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F Navas

Publications and source records attributed to F Navas.

11 recordsLinked to original sources

2-(Anilinomethyl)imidazolines as alpha(1)-adrenoceptor agonists: the identification of alpha(1A) subtype selective 2'-carboxylic acid esters and amides.

2-(Anilinomethyl)imidazolines with 2'-esters or 2'-amides are potent agonists of the cloned human alpha(1)-adrenoceptors in vitro. The size and shape of the ortho substituent can have significant effects on the potency, efficacy, and subtype selectivity of these 2-(anilinomethyl)imidazolines. alpha(1A)-subtype selective agonists have been identified.

Adrenergic alpha-1 Receptor Agonists↗

Analogues of the potential antipsychotic agent 1192U90: amide modifications.

Analogues of 2-amino-N-(4-(4-(1,2-benzisothiazol-3-yl)-l-piperazinyl) -butyl)benzamide hydrochloride (1192U90) were prepared and evaluated in receptor binding assays for the dopamine D2, serotonin 5-HT1a, and serotonin 5-HT2 receptors. Eight compounds have been synthesized in which the amide group of 1192U90 has been replaced with a variety of functional groups (i.e. ester, ketone, thioamide, butyramide, butyranilide, sulfonamide, alkoxyamide and hydrazide). These compounds exhibited moderate to potent affinities (0.55-200 nM) for all three receptors. Several analogues exhibited improved selectivity for the 5-HT2 receptor with D2/5-HT2 binding ratios greater than 1192U90.

Animals↗

Synthesis and evaluation of heterocyclic carboxamides as potential antipsychotic agents.

Heterocyclic analogues of 1192U90, 2-amino-N-(4-(4-(1,2-benzisothiazol-3-yl)-1-piperazinyl)-butyl) benzamide hydrochloride (1), were prepared and evaluated as potential antipsychotic agents. These analogues were evaluated in vitro for their binding to the dopamine D2, serotonin 5-HT2, and serotonin 5-HT1a receptors and in vivo for their ability to antagonize the apomorphine-induced climbing response in mice. Nine different types of heterocyclic carboxamides were studied in this investigation (i.e., pyridine-, thiophene-, benzothiophene-, quinoline-, 1,2,3,4-tetrahydroquinoline-, 2,3-dihydroindole-, indole-, benzimidazole-, and indazolecarboxamides). Two derivatives exhibited potent in vivo activities comparable to 1: 3-amino-N-(4-(4-(1,2-benzisothiazol-3-yl)-1-piperazinyl)butyl)-2 -pyridinecarboxamide (16) and 3-amino-N-(4-(4-(1,2-benzisothiazol-3-yl)-1-piperazinyl)butyl) -2-thiophenecarboxamide (29). Furthermore, these derivatives were found to be much less active in behavioral models predictive of extrapyramidal side effects than in the mouse climbing assay, which predicts antipsychotic activity. Carboxamides 16 and 29 were selected for further evaluation as potential backup compounds to 1.

Animals↗

Structure-activity relationships of a series of substituted benzamides: potent D2/5-HT2 antagonists and 5-HT1a agonists as neuroleptic agents.

A series of substituted (4-(4-(1,2-benzisothiazol-3-yl)-1-piperazinyl)butyl)benzamide derivatives was prepared and evaluated as potential atypical antipsychotic agents. The target compounds were readily prepared from their benzoyl chloride, benzoic acid, or isatoic anhydride precursors, and they were evaluated in vitro for their ability to bind to dopamine D2, serotonin 5-HT2, and serotonin 5-HT1a receptors. To assess the potential antipsychotic activity of these compounds, we investigated their ability to inhibit the apomorphine-induced climbing response in mice. Selected compounds were evaluated further to determine their side-effect potentials. Structure-activity relationships of both mono- and polysubstituted benzamides are discussed herein. While several analogues had potent in vitro and in vivo activities indicative of potential atypical antipsychotic activity, anthranilamide 77 (1192U90) ddemonstrated a superior pharmacological profile. As a result of this investigation, 1192U90 (2-amino-N-(4-(4-(1,2-benzisothiazol-3-yl)-1-piperazinyl)butyl)ben zamide hydrochloride) was selected for further evaluation and is currently in phase I clinical trials as a potential atypical antipsychotic agent.

Animals↗

Cyclic benzamides as mixed dopamine D2/serotonin 5-HT2 receptor antagonists: potential atypical antipsychotic agents.

A series of novel 4-(4-(1,2-benzisothiazol-3-yl)-1-piperazinyl)butyl) cyclic amides was prepared and evaluated as potential antipsychotic agents. The target compounds were examined in vitro for their binding affinities to the dopamine D2, serotonin 5-HT2, and serotonin 5-HT1a receptors and in vivo for their ability to antagonize the apomorphine-induced climbing response in mice. Derivatives that exhibited good D2/5-HT2 selectivity in vitro and good potency in vivo were selected for further evaluation in tests designed to assess their potential extrapyramidal side effect liability. Structural modifications discussed herein focus on the bicyclic amide subunit leading to the preparation of a variety of heterocyclic ring systems (i.e., phthalimide, isoindolinone, isoquinolinone, benzazepinone, indazolone, phthalazinone, 4-methyl phthalazinone, benzisothiazolone 1,1-dioxide, benzotriazinone, homophthalimide, benzisothiazolone, phthalazinedione, quinazoline, and saturated phthalazinones). The potency and selectivity within this series was found to be dependent on ring size, nature of the covalent linking unit, relative position of the functional groups, degree of unsaturation, and relative stereochemistry. In general, the cyclic benzamides examined in this investigation exhibited receptor binding activities indicative of potential atypical antipsychotic agents. Several of these derivatives possessed in vivo activities that suggest they would be useful in the treatment of schizophrenia and would have a low propensity to induce extrapyramidal side effects. Two potent analogues were identified and selected for further evaluation: 2-(4-(4-(1,2-benzisothiazol-3-yl)-1-piperazinyl)butyl)-1-isoind olinone (31) and (+-)-cis-2-(4-(4-(1,2-benzisothiazol-3-yl)-1-piperazinyl)-butyl)- 4a,5,6,7,8,8a-hexahydro-1(2H)-phthalazinone hydrochloride (52).

Animals↗

Comparison of the reinforcing properties of zopiclone and triazolam in former alcoholics.

The reinforcing properties of zopiclone (3.75 mg) and triazolam (0.25 mg) and their side effects were studied in a double-blind crossover design, followed by forced choice in 40 volunteers taken from a population of chronic alcoholic inpatients who had just completed withdrawal from alcohol. After initial interview when the physician checked if the inclusion and exclusion criteria were met, patients were submitted to the following assessments: profile of mood states (POMS), ARCI subscales (items of scales No. 452, 129, 125, and 52), drug record form and vital signs, SESI (side effect checklist), preference form, subjective effect scale (subscale 220 of the ARCI), and withdrawal assessment. No difference between the drugs could be found on the POMS, ARCI or in the drug intake. There was a difference in patients' drug preference for triazolam in comparison to zopiclone. Zopiclone, like triazolam, may induce some feelings similar to those obtained with alcohol. Side effects noticed by patients were of mild to moderate degree and harmless.

Adolescent↗

Comparison of the reinforcing properties of zopiclone and triazolam in former alcoholics.

The reinforcing properties of zopiclone (3.75 mg) and triazolam (0.25 mg) and their side effects were studied in a double-blind crossover design, followed by forced choice in 40 volunteers taken from a population of chronic alcoholic inpatients who had just completed withdrawal from alcohol. After initial interview when the physician checked if the inclusion and exclusion criteria were met, patients were submitted to the following assessments: profile of mood states (POMS), ARCI subscales (items of scales No. 452, 129, 125, and 52), drug record form and vital signs, SESI (side effect checklist), preference form, subjective effect scale (subscale 220 of the ARCI), and withdrawal assessment. No difference between the drugs could be found on the POMS, ARCI or in the drug intake. There was a difference in patients' drug preference for triazolam in comparison to zopiclone. Zopiclone, like triazolam, may induce some feelings similar to those obtained with alcohol. Side effects noticed by patients were of mild to moderate degree and harmless.

Adult↗

Sampling or intermittency in hand control system dynamics.

A hand control model is proposed. Investigation of the hand's intermittency synchronization shows it corresponds to an input-synchronized sampler rather than the clock-synchronized sampler more typical of engineering systems. A velocity control mechanism, similar to that in an eye tracking system is shown to be absent in the hand. A quantitative transfer function for predictable inputs serves further to define the hand's input adaptive characteristics. Stability margin adjustments of a linear reduced model enabled us to match the available quantitative data. The most exciting result of this study is the evidence for intermittency: a refractory period shown in the short pulse experiment, peaks in the frequency response experiments, and a saccadic sequence of steps in response to an open loop step input and to a closed loop ramp input.

Central Nervous System↗