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M Briley

Publications and source records attributed to M Briley.

At least 73 records · Page 4Linked to original sources

1-Aryl-2-(aminomethyl)cyclopropanecarboxylic acid derivatives. A new series of potential antidepressants.

A series of 1-aryl-2-(aminomethyl)cyclopropanecarboxylic acid derivatives were synthesized and evaluated as potential antidepressants. Compounds with the Z configuration were synthesized from 1-aryl-2-oxo-3-oxabicyclo[3.1.0]hexane and those with the E configuration from (E)-1-phenyl-2-(hydroxymethyl)cyclopropanecarboxylic acid. The compounds were evaluated in animal tests designed to reveal potential antidepressant activity and the existence of undesirable side effects. Several derivatives were more active than imipramine and desipramine. On the basis of its activity in pharmacological animal tests of antidepressant activity and its potential lack of side effects, 1-phenyl-1-[(diethylamino)carbonyl]-2- (aminomethyl)cyclopropane hydrochloride, midalcipran (INN), was selected for further development. This compound is currently in phase III clinical evaluation.

Amino Acids↗

Dihydroergocristine-induced stimulation of the 5-HT autoreceptor in the hypothalamus of the rat.

In slices of the hypothalamus of the rat, prelabelled with [3H]5-hydroxytryptamine ([3H]5-HT), dihydroergocristine (DHEC) decreased in a concentration-dependent manner (0.01-1 microM) the release of [3H]transmitter elicited by stimulation. In the presence of phentolamine (1 microM), sulpiride (1 microM), atropine (1 microM) or methiothepin (0.1 microM), the effect of DHEC remained unchanged. However, methiothepin at 1 microM and citalopram at 1 microM antagonized the inhibition induced by DHEC. Methiothepin at 0.1 microM has been shown to be sufficient to shift to the right the concentration-effect curve of D-lysergic acid diethylamide (LSD) on the stimulation-evoked release of [3H]5-HT by a factor of 10. However, in the present experiments, 1 microM methiothepin was required to antagonize the effect of DHEC. Thus, the alpha adrenergic, dopaminergic and cholinergic activities of DHEC do not seem to be responsible for its effect on the release of 5-HT. The lower potency of methiothepin suggests, however, that stimulation of the 5-HT autoreceptor by DHEC may not fully explain the results.

Animals↗

High- and low-affinity binding of [3H]imipramine in rat hypothalamus.

In the rat hypothalamus [3H]imipramine binding is inhibited by tricyclic and nontricyclic antidepressant drugs in a complex manner, with biphasic curves and Hill coefficients less than 1.0. 5-Hydroxytryptamine (serotonin) inhibited with high affinity a decreasing proportion of the [3H]imipramine binding sites as the [3H]imipramine concentration was raised. In the absence of sodium ions, IC50 values for the inhibition by tricyclic and nontricyclic antidepressants were increased by approximately 1,000-fold, and the inhibition curves became classically monophasic with Hill coefficients close to 1.0. These data are interpreted as suggesting that [3H]imipramine binds to two independent sites in the rat hypothalamus. One site is sodium-dependent with a high affinity for the drugs tested; the other is sodium-independent and has a low affinity for these drugs.

Amitriptyline↗

Biochemical profile of midalcipran (F 2207), 1-phenyl-1-diethyl-aminocarbonyl-2-aminomethyl-cyclopropane (Z) hydrochloride, a potential fourth generation antidepressant drug.

The present study of midalcipran (F 2207), 1-phenyl-1-diethyl-aminocarbonyl-2-aminomethyl-cyclopropane(Z) hydrochloride, was undertaken to determine its biochemical profile. The properties of midalcipran, in inhibiting the uptake of monoamines were tested and compared with that of imipramine. In vitro, midalcipran was found to inhibit the uptake of radiolabelled serotonin and noradrenaline (IC50 = 203 and 100 nM, respectively), but not that of dopamine, into brain slices. Hyperthermia induced by the centrally-acting displacers of monoamines, H77/77 and H75/12, were almost equipotently antagonized by midalcipran, confirming the inhibition of the uptake of serotonin and noradrenaline by midalcipran in vivo (ID50 = 11 and 4.8 mg/kg, respectively). Midalcipran showed no inhibition of the activity of monoamine oxidase in vitro or in vivo. The interaction between midalcipran and neurotransmitter receptors and binding sites in the CNS was studied in the rat in comparison with imipramine and desipramine. In contrast to these two antidepressant drugs, midalcipran showed no affinity for alpha- or beta-adrenoceptors, muscarinic, histaminergic H1, dopaminergic D2 or serotonergic 5-HT2 receptors, suggesting a general absence of anticholinergic, sedative and other side-effects. Midalcipran was equipotent with imipramine at inhibiting the binding of [3H]imipramine. Chronic administration of midalcipran to rats did not alter the number of beta-adrenergic receptors in the cortex, in contrast to imipramine and desipramine which decreased the binding of beta-adrenoceptors. Thus midalcipran appears to act exclusively presynaptically, inhibiting the uptake of serotonin and noradrenaline. This activity, coupled to the total absence of interaction at postsynaptic sites, suggests that midalcipran may be a useful and novel antidepressant drug.

Animals↗

Validation of open:closed arm entries in an elevated plus-maze as a measure of anxiety in the rat.

A novel test for the selective identification of anxiolytic and anxiogenic drug effects in the rat is described, using an elevated + -maze consisting of two open arms and two enclosed arms. The use of this test for detecting such drug effects was validated behaviourally, physiologically, and pharmacologically. Rats made significantly fewer entries into the open arms than into the closed arms, and spent significantly less time in open arms. Confinement to the open arms was associated with the observation of significantly more anxiety-related behaviours, and of significantly greater plasma corticosterone concentrations, than confinement to the closed arms. Neither novelty nor illumination was a significant contributor to the behaviour of the rats on the + -maze. A significant increase in the percentage of time spent on the open arms and the number of entries into the open arms was observed only within clinically effective anxiolytics (chlordiazepoxide, diazepam and, less effectively, phenobarbitone). Compounds that cause anxiety in man significantly reduced the percentage of entries into, and time spent on, the open arms (yohimbine, pentylenetetrazole, caffeine, amphetamine). Neither antidepressants nor major tranquilisers had a specific effect. Exposure to a holeboard immediately before placement on the + -maze showed that behaviour on the maze was not clearly correlated either with exploratory head-dipping or spontaneous locomotor activity.

Analysis of Variance↗

Indirect dopaminergic effects of tofisopam, a 2,3-benzodiazepine, and their inhibition by lithium.

Tofisopam, a 2,3-benzodiazepine, has been shown to have anxiolytic activity. However, in contrast to the widely used 1,4-benzodiazepines, it has no anticonvulsant, sedative or muscle relaxant effects. Tofisopam enhanced the behavioural actions of various dopaminergic drugs, both direct agonists, such as apomorphine (climbing behaviour in mice), and indirect agonists, such as (+)-amphetamine and amineptine (jumping behaviour in mice). Chronic treatment with lithium abolished the tofisopam-induced increase in the activity of these dopaminergic drugs. Thus tofisopam appears to induce acutely an increase in the sensitivity of central dopaminergic receptors which can be prevented by pretreatment with lithium.

Animals↗

Benzodiazepine agonist-type activity of raubasine, a rauwolfia serpentina alkaloid.

Raubasine produced a dose-related inhibition of specific [3H]flunitrazepam binding to rat brain membranes. Scatchard analyses revealed a significant increase in the affinity constant but no change in the number of binding sites, suggesting that raubasine acts as a competitive inhibitor. Raubasine also inhibited the in vivo binding of [3H]flunitrazepam to mouse brain sites. Behavioral studies showed raubasine to possess anticonvulsant properties against pentylenetetrazol- and bicuculline-induced convulsions in mice. These effects were inhibited by the benzodiazepine antagonist, Ro 15-1788. The results suggest that raubasine interacts directly at benzodiazepine sites with a benzodiazepine agonist-type activity.

Animals↗

Inhibition of androgen metabolism and binding by a liposterolic extract of "Serenoa repens B" in human foreskin fibroblasts.

We previously suggested [Steroids 33, (1979) 3; Steroids 37, (1981) 6] that cultured genital skin fibroblasts should prove useful for screening of potential antiandrogens in human and living target cells. "Serenoa repens" lipidic extract (S.R.E.) was recently reported (Br. J. Pharmacol., in press) to inhibit androgen action in animals. The present investigation was designed to study the antiandrogenicity of this compound in human cells: we therefore analyzed the effects of S.R.E. on the intracellular conversion of testosterone (T) to 5 alpha-reduced derivatives, and we investigated interaction of S.R.E. with the intracellular androgen-receptor complex. Since the chemical structure of the active component of S.R.E. is still unknown, results are expressed in U/ml (one unit is defined as the amount of S.R.E. required to inhibit 50% of the specific binding (IC50) of [3H]1881 to rat prostate cytosol). S.R.E. at different dilutions (5.7 to 28.6 U/ml) is added to culture media containing [3H]T or [3H]dihydrotestosterone (DHT) and incubated at 37 degrees C with cultured fibroblasts. 28.6 U/ml S.R.E. significantly alters the formation of DHT and strongly inhibits 3 ketosteroid reductase mediated conversion of DHT to 5 alpha-androstane-3 alpha, 17 beta-diol, characterized radiochemically by thin-layer chromatography. S.R.E. is a good competitor for the whole cell androgen receptor: 7.1 U/ml S.R.E. gives 50% inhibition of the binding of 2 X 10(-9) M [3H]DHT to its receptor. Competitive binding assays after cell fractionation indicate that S.R.E. is less potent in nuclear than in cytosol receptors. Sucrose gradient centrifugation of the radioactive cell lysate of fibroblasts demonstrates that 28.6 U/ml S.R.E. abolishes 70% of the 3.6 S receptor-complex radioactive peak. The present studies show that S.R.E. inhibits 5 alpha-reductase, 3-ketosteroid reductase and receptor binding of androgens in cultured human foreskin fibroblasts. As the search for the ideal antiandrogen continues, S.R.E. appears to be a new type of antiandrogenic compound as therapeutics for the treatment of benign prostatic hypertrophy, hirsutism and so forth.

Adult↗

Binding of Permixon, a new treatment for prostatic benign hyperplasia, to the cytosolic androgen receptor in the rat prostate.

The benign hyperplasia of the prostate is a manifestation of aging, involving the accumulation, within the gland, of dihydrotestosterone, the probable mediator of the hyperplasia. Binding studies were performed on the cytosolic androgenic receptor of the rat prostate using [3H]methyltrienolone as a ligand. The binding of [3H]methyltrienolone at 5 nM, was inhibited by various drugs, such as methyltrienolone and cyproterone acetate. Permixon, a liposterolic extract of the plant, Serenoa Repens B, inhibits competitively the binding to the cytosolic receptor of the rat prostate. Various vegetable and mineral oils, the plant steroid: beta sitosterol and the antiprostatic drug: Tadenan, were all found to be inactive. The antiprostatic activity of Permixon shown in animal studies and controlled clinical trials, may thus result from a direct action at the cytosolic receptor.

Animals↗

Characterization of dopamine autoreceptor and [3H]spiperone binding sites in vitro with classical and novel dopamine receptor agonists.

The specific D2 receptor agonist, LY 141865, but not the specific D1-receptor agonist, SK&F 38393, potently inhibited electrically evoked [3H]dopamine release from slices of the cat caudate. Similarly, LY 141865, but not SK&F 38393, inhibited [3H]spiperone binding to membranes of the cat caudate. The inhibition by dopamine receptor agonists of electrically evoked [3H]dopamine release was antagonized by the specific D2-receptor antagonist S-sulpiride. The inhibition of the electrically evoked release of [3H]dopamine by apomorphine was not, however, antagonized by the specific D1-receptor antagonist, bulbocapnine. Similarly, S-sulpiride but not bulbocapnine potently inhibited [3H]spiperone binding to membranes of the cat caudate. These results suggest that the dopamine autoreceptor modulating the depolarization-evoked release of [3H]dopamine, and the binding site of [3H]spiperone, are valid in vitro models for D2-dopamine receptors. Contrary to some previous reports, DPI was inactive in both in vitro dopamine receptor models. The IC50 values of a series of dopamine receptor agonists correlated very well in the two in vitro dopamine receptor models. One exception to this correlation was bromocriptine, which was more potent at [3H]spiperone binding sites than at the dopamine autoreceptor. With the exception of bromocriptine, all dopamine receptor agonists had one-hundred fold higher potency at the dopamine autoreceptor than at [3H]spiperone binding sites. [3H]Spiperone binding sites are localized primarily postsynaptic to dopamine terminals. Possible differences between the pharmacological properties of pre- and postsynaptic dopamine receptors should become apparent in the comparison of the two in vitro dopamine receptor models. However, the order of potency of dopamine receptor agonists with both in vitro models, dopamine autoreceptor and [3H]spiperone binding, was the same: N-n-propylnorapomorphine greater than TL-99 = 7-HAT greater than M-7 greater than Apomorphine greater than LY 141865.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Concomitant decrease in [3H]imipramine binding in cat brain and platelets after chronic treatment with imipramine.

Cats were treated chronically with imipramine (7.5 mg/kg i.p. twice daily for 20 days). Maximal [3H]dihydroalprenolol binding was reduced in the cerebral cortex of the treated animals whereas maximal [3H]spiroperidol binding to 5HT2-receptors was unchanged. Maximal [3H]imipramine binding was decreased to a similar extent in both hypothalamus and platelets of the same animals. This parallel decrease in [3H]imipramine binding in brain and platelets is discussed in relation to the lower [3H]imipramine binding found in platelets from untreated depressed patients as compared to those from control volunteers.

Animals↗

[3H-Imipramine binding to human platelets. A peripheral index in depressive syndromes (author's transl)].

3H-imipramine shows specific, high-affinity binding to human platelet sites. The characteristics of these specific binding sites are very similar to those previously described in the rat brain. The inhibitory effects of 11 tricyclic antidepressants on 3H-imipramine binding to human platelets were investigated. There was a significant correlation between the inhibition observed and the average therapeutic doses of antidepressants, which suggests that the binding sites may be involved in the mode of action of these drugs. The number of binding sites (Bmax) for 3H-imipramine was compared in 39 controls and in 37 hospital patients with untreated severe depressive syndrome and was found to be significantly smaller in depressed patients, without any modification of the affinity constant Kd. The significance of these findings and their changes under treatment are discussed.

Adult↗

High-affinity [3H]desipramine binding in the peripheral and central nervous system: a specific site associated with the neuronal uptake of noradrenaline.

The specific binding of [3H]desipramine to various brain regions and peripheral tissues of the rat was of high affinity, rapid and reversible. It was inhibited with high affinity only by tricyclic antidepressants and noradrenaline uptake blockers. There was a highly significant correlation between the potencies of a series of drugs for the inhibition of [3H]desipramine binding and for the inhibition of noradrenaline uptake. Substrates for the noradrenaline uptake system however inhibited the binding of [3H]desipramine only at very high concentrations. Postganglionic sympathetic denervation of the submaxillary gland and the heart both resulted in a pronounced decrease in [3H]desipramine binding sites, which paralleled the reduction in endogenous noradrenaline levels. High-affinity [3H]desipramine binding sites thus appear to be localised on noradrenergic nerve endings and are probably closely associated with the neuronal uptake system for noradrenaline.

Animals↗

High-affinity 3H-imipramine binding: a new biological marker in depression.

High-affinity binding of the tricyclic antidepressant drug, 3H-imipramine, has been demonstrated in the brain of various species including man. These specific binding sites have many of the characteristics to be expected for the specific site of action of a drug and appear to be associated with the neuronal uptake mechanism for serotonin. Chronic administration of tricyclic antidepressant drugs or the prolonged application of other antidepressant therapies, such as electroshock and sleep-deprivation, resulted in decreases in the density of 3H-imipramine binding sites. Apparently identical 3H-imipramine binding sites have been found in blood platelets from a variety of species including man. Clinical studies have shown that untreated severely depressed patients have a lower density of binding sites in their platelets than control volunteers. Longitudinal studies of these patients indicate that the density of 3H-imipramine binding sites tends not to change during treatment with tricyclic antidepressant drugs and the subsequent recovery from depression. 3H-imipramine binding in brain and platelets is proposed as a new biological marker in depression and as a useful research tool in biochemical and clinical pharmacological studies in affective disorders.

Binding Sites↗

gamma-Aminobutyric acid (GABA) receptor stimulation. II. Specificity of progabide (SL 76002) and SL 75102 for the GABA receptor.

Progabide and its immediate metabolite SL 75102 displace [3H]gamma-aminobutyric acid (GABA), [3H]muscimol and [3H]isoguvacine from their binding sites to membranes prepared from rat brain or human cerebellum and increase (SL 75102) [3H]flunitrazepam binding to rat cerebral cortex membranes. In contrast, these compounds have very weak or no effects on alpha or beta noradrenergic, histamine, muscarinic cholinergic or glycine receptors or on the [3H]imipramine or [3H]kainate binding sites. Neither progabide nor SL 75102 inhibit GABA synthesis, metabolism or uptake. Also, the uptake of norepinephrine, serotonin and dopamine into synaptosomes of cerebral regions is not affected by progabide. [3H]GABA release from substantia nigra slices is decreased by SL 75102 and progabide, in agreement with the hypothesis of a GABAergic autoreceptor controlling GABA release from its nerve terminals. These data suggest a specific agonist action of progabide and SL 75102 on GABA receptors.

Animals↗