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Biomedical subjects

J Couquelet

Publications and source records attributed to J Couquelet.

At least 37 records · Page 2Linked to original sources

Study of structure/activity relationships by multivariate statistical analysis in a series of triazaspirodecanediones with CNS activities.

The CNS activities of thirteen triazaspirodecanediones have been compared by multivariate statistical analysis. The response parameters used in this study were spontaneous motor activity, potentiation of pentobarbital effect, anticonvulsant and anxiolytic activities. Pharmacological data were analyzed using two methods: (1) a factorial correspondence analysis; (2) an automatic analysis based first on a hierarchical clustering represented by a dendrogram and second on the minimum spanning tree method. The obtained results allow to imagine the synthesis of more specific compounds.

Animals↗

Thromboxane A2 biosynthesis inhibitors: synthesis and evaluation of pyrazolotriazinyl alkanoic acids.

A novel series of (6-aryl-4-oxo-pyrazolo 2,3-d] [1,2,5] triazin-3-yl) alkanoic acids was synthesized and evaluated in vitro as thromboxane A2 (TXA2) biosynthesis inhibitors. The experiments were carried out using arachidonic acid (32.8 microM) as a substrate and horse platelet microsomes (HPM) as sources of TXA synthetase. TXB2, a stable breakdown product of TXA2, was determined by radioimmunoassays (RIA). The substances under study, at concentrations ranging from 1.10(-6) M to 1.10(-4) M, significantly inhibited the biosynthesis of TXA2 in vitro. This activity was found to be dose-dependent, the potency of which could be related to structural features of the molecules. Compound 3b, bearing a butanoic side chain in the 3-position and a 4-chloro phenyl ring in the 6-position of the bicyclic system, was the most active derivative in in vitro enzyme inhibition (ID50 = 2.81 x 10(-5) M). Comparison of the spatial configurations of prostaglandin H2 (PGH2 and 3b displayed a good correlation between essential structural moieties of both molecules. In addition, conceptual model for the PGH2 and TX synthetase interactions was applied to compound 3b.

Animals↗

Immunomodulatory agents: dioxothiadiazabicyclo[3.3.0]octanes and their 2-spiro derivatives.

A series of 6,8-dioxo-3-thia-1,7-diazabicyclo[3.3.0]octanes and a series of 6,8-dioxo-3-thia-1,7-diazabicyclo[3.3.0]octane 2-spiro derivatives were synthesized from L-(-)-R-cysteine ethyl ester in two steps. The synthetic route involved condensation of the amino acid with an appropriate aldehyde or ketone, then a further condensation of the resultant ethyl thiazolidine-4-carboxylate with an isocyanate or an isothiocyanate. The proliferative response to human lymphocyte mitogen (phytohemagglutinin) was used as a primary screening assay for most of the thiadiazabicyclic compounds in comparison with levamisole. Furthermore, the most active compounds were tested for ability to release soluble receptors (sRIL-2) after mitogenic stimulation of T cells and for ability to activate macrophage oxidative metabolism measured by chemiluminescence. Most compounds were active in all three tests and some showed dose-dependent activity.

Adjuvants, Immunologic↗

Synthesis of new 5-substituted pyrazolo[1,5-d][1,2,4]-triazine derivatives and their analgesic, anti-inflammatory and antipyretic properties.

A series of 2-aryl-4-oxo-pyrazolo[1,5-d][1,2,4]triazines substituted in the 5-position by aminoalkyl or benzoyl moieties was synthesized and evaluated for analgesic activity. The structures of new triazine derivatives were confirmed by IR, 1H-NMR spectra and by elementary analysis. In the phenylbenzoquinone induced writhing test, only 3,3a-dihydropyrazolo triazines substituted by an arylpiperazinylmethyl group exhibited potent analgesic effect. In addition, these compounds possessed significant anti-inflammatory and antipyretic properties. A desaturation in 3,3a positions or other groups than arylpiperazinylmethyl moieties notably decreased analgesic effects.

Animals↗

Synthesis of Mannich bases of arylidenepyridazinones as analgesic agents.

A series of 5-arylidenepyridazin-3-ones substituted in the 2-position by an arylpiperazinoalkyl moiety (2-16) was synthesized and evaluated for analgesic activity. In the phenylbenzoquinone-induced writhing test, Mannich bases 2-14 were the most active compounds (6.1 < or = ED50 < or = 43.0 mg/kg, orally; ED50 is the half-maximal effective dose). Pyridazinones 8 and 9, with a 3-chlorophenylpiperazinomethyl substituent, also exhibited significant anti-inflammatory and antipyretic effects. The activities in the phenylbenzoquinone-induced writhing test were subjected to a Hansch analysis, and a significant correlation with lipophilicity and Hammett's constants was obtained.

Analgesics↗

Synthesis and aldose reductase inhibitory activity of triazine derivatives possessing acetic acid group.

N-Acetic acid derivatives of 6-aryl-pyrazolo-triazin-4-ones were synthesized for evaluation as new aldose reductase inhibitors. The intrinsic activity of each compound was assessed by measuring the inhibition of enzymatic activity in an isolated pig lens enzyme preparation. All the prepared compounds exhibited a significant in vitro aldose reductase inhibitory effect (10(-6) M less than or equal to IC50 less than or equal to 10(-4) M). Furthermore, biological activity (log 1/IC50) for most of the data sets could be correlated directly to electronic and steric parameters. Finally, spatial configuration of the most active derivative 6c (IC50 = 2 x 10(-6) M) was compared with that of tolrestat and with pharmacophor requirements of the aldose reductase inhibitor site using a molecular modeling system.

Acetates↗

Development of absorption furosemide prodrugs: synthesis, in vitro and in vivo evaluation.

Six acyloxymethyl esters of Furosemide were synthesized and the structures were determined by chemical and spectroscopic methods. Lipophilicity parameters were analysed by high performance liquid chromatography (HPLC). Hydrolysis performances in human plasma and intestinal fluids anticipate their properties as absorption prodrugs of Furosemide. A bioavailability study carried out with 8 male Wistar rats with one of the synthesized prodrug (acetyloxymethyl 4-chloro-N-furfuryl-5-sulfamoylanthranilate) showed a greater absorption in relation to Furosemide. The percentages of mean urinary recovery of Furosemide for the prodrug and for the standard solution of the drug were 20.84 and 14.36 respectively. The doses were 10 mg/Kg in Furosemide. The analytical determinations of Furosemide in biological fluids were done by HPLC.

Animals↗

Studies on immunostimulating derivatives: synthesis of some pyrrolo[1,2-c]pyrimidines.

In a search for potential immunomodulating agents novel pyrrolo[1,2-c]pyrimidines were synthesized and their structures elucidated by spectroscopic means. Unfortunately, most of them were cytotoxic and devoid of effects on T lymphocyte lymphoblastic transformation. Furthermore, they were inactive in the locomotor activity test in mice.

Adjuvants, Immunologic↗

Aminopyridazine derivatives and TXA2-PGI2 balance.

Experiments carried out under the conditions adopted showed the strong affinity of aminopyridazine derivatives for the eicosanoids TXA2 and PGI2. But this affinity depended on the chemical structure of the molecule: a small change in the radical grafted onto the pyridazine ring could completely modify the pharmacological activity of the molecule. Consequently it should be possible to control the properties of pyridazine derivatives according to pharmacological needs. Thus: --pyridazin-3-one derivatives were mainly active on TXA2 biosynthesis: 2-aminoalkyl 5-arylidene 6-methyl (4H) pyridazin-3-ones inhibited the TXA2-synthesizing activity of cardiac tissue whereas 3-amino 4,6-diaryl pyridazin-3-ones were specific inhibitors of the TXA2 synthetase in vitro, but these effects were weak. --pyridazine derivatives were devoid of any effect on the TXA2-synthesizing activity of cardiac tissue: they acted on either TXA2 synthetase or PGI2 synthetase according to the radicals grafted onto the pyridazine ring. --none of the compounds under study was active on the PGI2-synthesizing activity of cardiac tissue.

Animals↗

Comparative effects of some 3-amino 4,6-diarylpyridazines on the biosynthesis in vitro of TXA2 and PGI2- and on the TXA2- and PGI2-synthesizing activities of cardiac tissue.

Some 3-amino 4,6-diarylpyridazine derivatives were tested for their effects on TXA2 and PGI2 biosyntheses in vitro and on the TXA2- and PGI2-synthesizing activities of cardiac tissue. Horse platelet and aorta microsomes were used as sources of thromboxane and prostacyclin synthetases respectively. The TXA2- and PGI2-synthesizing activities of cardiac tissue were studied on isolated perfused rabbit hearts (the heart microsomes being used both as TXA2 synthetase and PGI2 synthetase sources). TXB2 and 6-keto PGF1 alpha were determined by RIA. Among the compounds under study, 3-morpholino 4,6-diphenylpyridazine (III) was shown to inhibit specifically the TXA2 synthetase. Substitution of the morpholino group by a dimethylamino one (I) reinforced the inhibiting effects on TXA2 synthetase but it also revealed a slight anti-prostacyclin synthetase action of the molecule. Replacement of 3-morpholino moieties by either a 3-hydrazino (IV), or a 2-dimethylaminoethylamino (V), or a 2-morpholinoethylamino group (VI) abolished completely the effects of the molecule on TXA2 and PGI2 synthetases. Likewise the addition of chlorine on the para-position on the phenyl ring of I neutralized all its inhibitory effects both on TXA2 and PGI2 synthetases in vitro. None of the 3-amino 4,6-diarylpyridazine derivatives was active on either the TXA2- or PGI2-synthesizing activities of cardiac tissue.

Animals↗

A selective inhibitor of thromboxane synthetase activity of rabbit heart tissue: a pyridazinic derivative.

The effects of 2-(2 dimethylaminoethyl) 5-benzylidene 6-methyl (2H,4H)-3-pyridazinone (III) were studied on the biosynthesis of TXA2 and PGI2 in vitro the TXA2 and PGI2 synthetase activity of heart tissue. Biosyntheses of TXA2 and PGI2 were carried out using arachidonic acid as a substrate and horse platelet and aorta microsomes as sources of TXA2 and PGI2 synthetases respectively. TXB2 and 6-keto PGF1 alpha were determined by RIA. III--did not significantly modify either the biosynthesis of PGI2 in vitro or the PGI2 synthetase activity of heart tissue. did not significantly inhibit TXA2 biosynthesis in vitro but markedly reduced the TXA2 synthetase activity of heart tissue: for a microsomal fraction concentration of 100 micrograms protein, the ID50 was 6.37 X 10(-5) M +/- 1.29 X 10(-8) M. Thus III behaves as a specific inhibitor of the TXA2 synthetase activity of heart tissue and could have a beneficial use in therapeutics.

Animals↗

[Synthesis and pharmacologic study of several spirohydantoins: relation to conformation].

Using two routes starting from cyclanones, it has been possible to prepare two series of spirohydantoins substituted or not on the hydantoin nucleus nitrogen. These compounds exhibited low toxicity on pig lens aldose reductase (except for two compounds). A discussion is given on the steric and geometric requirements for effective enzyme inhibiting activity.

Aldehyde Reductase↗

An inhibitor of prostacyclin biosynthesis derived from aminopyridazine.

The effects of 3-dimethylamino 5-(3' trifluoromethylbenzylidene) 6-methyl (4H)-pyridazine (PC88) on the biosynthesis of PGI2, using horse aorta microsomes as a source of enzyme and arachidonic acid as a substrate, were investigated. Under the experimental conditions adopted, PC88 was shown to dose-dependently inhibit PGI2 biosynthesis (ID50 = 6.9 x 10(-4) M +/- 1.87 x 10(-7) M). This inhibitory effect of PC88 was complex: it was of neither competitive nor non-competitive type. 3-dimethylamino 5-(2',6'-dichlorobenzylidene 6-methyl-(4H)-pyridazine (PC89) enhanced the biosynthesis of PGI2. It is worth noticing the replacement of the 2 Cl at carbon atoms 1 and 4 by a CF3 at carbon atom 2 of the phenol ring. This appears to reverse the activity of the molecule on the synthesis of PGI2. PC88 and PC89 were both inhibitors of TXA2 synthetase.

6-Ketoprostaglandin F1 alpha↗

[Synthesis and pharmacologic evaluation of some dihydropyran carboxylic acids].

The synthesis of three new dihydropyran carboxylic acids has been performed by uncommon procedures: cyanosilylation, cyclisation of oxime. Their chemical structure was confirmed by I.R. and N.M.R. data. In a pharmacological evaluation they were found to possess significant effects on the passive cutaneous anaphylaxis test and on the central nervous system; one of them showed an interesting antiallergic effect whilst another showed an interesting sedative effect.

Analgesics↗

Chemical structure and hemodynamic effects of two new pyridazinone derivatives.

Two new pyridazinone derivatives were selected among two series and assayed for their hemodynamic effects. Their synthesis is described and their chemical structure confirmed by I.R. and N.M.R. data. The 5-arylhydroxymethyl-3-pyridazinone did not induce any significant hemodynamic changes. However, the 5-dichlorobenzylidene-3-pyridazinone, intravenously injected, was active in anesthetized dogs. Moderate doses induced modifications in the heart rate, left ventricular dP/dt max and femoral blood flow and resistance.

Animals↗