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M L Cingolani

Publications and source records attributed to M L Cingolani.

13 recordsLinked to original sources

Synthesis and structure-activity relationship studies in a series of 2-substituted 1,3-dioxolanes modified at the cationic head.

To develop ligands that may be useful in exploring muscarinic receptor heterogeneity, we synthesized a series of analogues of 2,2-diphenyl-[1,3]-dioxolan-4-ylmethyl-dimethylamine oxalate and methiodide bearing a modified cationic head. These compounds, when tested on tissues containing the three subtypes M1, M2, and M3, behaved as muscarinic antagonists whose results showed that different substituents on the quaternary and tertiary nitrogen affect affinity and selectivity in different ways. In particular comparison of the affinities of these ligands with those of the reference compounds points out that compounds bearing an ethyl substituent improve the affinity of the molecule at the three subtypes while compounds bearing a phenethyl substituent are more selective for the M3 sites.

Amines↗

A Bayesian approach to drug disposition evaluation: application to teicoplanin.

We suggest a Bayesian method in order to evaluate the disposition kinetics of the drug plasma concentrations after intravenous (i.v.) and/or after extravascular administration of the drug in the same subject pooled with information obtained taking into account previous pharmacokinetics of the drug. This approach was applied to the investigation of teicoplanin pharmacokinetics after 200 mg i.v. administration to 10 healthy subjects.

Adult↗

Pharmacological characterization of muscarinic receptor subtypes in rabbit isolated tissue preparations.

1 The affinity of some muscarinic antagonists for muscarinic receptors was determined in functional isolated tissue studies in order to compare the muscarinic receptor subtypes in the rabbit. 2 Our attention was specially focused on the question of whether the muscarinic receptors mediating vasodilatation in the aorta resemble or not the ones present on the jejunum of the gastrointestinal tract. 3 Isolated aorta, jejunum, stimulated left atrium and vas deferens preparations of rabbit were investigated with the following muscarinic antagonists: atropine, pirenzepine, methoctramine (N,N'-bis[6-92-methoxybenzyl)amino hexyl]-1,8-octane-diamine tetrahydrochloride) and 4-DAMP (4-diphenylacetoxy-N-methylpiperidine methiodide). 4 The results demonstrate that the receptors on aorta are unlike those on the other rabbit tissues: pirenzepine pA2 was 6.4 on aorta but 8.1 on vas deferens; methoctramine pA2 was 5.9 on aorta but 7.1 on heart; 4-DAMP pA2 was 8.7 on aorta and 8.0 on jejunum. This raises the question: what subtype might be involved?

Animals↗

The usefulness, in pharmacological classification, of complementary pattern-recognition techniques and structure modelling as afforded by the iterative collation of multiple-trial data in data banks.

In this emerging information age no significant limits can be envisaged to the immense resources of knowledge that pharmacological sciences can draw upon by systematically applying multivariate pattern-recognition techniques to those data banks which can be organized internationally with better standardization of descriptors, i.e. by parametrizing observations and evaluating monitoring in experimental, biological assays, clinical trials and postmarketing surveillance. Even conventionally or habitually adopted references and communalities such as traditional drug profiles and receptor models may be iteratively re-checked and suitably adapted so as to take account of more adequate, up-to-date analytical techniques, fresh biological ideas and new advances in terms of physiological refinements. An attempt may also be made to modify the chemicophysical relationships and patterns currently traced on the basis of what are held to be quantitative structure-activity oversimplifications. The present paper focuses upon specifying a number of standardization criteria in conventional assays and upon submitting multiple biological features to monitoring; in addition, it gives some picture of the new trends the approach can offer and draws attention to the more relevant, innovative literature references.

Animals↗

Cholinergic effects of cimetidine and ranitidine.

Cimetidine and ranitidine were submitted to eight in vitro assays: their intrinsic activity was evaluated on guinea-pig auricles and ileum, acetylcholine synergism on guinea-pig tracheal muscle, frog rectus abdominis, guinea-pig vas and rat phrenic nerve diaphragm, and antagonism on guinea-pig auricles and rat jejunum estimated at a range of concentrations. Ranitidine alone opposed 1-hyoscyamine antagonism in guinea-pig ileum when acetylcholine was the agonist, but not when the agonist was bethanechol.

Acetylcholine↗

[Redox and phosphorylation equilibrium of the central metabolic pathway: rat liver profile in controls and after treatment with dichloroacetate and phenformin following dichloroacetate].

Glycolytic-, oxidative shunt, and mitochondrial metabolites, UDPG and high-energy-phosphates were measured in the liver of rats treated with Phenformin and/or Sodium Dichloroacetate. The substrate level profiles of the acute (90-60 min before sacrifice) treated groups were studied, and the interrelationships among substrate-coupled pyridine dependent dehydrogenase-redox potentials, the high energy-potentials of cytosolic and mitochondrial spaces, in the above-mentioned conditions, are discussed.

Acetates↗

Cholinergic compounds VII - Synthesis and pharmacological activity of some trimethylammonium iodides related to desethermuscarine.

Some substances similar to desethermuscarine were synthesized and studied as cholinergics on isolated organs. The results show the importance of the cyclopentane nucleus with regard to activity. The activity of 3-methyltrimethylammonium hexane iodide is particularly interesting for, though lacking the oxygenated function in 3 and having a different methyl spatial arrangement, this compound is only ten times less active than desethermuscarone.

Animals↗

Cholinergic compounds. III - Synthesis and biological activity of epi-desmethyldesethermuscarine, desmethyldesethermuscarine and desmethyldesethermuscarone.

As a further contribution to better understanding of the nature of the cholinergic receptors, desmethyldesethermuscarone (I), epi-desmethyldesethermuscarine (II a) and desmethyldesethermuscarine (II b) were synthesized. With few exceptions, the drop in muscarinic activity of these compounds compared with that of desethermuscarone and desethermuscarines emphasizes the importance of C-7 methyl (5). As far as nicotinic activity is concerned, C-7 methyl appears much less critical.

Animals↗