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Biomedical subjects

S Lecchini

Publications and source records attributed to S Lecchini.

At least 37 records · Page 2Linked to original sources

Neural and endogenous catecholamines in the bone marrow. Circadian association of norepinephrine with hematopoiesis?

Members of our research team have recently reported that adrenergic agents may affect hematopoiesis via alpha1-adrenoceptors present on bone marrow B cell precursors. In this paper we demonstrate that murine bone marrow contains a substantial amount of catecholamines. Norepinephrine (NE) and dopamine (DA) exhibited a daily rhythmicity, with peak values observed during the night. The rhythm was disrupted by chemical sympathectomy, whereas epinephrine (E) showed no rhythmicity or sensitivity to 6-hydroxydopamine. High and low values of NE and DA were associated with high and low values of their metabolites, which indicated a rhythmic catecholamine release. NE, but not DA or E, was positively associated with the proportion of cells in the G2/M and S phases of the cell cycle. Moreover, NE and DA were found in both short-term and long-term bone marrow cultures as well as in human or murine B lymphoid cell lines. These findings indicate that endogenous catecholamines in the bone marrow have both neural and cellular origins. The neural input shows a daily rhythm and may be implicated in the regulation of hematopoiesis.

Animals↗

Acetylcholine detection by a modified HPLC-ED method improves the assessment of cholinergic function in the myenteric plexus of the guinea-pig colon.

Because of the low basal output, measurement of acetylcholine (ACh) release from enteric neurons usually requires cholinesterase inhibition, a condition which is known to interfere with feed-back mechanisms regulating ACh release. In this study, we resorted to a highly sensitive HPLC-ED method to determine the minimum requirement of physostigmine to achieve reliable quantitation of spontaneous endogenous ACh overflow from the guinea-pig isolated colon. Furthermore, in order to assess the degree of interference by physostigmine with cholinergic function, we assessed the effect of scopolamine and oxotremorine (in the presence of physostigmine) on spontaneous ACH overflow (to detect the presence of autoreceptors) and also measured the efficiency of the peristaltic reflex with different physostigmine concentrations. Spontaneous endogenous ACh overflow was detectable only with physostigmine concentrations > or = 10 nM. ACh overflow increased with increasing physostigmine concentrations (10 nM-10 microM range). Scopolamine significantly enhanced the facilitatory effect of physostigmine concentrations > or = 10 nM; conversely, oxotremorine inhibited ACh overflow. Peristaltic efficiency was not significantly affected by physostigmine concentrations < or = 300 nM. In conclusion, this modified HPLC-ED method allows ACh detection with minimal physostigmine concentrations (10-30 nM), which do not interfere with peristaltic activity, do not saturate autoreceptor feed-back mechanisms and therefore improve the assessment of cholinergic function in colonic enteric neurons.

Acetylcholine↗

Modulation of neurotransmitter release by opioid mu- and kappa-receptors from adrenergic terminals in the myenteric plexus of the guinea-pig colon: effect of alpha 2-autoreceptor blockade.

We have studied the effect of [D-Ala2,N-Me-Phe4,Gly-ol5]-enkephalin (DAMGO, opioid mu-receptor agonist) and ICI-204,448 (kappa-receptor agonist) on endogenous noradrenaline release in the guinea-pig isolated distal colon. DAMGO enhances noradrenaline over-flow and this effect is antagonized by naloxone (pIC50 = 10.27) and nor-binaltorphimine (pIC50 = 7.97), and concentration-dependently turned into inhibition by yohimbine. ICI-204,448 inhibits noradrenaline overflow and is antagonized by naloxone (pIC50 = 9.38) and nor-binaltorphimine (pIC50 = 10.48), but is not affected by yohimbine. Evidence is thus given that mu- and kappa-opioid receptors modulate noradrenaline release in the guinea-pig colon. Modifications by yohimbine of the effect of DAMGO indicate the existence of a functional relationship between mu-receptors and alpha(2)-autoreceptors in this model.

Adrenergic alpha-2 Receptor Antagonists↗

Attitudes to adverse drug reaction reporting by medical practitioners in a Northern Italian district.

Attitudes to adverse drug reaction (ADR) spontaneous reporting were investigated among all the National Health Service (NHS) doctors operating in the territory of the Area Health Authority n.1 of Varese (Italy), to assess their awareness of the reporting system and to identify reasons for under reporting. Three hundred and fifty doctors were sent questionnaires and 207 (59.1%) were returned completed. More than 77% of the responders stated to have noticed ADRs, which were mainly reported to the pharmaceutical manufacturers and, in a minority of cases, to the NHS. Fifty per cent did not report ADRs to anyone. Important factors for deciding to report were unusualness and severity of the reaction, and involvement of a new drug. The main reason for not reporting was the clinical negligibility of the reaction. There was little knowledge about the types of reactions to be preferentially reported and the purposes of ADR reporting systems. Nevertheless, nearly everyone asked for feed-back information about reported ADRs. NHS doctors in this district have little information concerning ADR reporting systems. Some effective measures to improve the situation could be: inclusion of pharmacovigilance into pre- and post-graduated continuing education programs, provision of guidelines for ADR spontaneous reporting and of feed-back information to reporters, implementation of regional pharmacovigilance units.

Adverse Drug Reaction Reporting Systems↗

Muscarinic modulation of endogenous noradrenaline release from adrenergic terminals in the guinea-pig colon.

1 The present study examined the role of muscarinic receptors in the modulation of noradrenaline (NA) release in the guinea-pig isolated distal colon. The spontaneous endogenous NA overflow assayed by HPLC-ED was taken as an index of NA release from enteric noradrenergic nerve terminals. 2 Physostigmine (10 microM) significantly enhanced spontaneous endogenous NA overflow. Hyoscine (muscarinic antagonist), (R)-(-)-trihexyphenidyl and telenzepine (M1-selective antagonists), and 11[[2-[(diethylamino)methyl]-1-piperydil]acetyl]-5,11 -dihydro-6H-pyrido[2,3-b][1,4]benzodiazepine-6-one (AF-DX 116, M2-selective antagonist) inhibited NA overflow in a concentration dependent manner, with the following EC50 values: 131.74 (18.19-953.96), 101.62 (58.83-175.60), 150 (60-330), 30 (5-170) nM, respectively. 4-diphenylacetoxy-N-methylpiperidine methiodide (4-DAMP, M1- and M3-selective antagonist) had no significant effect up to 100 microM. 3 The muscarinic agonist oxotremorine inhibited NA overflow in a concentration dependent manner, with an EC50 value of 0.67 (0.30-1.51) microM. The response to oxotremorine was inhibited by muscarinic antagonists with the following order of potency: hyoscine = (R)-(-)-trihexyphenidyl = telenzepine > 4-DAMP >> AF-DX 116. 4 In the presence of 3 microM tetrodotoxin (TTX), the effect of oxotremorine and 4-DAMP was unchanged, while hyoscine, (R)-(-)-trihexyphenidyl, telenzepine and AF-DX 116, instead of inhibiting, significantly enhanced NA overflow. 5 The present results indicate that, in the guinea-pig colon, endogenous acetylcholine sustains spontaneous NA release by activating muscarinic receptors possibly located on interneurones. In addition, inhibitory muscarinic receptors may exist on adrenergic terminals.

Acetylcholine↗

Carbamazepine affects neutrophil function through an action on peripheral benzodiazepine receptors.

The aims of this study were to assess the possible role of peripheral benzodiazepine receptors (pBZrs)1 in mediating the in vitro effects of carbamazepine (CBZ) on some neutrophil functions in healthy volunteers and to investigate neutrophil function and pBZr expression in patients with epilepsia on CBZ monotherapy for at least 1 year. In vitro CBZ (42-168 microM) concentration-dependently inhibited chemotaxis induced by N-formyl-methionyl-leucyl-phenylalanine (FMLP) or lipopolysaccharide (LPS)-activated human serum. CBZ did not affect random migration, phagocytosis index, phagocytosis frequency, NBT reduction frequency, C. albicans lethality index and resting superoxide production. The pBZr antagonist PK 11195 (1 microM, per se ineffective) reversed the inhibitory effect of CBZ on chemotaxis induced by endotoxin-activated serum or FMLP. The pBZr agonist Ro 5-4864 (10-100 microM) mimicked the effect of CBZ on chemotaxis induced by endotoxin-activated serum or FMLP and had no effect on the other parameters. Neutrophils from epileptic patients on chronic CBZ monotherapy had impaired FMLP- and serum-induced chemotaxis and enhanced expression of pBZrs on neutrophils. These data strongly suggest an involvement of pBZrs in mediating the in vitro effects of CBZ on chemotaxis; furthermore, impairment of the same neutrophil function parameters and overexpression of pBZrs in patients are consistent with the hypothesis of an in vivo interaction of CBZ with pBZrs.

Adolescent↗

Ambulatory blood pressure, nocturnal blood pressure reduction and plasma catecholamines.

OBJECTIVE AND DESIGN: Controversial data have been reported on plasma catecholamines in hypertensives. Aims of this study were to find whether 24-hour ambulatory blood pressure was correlated with circulating catecholamines and to investigate whether nocturnal blood pressure reduction was associated with baseline plasma catecholamines. Samples for catecholamine determination were obtained in 34 consecutive male subjects after a 30-minute rest and before ambulatory blood pressure monitoring. RESULTS: Hypertensive patients (n = 22; 24-hour blood pressure: 145 +/- 14/94 +/- 6 mm Hg) showed similar norepinephrine and epinephrine levels when compared with normotensives (n = 12; 24-hour blood pressure: 124 +/- 6/81 +/- 6 mm Hg), and higher dopamine values (hypertensives: 64.6 +/- 58; normotensives: 26.2 +/- 31 pg/ml; p < 0.05). A positive correlation was observed between dopamine and diastolic nocturnal blood pressure (p < 0.05) while a negative correlation was found between dopamine and nocturnal diastolic blood pressure reduction (p < 0.025). No significant relationship was observed between both norepinephrine and epinephrine, and 24-hour blood pressures. CONCLUSIONS: Since previous reports have documented malfunctioning of dopaminergic system in hypertension, the higher levels of circulating plasma dopamine found in hypertensive patients in the present study may account for a peripheral compensatory increase. The correlation between dopamine and nocturnal blood pressure fall seems to indicate that the impairment of dopaminergic system may influence the 24-hour blood pressure profile, affecting the nocturnal blood pressure reduction.

Adult↗

A 1-year study of drug prescriptions and adverse drug reactions in psychiatric hospital practice.

Drug prescribing habits and adverse drug reaction occurrence were investigated in a psychiatric hospital ward for chronic resident patients, and the usefulness of a drug prescription and adverse event (AE) routine monitoring programme in this setting was assessed. A computerized data base was established and updated bimonthly with clinical data concerning each patient. In particular, information about drug prescriptions was routinely obtained from the clinical records, stored in the data base and periodically retrieved and analysed. The ward doctors were required to report on a form the AEs, which were subsequently examined by a panel of clinical pharmacologists and hospital consultants, to assess their relationship with drug treatments. Moreover, the data base was periodically scrutinized, to search for further AEs. Drug prescription monitoring, besides providing valuable information about drug utilization, allowed identification of some questionable issues (e.g. polypharmacy, low frequency of treatment revisions). The AE monitoring system proved to be effective and the participation of the ward doctors was satisfactory. It is concluded that in this psychiatric hospital setting a drug prescription and AE routine monitoring programme can provide useful information and promote improvement of the quality of care.

Journal Article↗

Adrenergic mechanisms in the control of gastrointestinal motility: from basic science to clinical applications.

Over the years, a vast literature has accumulated on the adrenergic mechanisms controlling gut motility, blood flow, and mucosal transport. The present review is intended as a survey of key information on the relevance of adrenergic mechanisms modulating gut motility and will provide an outline of our knowledge on the distribution and functional role of adrenoceptor subtypes mediating motor responses. alpha1-Adrenoceptors are located postsynaptically on smooth muscle cells and, to a lesser extent, on intrinsic neurons; alpha2-adrenoceptors may be present both pre- and postsynaptically, with presynaptic auto- and hetero-receptors playing an important role in the modulation of neurotransmitter release; beta-adrenoceptors are found mainly on smooth muscle cells. From a clinical standpoint, adrenoceptor agonists/antagonists have been investigated as potential motility inhibiting (antidiarrheal/antispasmodic) or prokinetic agents, although at present their field of application is limited to select patient groups.

Adrenergic Agents↗

Assessment of lymphocyte subsets and neutrophil leukocyte function in chronic psychiatric patients on long-term drug therapy.

1. Lymphocyte subsets and neutrophil function were studied in chronic psychiatric patients on long-term multiple drug therapy, and the correlation with disease and drug treatments was also investigated. 2. Patients showed decreased CD4+ percentage, CD4+/CD8+ ratio, B lymphocyte percentage, increased absolute and percentage NK, and impaired neutrophil chemotaxis, phagocytosis, and oxidative metabolism. Correlations were found between: patient status and lower CD4+ percentage, CD4+/CD8+ ratio, neutrophil chemotaxis, phagocytosis, and oxidative metabolism; schizophrenia and higher absolute and percentage NK, and neutrophil random migration; benzodiazepines and higher CD8+ absolute number and lower NBT reduction frequency; carbamazepine and higher NK percentage, neutrophil chemotaxis, phagocytosis, stimulated O2-production, and lower microbicidal activity. 3. The present study provides direct evidence for the existence of immunologic abnormalities in a population of chronic psychiatric patients on long-term drug therapy. Although a possible role by other factors could not be excluded, such abnormalities are strongly associated with chronic administration of benzodiazepines and carbamazepine. Further investigations are warranted to confirm these findings and disclose the possible mechanism(s) involved.

Adult↗

Tonic modulation of neurotransmitter release in the guinea-pig myenteric plexus: effect of mu and kappa opioid receptor blockade and of chronic sympathetic denervation.

We have studied the effects of mu- and kappa-opioid receptor blockade on endogenous acetylcholine and noradrenaline overflow from the myenteric plexus of the guinea-pig isolated colon. Cyprodime (putative mu-selective antagonist) and nor-binaltorphimine (kappa-selective antagonist) had a concentration-dependent facilitatory effect on both acetylcholine and noradrenaline overflow. Moreover, in colonic specimens obtained from sympathetically denervated animals, the effect of opioid antagonists on acetylcholine overflow was significantly higher with respect to normal preparations. Evidence is thus given in favour of an involvement of mu- and kappa-opioid receptor pathways in the tonic modulation of neurotransmitter release at the colonic level. Enhanced sensitivity to the effect of mu and kappa antagonists after chronic sympathetic denervation is strongly suggestive for the existence of a functional link between opioid and adrenergic pathways in this model.

Acetylcholine↗

N-methyl-D-aspartate receptors modulate neurotransmitter release and peristalsis in the guinea pig isolated colon.

To assess the role of NMDA receptors in modulating neurotransmitter release in the myenteric plexus, we studied the effects of L-glutamic acid and NMDA on endogenous acetylcholine and noradrenaline overflow (assayed by HPLC) from the guinea pig isolated distal colon. L-Glutamic acid and NMDA enhanced electrically evoked acetylcholine and noradrenaline overflow and these effects were reversed by selective NMDA receptor antagonists. The possible functional significance of these findings was studied by measuring the efficiency of the colonic peristaltic reflex in the presence of NMDA receptor agonists. NMDA inhibited propulsion velocity at all concentrations tested, this effect being antagonized by (+/-)-2-amino-5-phosphonopentanoic acid and virtually abolished in sympathetically denervated animals. In conclusion, the inhibitory effect of NMDA on peristalsis, being almost entirely dependent on the integrity of sympathetic pathways, could be, at least in part, due to NMDA-induced noradrenaline release.

2-Amino-5-phosphonovalerate↗

Functional evidence for the presence of beta 3-adrenoceptors in the guinea pig common bile duct and colon.

To determine the existence of beta 3-adrenoceptors in functional assays in isolated preparations for which data are lacking, we compared the effects of SR 58611A, a selective beta 3-adrenoceptor agonist, and isoprenaline in the guinea pig common bile duct, distal colon and urinary bladder. SR 58611A and isoprenaline relaxed the common bile duct (EC50: 6.85 and 0.41 mumol/l, respectively). The effect of SR 58611A was resistant to CGP 20712A, ICI 118551, propranolol and tetrodotoxin, but was antagonized by alprenolol (pA2 = 6.86), while the effect of isoprenaline was antagonized by CGP 20712A, ICI 118551, propranolol and alprenolol (pA2 = 7.04, in the presence of propranolol to saturate beta 1- and beta 2-adrenoceptors). In colonic preparations, SR 58611A and isoprenaline relaxed circular muscle strips (EC50: 5.48 and 0.49 mumol/l, respectively). The effect of SR 58611A was resistant to CGP 20712A, ICI 118551, propranolol and tetrodotoxin, but was antagonized by alprenolol (pA2 = 7.01). The effect of isoprenaline was resistant to CGP 20712A, but was antagonized by ICI 118551, propranolol and alprenolol (pA2 = 6.88, in the presence of propranolol). In urinary bladder strips, SR 58611A had no effect, whereas isoprenaline reduced resting tone (EC50:0.87 mumol/l), an effect antagonized by alprenolol (pA2 = 8.14). These data provide functional evidence for the presence of beta 3-adrenoceptors in the guinea pig common bile duct and colon, but not in the urinary bladder. At the concentrations used, the effect of SR 58611A was probably mediated solely by activation of beta 3-adrenoceptors located on smooth muscle cells, whereas the effects of isoprenaline were due to beta 3- and also to beta 1-and/or beta 2-adrenoceptor activation.

Adrenergic alpha-Agonists↗

Effect of desipramine-induced blockade of neuronal uptake mechanisms on adrenoceptor-mediated responses in the guinea-pig colon.

In order to clarify whether adrenoceptors in the guinea-pig distal colon are under sympathetic control, we assessed possible variations in the sensitivity to adrenoceptor agonists after blockade of neuronal catecholamine uptake mechanisms by desipramine (DMI). First, experiments were carried out to investigate the effects of DMI added in the organ bath on propulsion velocity, endogenous and [3H] prelabelled acetylcholine overflow, electrically evoked noradrenaline overflow and longitudinal smooth muscle tone. Secondly, we studied the effects of adrenoceptor agonists on the above parameters in untreated animals and in animals chronically treated with DMI. DMI added in the organ bath at concentrations equal to or higher than 30 nM inhibited all the parameters under study. Thus, when evaluating the effect of DMI on concentration-response curves to adrenoceptor agonists, concentrations which were per se inactive were used. DMI added in the organ bath at concentrations up to 30 nM potentiated the inhibitory effects of exogenous noradrenaline on propulsion velocity and acetylcholine overflow, but it did not affect the concentration-response curve to exogenous noradrenaline on longitudinal smooth muscle tone. Furthermore, 30 nM DMI inhibited propulsion velocity during sympathetic nerve stimulation. In preparations obtained from animals chronically treated with DMI, no significant change of propulsion velocity, endogenous and [3H] prelabelled acetylcholine overflow was found with respect to untreated animals. Nevertheless, in such preparations subsensitivity to isoprenaline (acting mainly on muscular beta-adrenoceptors) and clonidine (acting on neuronal alpha 2-adrenoceptors) and super-sensitivity to phenylephrine were observed. Electrically evoked noradrenaline overflow was enhanced, in a frequency-dependent way, by yohimbine and inhibited by clonidine.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗