), of the 3-(3,4-dihydroxyphenyl)-3-piperidinols 5 and 6 (3-DPPs), and of the trans-2-amino-5,6-dihydroxytetrahydronaphthalen-1-ols 7 and 8 and the trans-2-amino-6,7-dihydroxytetrahydronaphthalen-1-ols 9 and 10 (2-ADTNs) were evaluated in vitro both by radioligand binding assays and by functional tests on isolated preparations and compared with those of norepinephrine (NE, 1) and isoprenaline (ISO, 2). Through a comparison of the stereostructures of the compounds examined with their biopharmacological properties, it was possible to revise previously proposed molecular models for the direct activation of alpha- and beta-adrenergic receptors. The revised models (A-C) provided information about the conformational requirements of adrenergic drugs, which substantially fit in with the results of several published studies involving conformationally-restricted adrenoceptor agonists. The different position of the catecholic hydroxyl groups in model B, which refers to the alpha 2 receptors, and in model C, which refers to the beta receptors, confirms the importance of the rotameric position of the aromatic ring of catecholamines in the interaction with the alpha- and beta-adrenergic receptor.

Animals↗

Effects of subacute exposure to noise on the noradrenergic innervation of the cardiovascular system in young and aged rats: a morphofunctional study.

The effects of subacute noise stress on the noradrenergic pattern and receptor-mediated responses were examined in aorta and atria of young and aged rats. Noise exposure increased the density of noradrenergic fibres and responses to the beta-adrenergic agonist isoprenaline in the cardiac tissue of young animals. In aged rats, the stressing stimulus markedly increased the maximal response to the alpha-agonist on the aortic musculature; on the contrary, a reduced responsiveness to the beta-agonist was observed at the cardiac level, without any noteworthy changes in the noradrenergic pattern in comparison to aged controls. The present results indicate that subacute noise stress induces both morphological and functional modifications of the noradrenergic nervous system and also that after subacute noise stress, morphological changes do not necessarily correspond exactly to functional data; the latter show responses that are more widely differentiated than the morphological ones.

Aging↗

Vasoconstrictor activity of 8-O-acetylharpagide from Ajuga reptans.

The traditional therapeutic indications for the use of Ajuga reptans (Labiatae) have been investigated. The H2O-soluble part of a crude and partially purified MeOH extract and two isolated iridoids (8-O-acetylharpagide and harpagide), were tested for a biological activity on isolated smooth muscle preparations from guinea pig.

Animals↗

Peripheral 2-hydroxy-saclofen-sensitive GABA-B receptors mediate both vagal-dependent and vagal-independent acid secretory responses in rats.

1. The present study investigates the effects of peripherally administered baclofen on gastric acid secretion from the perfused stomach of anaesthetized rats. 2. Intravenous (i.v.) baclofen caused a marked dose-dependent increase in acid secretion which was antagonized by i.v. 2-hydroxy-saclofen, whereas intracerebroventricular (i.c.v.) 2-hydroxy-saclofen and i.c.v. or i.v. phaclofen and bicuculline were ineffective. In addition, 2-hydroxy-saclofen did not affect acid hypersecretion stimulated by histamine. 3. The secretagogue action of baclofen was fully prevented by cimetidine, but only partially attenuated by atropine, proglumide or bilateral cervical vagotomy. Moreover, the vagotomy-resistant excitatory effect of baclofen was abolished by 2-hydroxy-saclofen or cimetidine, but not by atropine or proglumide. 4. In vagotomized rats whose gastric secretion was maximally increased by electrical stimulation of the left vagus nerve, i.v. injection of baclofen further potentiated acid output, this action being prevented by cimetidine. 5. Taken together, the present results provide evidence that peripheral GABA-B receptors mediate the gastric hypersecretory effect of parenterally administered baclofen to anaesthetized rats, and suggest that both vagal cholinergic and extravagal pathways are involved in the stimulant effect.

Animals↗

Changes in airway reactivity to exogenous and endogenous acetylcholine and substance P after anaphylactic bronchoconstriction in anaesthetized guinea-pigs.

1. In anaesthetized, actively sensitized guinea-pigs, the anaphylactic shock induced by antigen aerosol challenge (5 s; 50 mg ml-1) was followed by increase in airway reactivity to both acetylcholine and substance P. In particular dose-response curves to acetylcholine (3-1000 micrograms kg-1 i.v.) and to substance P (5-80 micrograms kg-1 i.v.) obtained in antigen exposed animals were significantly shifted to the left of those performed in control guinea-pigs (exposed to saline aerosol). 2. The hyperreactive phenomenon after antigen aerosol was also evident when capsaicin-induced bronchoconstriction (1-4 micrograms kg-1 i.v.) was tested; the degree of hyperresponsiveness was similar to that observed with acetylcholine and substance P as agonists. 3. The frequency-response curves to vagal stimulation, either cholinergic or NANC in nature, were not significantly modified in guinea-pigs challenged with the antigen in respect to those aerosolized with saline. 4. The data obtained in the present study indicate that the airway hyperresponsiveness present in the animal model used is non-specific, involving both cholinergic and peptidergic effects. On the other hand, the lack of potentiation of the bronchoconstriction response to electrical stimulation might suggest that the establishment of a clear hyperreactive phenomenon is under the control of different mechanisms unrelated to increased bronchial reactivity.

Acetylcholine↗

Comparative study of postsynaptic alpha-adrenoceptors in aorta obtained from human and other mammalian species.

The alpha-adrenoceptor populations in aortic strips from humans, rats, guinea-pigs and rabbits were investigated in vitro, using specific agonists and antagonists. In rabbit and human preparations the activities of the two agonists tested, noradrenaline and methoxamine, were competitively antagonized by prazosin, whereas in the other animal species prazosin showed a competitive antagonism for methoxamine induced contraction, but an uncompetitive behaviour against noradrenaline. The alpha 2-selective agonists B-HT 920 and detomidine did not elicit any effect on aortic strips up to 10(-3) M. On the basis of these results, alpha 1-receptors seem to represent an homogeneous population in human and rabbit aortae, but not in rat and guinea-pig tissues. On the other hand, the contractile response of noradrenaline and methoxamine on aortic strips from the four animal species examined cannot be ascribed to the activation of postsynaptic alpha 2-receptors. Moreover we present preliminary evidence that rat and guinea-pig aortae do not contain a clear subdivision in alpha 1a- and alpha 1b-receptors.

Adrenergic alpha-Agonists↗

Differences in activity between noradrenaline and other alpha-agonists in rat vas deferens.

1 The stimulating activity of methoxamine on rat vas deferens differed from that of noradrenaline since it induced a strong rhythmic activity which was not removed by the wash-out of the drug. 2 Clonidine showed a dose-response curve with a pD2 of 5.05 +/- 0.14 and an intrinsic activity value of 0.6 +/- 0.1%; B-HT 920, a specific alpha 2-agonist, elicited a very low stimulating effect (pD2 = 2.87 +/- 0.04; i.a. = 0.08 +/- 0.001). 3 In a calcium-free medium the maximum responses to synthetic alpha-adrenoceptor agonists were reduced by 98 +/- 0.8% compared with the control value. The residual response to noradrenaline, however, was significantly higher (15 +/- 0.9% of the control value). 4 At high concentration of the Ca-channel antagonists, nicardipine and verapamil, only noradrenaline showed a residual response that was resistant to the calcium channel blockers. This residual response was completely inhibited by chloroethylclonidine (10(-5) M). 5 It is proposed that the stimulating activity of the physiological adrenergic agonist, noradrenaline, is more complex when compared to that of synthetic agonists and it might result from an interaction with different alpha-adrenoceptors. 6 Both salbutamol and forskolin were able to abolish the rhythmic activity of methoxamine, suggesting a regulatory role of cAMP on membrane stability.

Adrenergic alpha-Agonists↗

Adrenergic innervation of the ductus deferens in young and aging rats: a morpho-functional investigation.

The pattern of adrenergic innervation and the responsiveness to alpha-agonists of the epididymal and prostatic portions of the ductus deferens from young and aging rats were examined. The histochemical pictures showed that the distribution of the adrenergic fibres varies between the 2 ends of the ductus deferens, with a greater density in the prostatic portion. Tissues from rats aged 20 months showed the same difference in the adrenergic pattern between the 2 portions. Generally, the fluorescent bundles from the tissues of senescent animals seemed to be more numerous and compact. The functional data appear to be in contrast with the morphological observations, because the epididymal tract of young rats showed the highest responsiveness to alpha-agonists. An inverse correlation between the number of adrenergic fibres and receptor responsiveness is hypothesized.

Adrenergic alpha-Agonists↗

Synthesis and evaluation of the pharmacological activity of rigid analogues of sympathomimetic catecholamines derived from bicyclo[2.2.1]heptane.

endo-3-Amino-exo-2-(3,4-dihydroxyphenyl)-2-hydroxybicyclo[2.2.1]he ptane (4a) and its N-isopropyl derivative (4b) were synthesized and assayed for their adrenergic activity on various isolated preparations. Compounds 4a and 4b, tested up to a dose of 10(-4) M, did not reveal any activity, either stimulant or blocking, on the alpha- and beta-adrenoceptors. Possible rationalizations of the results obtained, however, are suggested.

Animals↗

An anomalous effect of N-isopropyl substitution in determining beta-adrenergic activity.

We report unexpected results in an investigation of cyclic analogues of dopamine and norepinephrine possessing the structures 1-(aminomethyl)-5,6-dihydroxy-1,2,3,4-tetrahydronaphthalene (3) and 1-(aminomethyl)-5,6-dihydroxy-1,2,3,4-tetrahydro-1-naphthalenol (7). N-Isopropyl substitution of these compounds, providing 4 and 8, brings about the total disappearance of their stimulant activity on beta-adrenergic receptors. On the basis of current knowledge about the structure-activity relationship of adrenergic drugs, it is difficult to provide an explanation for these results; however a tentative rationalization based on conformational considerations is suggested.

1-Propanol↗

Postsynaptic effects of alpha agonists on adrenoceptors of the reserpinized rat vas deferens.

The activities of the alpha-1 antagonist prazosin and alpha-2 antagonist yohimbine were evaluated against noradrenaline (NA), methoxamine (Me) and clonidine (Clo) on the reserpinized rat vas deferens. Prazosin antagonized competitively Me but not NA and Clo. On the other hand yohimbine showed a low and not competitive antagonism towards all the three agonists. Similar results were obtained when the antagonistic activities were tested in the presence of the alternative antagonist, in the attempt to isolate a single receptor population. We can conclude that the smooth musculature of the rat vas deferens contains prevalently alpha-1 adrenoceptors and a small population of NA activated receptors resistant to alpha-2 antagonists.

Adrenergic alpha-Agonists↗

Role of the (acyloxy)methyl moiety in eliciting the adrenergic beta-blocking activity of 3-(acyloxy)propanolamines.

Some totally aliphatic 3-(acyloxy)propanolamines were synthesized with the aim of testing whether beta-blocking activity could be obtained from this class of drugs, even in the absence of an aromatic group. The significant and, in most cases, competitive beta-blocking activity shown by the compounds under examination, together with the results of a theoretical study in which their reactivity was compared with that of other adrenergic beta-blocking drugs, seems to confirm a hypothesis previously advanced on the basis of knowledge about the action mechanism of adrenergic beta-blocking drugs and of the results of structural studies. It was also possible to suggest some considerations about the role played by the (acyloxy)methyl portion of 3-(acyloxy)propanolamines in eliciting their adrenergic beta-blocking activity.

Adrenergic beta-Agonists↗

Conformational effects on the activity of drugs. 11. Stereostructural models for the direct activation of the alpha- and beta-adrenergic receptor.

Two kinds of cyclic analogues of norepinephrine (NE, 7) and isoprenaline (ISO, 8), in which the C(1)-C(2) side chain of these amino alcohols is incorporated in its preferred conformation in the ring of the 2-(3,4-dihydroxyphenyl)-morpholines 9 and 10 (2-DPMs) and in the ring of the 3-(3,4-dihydroxyphenyl)-3-piperidinols 11 and 12 (3-DPPs), respectively, were synthesized and assayed for their adrenergic activity on various isolated preparations. The 2-DPMs and the 3-DPPs showed an alpha- and beta-agonist activity comparable to that of NE and ISO and to that of the trans-2-amino-5,6-dihydroxytetrahydronaphthalen-1-ols 13 and 14 (2-ADTNs), which represent another kind of semirigid analogue of NE and ISO. Through a comparison of the stereo structures of the compounds examined and of their pharmacological properties, it was possible to suggest a spatial situation in which the pharmacophoric groups of the adrenergic drugs examined (aryl moiety, amine nitrogen, and alcoholic or ethereal benzylic oxygen) should interact at the receptor site. This spatial situation corresponds to the one found in the preferred conformation of NE and ISO. It was also possible to construct two theoretical three-dimensional molecular models that provide information about steric requirements for the direct activation of alpha- and beta-adrenoceptors, respectively.

Animals↗

The effects of alpha-2 agonists and antagonists on gastric acid secretion.

The effects of alpha-2 agonists clonidine, xylazine and guanabenz as well as those of alpha-2 antagonists tolazoline and yohimbine on gastric acid secretion were investigated in Shay rats, Schild rats and isolated guinea-pig gastric fundus. In Shay rats clonidine, xylazine and guanabenz displayed marked antisecretory effects, whereas tolazoline and yohimbine had no effect. Under the same conditions, yohimbine fully prevented the actions of clonidine, xylazine and guanabenz, while tolazoline showed partial antagonism. In Schild rats both clonidine and xylazine displayed a stimulant secretory action, but guanabenz was without effect; cimetidine fully prevented the excitatory effects of clonidine and xylazine. Both tolazoline and yohimbine increased gastric acid secretion in Schild rats: the effect of tolazoline was inhibited by cimetidine, while the effect of yohimbine was prevented by pirenzepine or vagotomy. On isolated guinea-pig gastric fundus, clonidine, xylazine and tolazoline exerted a stimulatory activity, whereas guanabenz and yohimbine had no effect: these excitatory responses were fully prevented by cimetidine. Overall results indicate that clonidine and xylazine have both inhibitory and excitatory effects on gastric acid secretion, while guanabenz produces only inhibitory effects. The inhibitory activity appears to be mediated by activation of presynaptic alpha-2 receptors on the vagus nerve, whereas the excitatory effects seem to be mediated by histaminergic pathway. The stimulant secretory action of tolazoline may be due to its imidazoline-like structure allowing interaction with histamine H2-receptors: accordingly, this effect is lacking for guanabenz, which is structurally unrelated to imidazoline. The excitatory effect of yohimbine appears to be exerted on central cholinergic sites, as indicated by its disappearance in vagotomized rats.

Adrenergic alpha-Agonists↗