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M C Breschi

Publications and source records attributed to M C Breschi.

At least 19 recordsLinked to original sources

Histaminic bronchospasm potentiated by adenosine: investigation of the mechanisms.

In anaesthetized guinea pigs, adenosine enhances the histamine-induced bronchospasm by means of a mechanism partly involving non-adrenergic-non-cholinergic (NANC) nerves, not related to capsaicin-sensitive neurons (Breschi et al., 1994). In the present paper, we excluded any interference by adenosine with the mediators known to be present in the airway inhibitory NANC system, VIP (vasoactive intestinal polypeptide) and NO (nitric oxide). The use of alpha-chymotrypsin or L-N(G)-nitro-arginine methyl ester (L-NAME) failed to modify the potentiation under study. The effects of adenosine were further investigated by studying whether an increased release of excitatory mediators from non-neural cells, in particular 5-HT (5-hydroxytryptamine, serotonin) and arachidonic products, was involved. In this connection, methysergide did not significantly affect the modulatory action of adenosine, revealing that the release of 5-HT was also not involved. Inhibition was obtained with hydrocortisone and with nordihydroguaiaretic acid, but not with indomethacin or with the mastocyte membrane stabilizer, sodium cromoglycate. This evidence suggests that lipooxygenase products, not derived from mastocytes, probably participate in the potentiating effect of adenosine.

Adenosine

Effects of noise stress on EFS-mediated cholinergic and inhibitory NANC responses in tracheae from normal and sensitized guinea-pigs.

1 The aim of the present research was to study the cholinergic and inhibitory non-adrenergic-non-cholinergic (NANC) responses obtained with electrical field stimulation (EFS) of tracheal tissues from sham- and noise-exposed guinea-pigs. A comparison was also made between normal and ovalbumin (OA)-sensitized animals. 2 In proximal tracheae pretreated with indomethacin (3 microM), propranolol (1 microM), alpha-chymotrypsin (2 U ml-1) and L-NAME (0.1 mM), frequency-dependent responses to EFS (0.1 ms width; 20 V, 0.1-100 Hz, 15 s train duration) were obtained, both contractile and relaxing in nature. The contractile responses were abolished by atropine (1 microM), and did not vary significantly between sham- and noise-exposed guinea-pigs, or between normal and sensitized animals. The NANC relaxing responses, present in spite of the pre-treatment of the tissues with L-NAME and alpha-chymotrypsin, and almost completely abolished by tetrodotoxin (TTX) treatment (10 microM), appeared to be enhanced in noise-exposed guinea-pigs, with respect to sham-exposed animals, but only when the animals were not OA-sensitized. 3 In distal tracheae contracted with histamine (10 microM), the study of the whole inhibitory NANC response (pre-treatment with propranolol, but not with alpha-chymotrypsin and L-NAME), which was mainly TTX-sensitive, revealed a statistically non-significant difference between sham- and noise-exposed guinea-pigs, both normal and OA-sensitized. When distal tracheae were preincubated with alpha-chymotrypsin (2 U ml-1) and L-NAME (0.1 mM), in addition to propranolol, a significant residual inhibitory NANC response to EFS was observed. Surprisingly, in this case, similarly to the evidence obtained in proximal tracheae, a significantly enhanced response was revealed in noise-exposed guinea-pigs with respect to sham-exposed animals. 4 The noise-induced enhancement of the relaxant response disappeared when the tissues were pretreated with the A2 purinergic antagonist 3,7-dimethyl-1-propargylxanthine (DMPX, 1 microM), while it persisted in the presence of the A1 antagonist 1,3-dipropyl-8-cyclopentylxanthine (DPCPX, 10 nM). 5 The above data indicate that, while not modifying the cholinergic and the whole inhibitory NANC response to EFS, noise stress selectively influences an inhibitory component of the NANC system in guinea-pig trachea with a mechanism probably involving an enhanced neurally mediated release of adenosine, which relaxes the smooth muscle via A2 receptors. This effect appears to be lacking or masked in sensitized guinea-pigs.

Acetylcholine

A modified aortic multiple-ring preparation for functional studies.

A comparison is made of four rat aortic preparations, that is, single ring, spiral strip, zig-zag strip, and multiple-ring, on the basis of the responses to norepinephrine (NE) and acetylcholine (ACh). The single ring preparation was suitable under isometric, but not under isotonic conditions, because of the small isotonic tension which developed in response to the contractile agonist. The spiral and the zig-zag strips showed a discontinuity in the relaxant activity of the ACh, probably because of the removal, or not, of the endothelium from the preparation. The reproducibility of both contracturant and relaxing responses in the multiple-ring preparation makes this the most suitable of all four for the study of vasoactive drugs.

Acetylcholine

Acetylcholine-induced bronchoconstriction modified by noise exposure in normal but not in sensitized guinea-pigs.

1. The acute (6h) exposure of guinea-pigs to white noise (110 dB) as a stress stimulus, reduced bronchial reactivity to acetylcholine (Ach) (3-1000 micrograms kg-1 i.v.) in anaesthetized animals. 2. The hyporesponsiveness to Ach in stressed animals was not confirmed in vitro on tracheal preparations (Ach 1 x 10(-9)-1 x 10(-4) g ml-1) and disappeared in vivo when the animals were sensitized with ovalbumin (OA, 100 mg kg-1 i.p. + 100 mg kg-1 s.c.). The hyporesponsiveness was also absent in ovalbumin sensitized guinea-pigs exposed to an aerosol of ovalbumin 60 min before testing with Ach. 3. In non-sensitized guinea-pigs, pretreatment with butoxamine (1 mg kg-1 i.v.) or with theophylline (25 mg kg-1 i.v.), completely abolished the effect of noise-exposure. In contrast, pretreatment with L-NG-nitro-arginine methyl ester (L-NAME, 10 mg kg-1 i.v.), alpha-chymotrypsin (2 U kg-1 i.v.) or with enprofylline (10 mg kg-1 i.v.), did not affect it. 4. In conclusion, our experiments reveal inhibitory mechanisms upon Ach-induced bronchoconstriction activated by a stress stimulus and this is absent in sensitized animals. These mechanisms seem to be linked to the adrenergic beta 2-receptors and a role for the purinergic system (via A-receptors) may also be present.

Acetylcholine

Effects of adenosine on NANC bronchoconstriction in anaesthetized guinea-pigs.

The present work assesses the effects of the acute administration of adenosine on tachykinergic bronchoconstriction induced in different ways (exogenously administered capsaicin or substance P and vagal electrical stimulation) in anaesthetized and curarized guinea-pigs. Adenosine (30-3000 micrograms kg-1, i.v.) enhanced significantly and dose-relatedly the airway narrowing induced by a single dose of capsaicin (0.5-2 micrograms kg-1, i.v.), both in normal and in vagotomized animals. A smaller and less dose-dependent enhancement by the nucleoside of the pulmonary resistance increase induced by substance P (5-15 micrograms kg-1, i.v.) was observed. This effect was almost completely prevented by the H1 antagonist diphenhydramine (1 mg kg-1, i.v.), which also unmasked an inhibitory action of adenosine at the highest doses. Diphenhydramine, on the contrary, did not significantly modify the potentiation by adenosine of capsaicin-mediated bronchoconstriction. Finally, the nucleoside dose-dependently inhibited the atropine-resistant bronchospasm following vagal electrical stimulation. The use of the selective adenosinic agonists R-N6-[2-phenylisopropyl]adenosine (1-100 micrograms kg-1, i.v.) and 5'-N-methylcarboxamidoadenosine (1-100 micrograms kg-1, i.v.) before the administration of capsaicin, revealed the ability of the first to reproduce the enhancement induced by adenosine, while the second had an inhibitory effect. It is concluded that adenosine has both excitatory and inhibitory modulatory effects on airway responsiveness to excitatory non-adrenergic non-cholinergic (e-NANC) stimuli. The excitatory effects, revealed with substance P and capsaicin, support the hypothesis that adenosine may play a role as an asthma mediator.

Action Potentials

Benzodiazepine agonists reverse the effects of noise exposure on central benzodiazepine receptors and cardiac responsiveness.

Rats were submitted to 110 dB white noise exposure for 1, and 6 hours and brain alpha 1, beta 1 and benzodiazepine receptor binding was evaluated with selective ligands. An increase in cerebral benzodiazepine receptor (CBR) concentration, without any significant change in affinity constant, occurred after the 6 h treatment; no change was observed in adrenergic receptor binding at any period of exposure. Both diazepam and clonazepam pre-treatment reversed the effects of noise on CBR binding, confirming a role of these receptors in the response to noise stress. Furthermore, these benzodiazepine agonists influenced the response of cardiac and aortic tissues, which are known to be changed by stress exposure. Diazepam and clonazepam pre-treatment protected cardiac tissue from the effects of 6h noise stress, and a potentiation of aortic responses was detected, although at different times of exposure. The differences between the responses of these peripheral tissues to benzodiazepine treatment suggest that the expression depends on the tissue examined and the period of exposure.

Animals

Relaxing activity of two linear diterpenes from Cystoseira brachycarpa var. balearica on the contractions of intestinal preparations.

Eleganolone (1) and elegandiol (2), two linear diterpenes isolated from Cystoseira brachycarpa var. balearica, were tested on guinea-pig intestinal preparations. Both these compounds inhibited the contractile activities of acetylcholine (Ach) and histamine (Hist) on ileum musculature; the relative pIC50 values of eleganolone were found to be 4.60 +/- 0.03 and 4.84 +/- 0.20, respectively, while those of elegandiol were 4.71 +/- 0.18 and 5.18 +/- 0.01, respectively. Furthermore, 1 and 2 dose-dependently relaxed the same preparations precontracted with 300 microM BaCl2(pIC50 = 4.34 +/- 0.18 for 1 and pIC50 = 4.34 + 0.02 for 2) or with 60 mM KCl (pIC50 = 4.73 +/- 0.18 and 4.47 +/- 0.06, respectively). On colon smooth muscle, the diterpenes inhibited the spontaneous contractile tone and this effect was reversed by both methylene blue (3 x 10(-6) M) and haemoglobin (3 x 10(-6) M). Tetraethylammonium (TEA), furosemide, N omega-nitro-L-arginine methyl ester (L-NAME), indomethacin, alpha-chymotrypsin, and metoprolol were unable to block the eleganolone and elegandiol relaxing action on colonic musculature, but rather potentiated this response. On the contrary, the beta 2-blocker butoxamine partially inhibited the diterpenes activity. These results suggest that Cystoseira diterpenes act at a second messenger cyclase system rather than at a receptor level.

Animals

Age-related changes in the noradrenergic pattern and receptor responses of the rat cardiovascular system after repeated microwave exposure.

In the present research the effect of repeated microwave exposure on the noradrenergic pattern by histofluorescence method and on receptor-mediated responses using alpha and beta agonists in myocardium and aorta of young-adult and aged rats was studied. Young-adult irradiated rats showed an increase in noradrenergic innervation more marked in myocardial tissue, while an increase in maximal response to the agonist was found only at aortic level. Aged stressed rats exhibited an increase in fluorescent fibres at atrial and aortic level, but in the atrial section this increase was found to be less evident than in young-adult animals. Functional data in aged rats revealed a more marked decrease in maximal response ratio (M.R.R.) of myocardial tissue than in young-adult rats, together with a noticeable decrease in maximal response at aortic level. These results indicate no direct correlation between morphological and functional data. Participation of both central and peripheral mechanisms is suggested.

Aging

Effects of idrapril calcium on tissue angiotensin-converting enzyme in rats.

Tissue angiotensin-converting enzyme (ACE) inhibition was measured in rats after single intravenous (i.v.) and oral (p.o.) doses of idrapril calcium, and the correlation between peak inhibition and tissue concentration of the drug was investigated. Five minutes after idrapril calcium (3 mg/kg i.v. as free acid), ACE in the examined tissues (serum, lungs, kidneys, heart, aorta, adrenals, testes, and brain) showed > 50% inhibition, always associated with measurable amounts of idrapril. After 90 min, ACE activity was still inhibited only in serum, lungs, kidneys, and aorta, recovering to basal values by 8 h in all samples but serum. Oral idrapril calcium (30 mg/kg) produced > 50% peak ACE inhibition in serum, lungs, and kidneys, in which measurable levels of the drug were detected, and in the aorta, where idrapril was not detected. Other tissues showed neither marked inhibition nor measurable drug levels. Kinetics of ACE inhibition in affected tissue mirrored those observed after intravenous administration. Idrapril, despite its hydrophilic nature, is able to reach extravascular tissues and to inhibit local ACE. However, in no tissue did the effect on ACE last longer than in serum and the hypothesis of a peculiar role of tissue RAS in determining the hypotensive activity of idrapril calcium is not supported in rats.

Administration, Oral

The [(methyloxy)imino]methyl moiety as a bioisoster of aryl. A novel class of completely aliphatic beta-adrenergic receptor antagonists.

Previous studies in the field of beta-adrenergic drugs had supported the hypothesis of the existence of a bioisosterism between the [(methyleneamino)oxy]methyl moiety (C = NOCH2, MAOMM) of type B beta-blocking drugs and the aryl (Ar) of type A beta-blocking agents. In the MAOMM, however, the carbon of the CH2 linked to the oximic oxygen possesses a hybridization (sp3) and a geometry different from those of the corresponding carbon of Ar which possesses an sp2 hybridization. Furthermore, in the MAOMM, in its preferred conformation, the unsaturated portion (C = N) is situated in a spatial area which does not correspond exactly to the area occupied by Ar. The formal inversion of the atomic sequence C = NOCH2 of the MAOMM leads to a different type of group, the [(methyloxy)imino]methyl moiety (CH2ON = C, MOIMM), which, in the E configuration, appears to present greater steric and electronic analogies with an Ar, with respect to the MAOMM. On the basis of these observations, some completely aliphatic (E)-N-(3-amino-2- hydroxypropylidene)(alkyloxy)amino derivatives of type C (11a,b and 12a, b) were synthesized, the their beta-adrenergic properties were compared with those of the corresponding [(methyleneamino)oxy]-methyl isomers of type B (19a, b and 20a, b). The similar beta-adrenergic properties of 11, 12 and 19, 20 evaluated in vitro both by radioligand binding assays and by functional tests on isolated preparations, are discussed on the basis of considerations regarding the spatial correspondences and electronic analogies between the MOIMM and the MAOMM.

Adrenergic beta-1 Receptor Antagonists

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

Noradrenergic innervation and receptor responses of cardiovascular tissues from young and aged rats after acute microwave exposure.

Young and senescent rats were exposed to 2,450 GHz microwaves for 45' and the effects of this treatment on the noradrenergic pattern and beta-cardiac and alpha-aortic receptorial functions were evaluated. In young animals, an increase in noradrenergic innervation was observed, while no functional modification was shown. In aged rats the increase in fluorescent fibers was almost the same as that observed in young rats, but significant variations in functional responses were found. Both at atrial and ventricular levels responses to the beta-agonist isoprenaline were unmodified in their affinity indices, but showed a marked decrease in the maximal responses; by contrast the activity of noradrenaline on the aortic alpha-adrenoceptors showed a great increase in maximal response without changes in the pD2 values. These results suggest that the predominant effect of microwave exposure consists in an increase in the noradrenergic pattern, and this effect is not related to the functional modifications.

Aging

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

Conformationally restrained analogs of sympathomimetic catecholamines. Synthesis, conformational analysis, and adrenergic activity of isochroman derivatives.

In previous papers dealing with the study of the conformations and the biopharmacological activity of conformationally restrained analogs of sympathomimetic catecholamines (NE and ISO), proposals were advanced for the three-dimensional molecular models A, B, and C; these models provided information about the steric requirements for the direct activation of alpha 1, alpha 2,beta 1, and beta 2 adrenoceptors, respectively. The 1-(aminomethyl)-6,7-dihydroxyisochromans 11 and 12 and the 1-(aminomethyl)-5,6-dihydroxyisochromans 13 and 14 (1-AMDICs) are two different types of semirigid analogs of NE and ISO. The alpha 1, alpha 2, beta 1, and beta 2 adrenergic properties of the 1-AMDICs 11-14 were evaluated in vitro, both by radioligand binding assays and by functional tests on isolated preparations, and were compared with those of their parent compounds (NE and ISO). The results of a conformational study carried out by means of both 1H NMR spectrometry and theoretical calculations indicated that, in these 1-AMDICs, the presumed active groups (aryl moiety, amine nitrogen and benzylic ethereal oxygen) are in a spatial relationship corresponding to the one found for NE and ISO in their preferred conformations, which also proved to be the pharmacophoric conformation in the models A-C. By means of a comparison of the stereostructures of the 1-AMDICs 11-14 with their biopharmacological properties, it was possible to obtain a further definition of the model B with respect to the activation of the alpha 2 adrenoceptors; the superimposition of the 1-AMDICs 11 and 12 with the molecular model C made it possible to detect an area of the beta-adrenergic receptors which might hinder the fit of adrenergic drugs that are analogs of catecholamines with these receptors.

Animals

Relation of birthweight to maternal plasma glucose and insulin concentrations during normal pregnancy.

Maternal diabetes mellitus is complicated by fetal macrosomia and predisposes the offspring to diabetes, but recent evidence indicates that a low, not high, birthweight is associated with a higher incidence of Type 2 (non-insulin dependent) diabetes in adult life. To clarify the relationships between maternal glucose and insulin levels and birthweight, we measured oral glucose tolerance and neonatal weight in a large group (n = 529) of women during the 26th week of pregnancy. Women with gestational diabetes (n = 17) had more familial diabetes, higher pre-pregnancy body weight, and tended to have large-for-gestational-age babies. In contrast, women with essential hypertension (n = 10) gave birth to significantly (p < 0.01) smaller babies. In the normal group (without gestational diabetes or hypertension, n = 503), maternal body weight before pregnancy and at term, maternal height, week of delivery, gender of the newborn, and parity were all significant, independent predictors of birthweight, together explaining 23% of the variability of neonatal weight. In addition, both fasting (p < 0.006) and 2-h post-glucose (p = 0.03) maternal plasma glucose concentrations were positively associated with birthweight independent of the other physiological determinants, accounting, however, for only 10% of the explained variability. In a subgroup of 134 normal mothers with pre-pregnancy body mass index of less than 25 kg.m-2, in whom plasma insulin measurements were available, the insulin area-under-curve was inversely related to birthweight (p < 0.02) after simultaneously adjusting for physiological factors and glucose area.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Crude extracts and two linear diterpenes from Cystoseira balearica and their activity.

Crude extracts of Cystoseira balearica were submitted to pharmacological investigations. The chloroform-methanol residue caused relaxation of the rat aortic musculature and an inhibitory action on the guinea pig atria. The fractionation of this crude extract gave two active diterpenoids, eleganolone (1) and elegandiol (2), the latter has not previously been isolated from this alga. These pure components, never before tested, showed a higher activity when compared with the crude residue.

Animals

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