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Biomedical subjects

M Bös

Publications and source records attributed to M Bös.

15 recordsLinked to original sources

[Cerebellar syndrome, exophthalmos and secondary hypogonadism in Erdheim-Chester disease].

We present a 50-year-old patient with a slowly progressive cerebellar syndrome, left-sided exophthalmos, secondary hypogonadism, and multiple pleomorphous skin alterations. The diagnosis of Erdheim-Chester disease was established by the radiological detection of a left-sided retrobulbar space-occupying mass, a hypophysial stalk lesion, alterations in both cerebellar hemispheres, retroperitoneal imbibition, osteolytic/osteosclerotic changes in the metaphysis and diaphysis of the long bones, and a skin biopsy with histological detection of a non-Langerhans-cell histiocytosis. The etiology of the Erdheim-Chester disease is unknown. Cerebral manifestations of this rare disease have been documented in only a very few cases. Whereas the extracranial alterations are due to pathologic histiocyte proliferation, cerebellar changes are considered to be the result of demyelinisation or infiltration of xanthogranulomas.

Biopsy↗

5-HT(6) receptor antagonists: lead optimisation and biological evaluation of N-aryl and N-heteroaryl 4-amino-benzene sulfonamides.

RO-04-6790 (6a) has been identified in a random screen for 5-HT(6) receptor antagonists. In a medicinal chemistry optimisation program a series of analogs comprising N-heteroaryl- and N-arylbenzenesulfonamides have been synthesised and investigated for their binding affinity. Compounds with a logD profile indicative of brain penetration have been subjected to in vivo testing for reversal of a scopolamine-induced retention deficit in a passive avoidance paradigm.

Animals↗

The putative 5-ht6 receptor: localization and function.

Until recently, the majority of actions of the neurotransmitter 5-hydroxytryptamine (5-HT) were generally believed to be mediated by members of the 5-HT1, 5-HT2, 5-HT3 and 5-HT4 receptor families. The application of molecular cloning techniques has revealed the existence of gene products encoding several novel, putative 5-HT receptors for which little or no prior pharmacological or functional data presently exist. The present challenge to pharmacologists is to determine the physiological relevance of these gene products, establish whether or not they function as endogenous receptors, find selective agents and determine potential therapeutic uses of these compounds. Here we review work detailing the cloning and characterization of the recombinant 5-ht6 receptor, its distribution and evidence for functional responses mediated by naturally occurring 5-ht6 receptors.

Animals↗

Characterization of Ro 04-6790 and Ro 63-0563: potent and selective antagonists at human and rat 5-HT6 receptors.

1. This study describes the in vitro characterization of two potent and selective 5-HT6 receptor antagonists at the rat and human recombinant 5-HT6 receptor. 2. In binding assays with [3H]-LSD, 4-amino-N-(2,6 bis-methylamino-pyrimidin-4-yl)-benzene sulphonamide (Ro 04-6790) and 4-amino-N-(2,6 bis-methylamino-pyridin-4-yl)-benzene sulphonamide (Ro 63-0563) had mean pKi values +/-s.e.mean at the rat 5-HT6 receptor of 7.35+/-0.04 and 7.83+/-0.01, respectively and pKi values at the human 5-HT6 receptor of 7.26+/-0.06 and 7.91+/-0.02, respectively. 3 .Both compounds were found to be over 100 fold selective for the 5-HT6 receptor compared to 23 (Ro 04-6790) and 69 (Ro 63-0563) other receptor binding sites. 4. In functional studies, neither compound had any significant effect on basal levels of cyclicAMP accumulation in Hela cells stably expressing the human 5-HT6 receptor, suggesting that the compounds are neither agonists nor inverse agonists at the 5-HT6 receptor. However, both Ro 04-6790 and Ro 63-0563 behaved as competitive antagonists with mean +/-s.e.mean pA2 values of 6.75+/-0.07 and 7.10+/-0.09, respectively. 5. In rats habituated to observation cages, Ro 04-6790 produced a behavioural syndrome similar to that seen following treatment with antisense oligonucleotides designed to reduce the expression of 5-HT6 receptors. This behavioural syndrome consisted of stretching, yawning and chewing. 6. Ro 04-6790 and Ro 63-0563 represent valuable pharmacological tools for the identification of 5-HT6 receptors in natural tissues and the study of their physiological function.

Adenylyl Cyclases↗

Involvement of 5-HT6 receptors in nigro-striatal function in rodents.

4-Amino-N-(2,4 bis-methylamino-pyrimidin-4-yl) benzene sulphonamide (Ro 04-6790) is a potent, selective and competitive antagonist for the 5-HT6 receptor which can be detected in the cerebro-spinal fluid (CSF) of rats following intraperitoneal administration. Since 5-HT6 receptor mRNA and 5-HT6 receptor-like immunoreactivity have been shown to be present in the striatum, the purpose of the present study was to evaluate the effect of 5-HT6 receptor antagonism on haloperidol- and SCH 23390-induced catalepsy in mice and on the turning behaviour of rats with unilateral 6-hydroxydopamine (6-OHDA) lesions of the medial forebrain bundle. Ro 04-6790 (3, 10 and 30 mg kg(-1) i.p.) did not induce catalepsy and had no effect on catalepsy induced by either haloperidol or SCH 23390. Ro 04-6790 (3, 10 and 30 mg kg(-1) i.p.) did not itself induce rotational behaviour in rats with unilateral 6-hydroxydopamine (6-OHDA) lesions of the medial forebrain bundle nor did it affect the rotational behaviour induced by either L-Dopa or amphetamine. 5-HT6 receptor antagonism inhibited the rotational behaviour of 6-OHDA lesioned rats induced by treatment with the muscarinic antagonists scopolamine and atropine. The data support earlier conclusions from experiments with antisense oligonucleotides that the 5-HT6 receptor is involved in the control of acetylcholine neurotransmission in the rat brain.

Adrenergic Agents↗

Suppression of mutagenic activity of a series of 5HT2c receptor agonists by the incorporation of a gem-dimethyl group: SAR using the Ames test and a DNA unwinding assay.

A positive result in the Ames test is generally taken as a strong indication for a genotoxic (i.e. DNA damaging) property of the test compound, often sufficient to cause termination of its development as a new therapeutic agent. A number of serotonin receptor ligands have been tested for their mutagenic potential in the Ames assay at an early stage of development. For several compounds increases in the number of revertant colonies were observed in strain TA1537. Consequently, structure-activity relationship investigations were undertaken to search for compounds without mutagenic liability. All compounds are three ringed heterocyclic structures consisting of a benzene ring, a central (generally non-aromatic) 5- or 6-membered ring and a pyrrole or pyrazole ring. Using a gel shift assay we provide evidence that the observed genotoxic effects are strongly influenced by the intercalating properties of the compounds. The highest mutagenic response was seen with a compound possessing a central aromatic ring. The mutagenic activity of the naphthaleno derivatives appears to be stronger when compared with the indeno compounds, probably because of the less curved structure. Dimethyl substitution of the indeno substructure reduces the intercalating ability of the compounds and leads to loss of mutagenic activity. Pyrazole analogues of both indeno and naphthaleno structures appear to produce stronger mutagenic responses than the pyrrole derivatives.

Animals↗

The 5-hydroxytryptamine6 receptor-selective radioligand [3H]Ro 63-0563 labels 5-hydroxytryptamine receptor binding sites in rat and porcine striatum.

Ro 63-0563 [4-amino-N-(2,6 bis-methylamino-pyridin-4-yl)-benzene sulfonamide] is a high affinity 5-hydroxytryptamine6 (HT6) receptor antagonist with more than 100-fold selectivity for the 5-HT6 receptor compared with 69 other receptors and binding sites. The present study describes the properties of [3H]Ro 63-0563, the first selective 5-HT6 receptor radioligand. Specific binding of [3H]Ro 63-0563 (nonspecific binding defined in the presence of 10 microM methiothepin) to recombinant rat and human 5-HT6 receptors was saturable, rapid, and reversible with equilibrium dissociation constants (Kd) of 6.8 nM and 4.96 nM, respectively. The pharmacological profile of the rat 5-HT6 receptor labeled with [3H]Ro 63-0563 (methiothepin > D-lysergic acid diethylamide > clozapine approximately Ro 63-0563 > lisuride > ergotamine approximately Ro 04-6790 > 5-HT > amitriptyline approximately metergoline approximately mianserin approximately ritanserin > methysergide > mesulergine) was similar to that obtained by using either [3H]D-lysergic acide diethylamide or [3H]5-HT as radioligand. In equilibrium binding studies with rat striatal membranes, [3H]Ro 63-0563 labeled a single binding site with Kd and Bmax values of 11. 7 nM and 175 fmol/mg protein, respectively. In porcine striatal membranes, [3H]Ro 63-0563 also labeled a single binding site with Kd and Bmax values of 8.0 nM and 130 fmol/mg protein, respectively. The affinities of 14 5-HT6 receptor ligands at this binding site were similar to those found for the recombinant rat and human 5-HT6 receptor, which suggested the presence of 5-HT6 receptors in porcine striatum.

Aminopyridines↗

5-HT2C receptor agonists: pharmacological characteristics and therapeutic potential.

In vitro, (S)-2-(chloro-5-fluoro-indol-1-yl)-1-methylethylamine 1:1 C4H4O4 and (S)-2-(4,4,7-trimethyl-1,4-dihydro-indeno[1, 2-b]pyrrol-1-yl)-1-methylethylamine 1:1 C4H4O4 exhibited high-affinity binding to the serotonin2C (5HT2C) receptors and stimulated turnover of inositol 1,4,5-triphosphate. Affinity to several of the other 5-HT receptor subtypes and to numerous nonserotonergic receptors was much lower. In rats, both compounds elicited behavioral signs of 5-HT2C receptor agonism but not 5-HT2A receptor agonism. Hypomotility induced in rats by high doses of these compounds was reversed by the 5-HT2C receptor antagonist N-(2-naphthyl)-N'-(3-pyridyl)-urea 1:1 HCI. In addition, these compounds were active in tests used to demonstrate anticompulsive effects: reducing schedule-induced polydipsia in rats (prevented by the 5-HT2C/2B receptor antagonist N-(1-methyl-5'-indolyl)-(3-pyridyl)urea 1:1 HCl, reversing increased scratching induced with 8-hydroxy-dipropylaminotetralin 1:1 HCl in squirrel monkeys (no tolerance developed), decreasing responding in the marble-burying task in mice, and decreasing excessive eating of palatable food in rats. In contrast to these compounds, fluoxetine was much less potent, and in some tasks less efficacious, in reducing excessive behavior in these models. These two 5-HT2C receptor agonists do not show anxiogenic effects in the plus-maze in rats. (S)-2-(4,4,7-trimethyl-1,4-dihydro-indeno[1, 2-b]pyrrol-1-yl)-1-methylethylamine 1:1 C4H4O4 reduced the olfactory bulbectomy-induced passive avoidance impairment in rats, a result that indicates antidepressant potential. Similarly, in the differential-reinforcement-of-low rate 72-s operant schedule task in rats, (S)-2-(chloro-5-fluoro-indol-1-yl)-1-methylethylamine 1:1 C4H4O4 increased (and (S)-2-(4,4,7-trimethyl-1,4-dihydro-indeno[1, 2-b]pyrrol-1-yl)-1-methylethylamine 1:1 C4H4O4 showed a tendency to increase) total reinforcements received, which is suggestive of antidepressant activity. The electroencephalography defined sleep-waking pattern in rats produced by these two 5-HT2C agonists, as well as fluoxetine, included increased quiet-waking and decreased rapid-eye-movement sleep, which is characteristic of antidepressant drugs. These results suggest that 5-HT2C receptor agonism is associated with therapeutic potential in obsessive compulsive disorder and depression.

Animals↗

Novel agonists of 5HT2C receptors. Synthesis and biological evaluation of substituted 2-(indol-1-yl)-1-methylethylamines and 2-(indeno[1,2-b]pyrrol-1-yl)-1-methylethylamines. Improved therapeutics for obsessive compulsive disorder.

The syntheses of a series of substituted 2-(indol-1-yl)-1-methylethylamines and 2-(indeno[1,2- b]pyrrol-1-yl)-1-methylethylamines are reported. The binding affinities of the compounds at 5HT2C and 5HT2A receptors (79% homology in the transmembrane domain) were determined. The ligands displayed selectivity for 5HT2C receptors relative to 5HT2A receptors. Compounds were functionally characterized both in vitro and in vivo as 5HT2C receptor agonists. 5f, 5l, 5n, 5o, 5q, 14c, 14f, 14k, and 14m exhibited anticompulsive activity in an animal model of obsessive compulsive disorder.

3T3 Cells↗

O-methylasparvenone, a nitrogen-free serotonin antagonist.

O-Methylasparvenone (1) and asparvenone (2) were isolated from an Aspergillus parvulus Smith broth in a microbial screening for 5-HT2C ligands and found to be 5-HT2C antagonists. They represent the first nitrogen-free serotonin ligands. The absolute configuration of 1 was determined to be S by X-ray analysis of the corresponding Mosher-ester. A short and efficient synthesis of rac-1 was developed. This protocol was applied to the synthesis of derivatives of 1 and a structure-affinity relationship was established.

3T3 Cells↗

5HT2C receptor agonists exhibit antidepressant-like properties in the anhedonia model of depression in rats.

Potential antidepressant properties of preferential 5HT2C receptor agonists were investigated in stress-induced anhedonia, a validated simulation of depression. This simulation evaluates the hedonic state of stressed rats by recording variations in self-stimulation threshold measured before, during, and after exposure to intermittent, unpredictable, mild stressors. This stress regimen gradually elevates self-stimulation threshold, suggesting the development of an anhedonic state. In stressed animals, chronic treatment with the preferential 5HT2C receptor agonists Ro 60-0175 and Ro 60-0332 (3 mg/kg i.p. b.i.d.) prevented the loss of sensitivity to reward. Similarly, when stressed anhedonic animals were curatively treated with Ro 60-0175 (3 mg/kg i.p. b.i.d.), the stress-induced anhedonia was gradually reversed. These results suggest a role for 5HT2C receptors in some aspects of depression, and potential antidepressant properties for selective 5HT2C receptor agonists. Such compounds may offer an innovative approach to the treatment of mood disorders.

Animals↗

Characterization of the binding of [3H]Ro 41-1049 to the active site of human monoamine oxidase-A.

The novel reversible and selective inhibitor of monoamine oxidase-A (MAO-A) Ro 41-1049 [N-(2-aminoethyl)-5-(m-fluorophenyl)-4-thiazole carboxamide HCl] shows inhibition characteristics similar to those of the structurally related reversible MAO-B inhibitors Ro 16-6491 and Ro 19-6327. In the present study, tritiated Ro 41-1049 was used as a high affinity ligand to study the binding characteristics of this inhibitor to MAO-A and its interactions with the enzyme. An homogeneous population of high affinity binding sites for [3H]Ro 41-1049 was found in membrane preparations from human frontal cortex and placenta (Kd = 16.5 +/- 1.4 and 64.4 +/- 19.2 nM, respectively). In frontal cortex the Bmax value for [3H]Ro 41-1049 (2.6 +/- 0.4 pmol/mg of protein) was about one third of the Bmax calculated for the MAO-B-selective ligand [3H]Ro 16-6491. The density of [3H]Ro 41-1049 binding sites in human placenta varied greatly in the different tissue samples investigated, showing an average Bmax of 101.7 +/- 36.5 pmol/mg of protein. Apparent binding equilibrium was reached after 1 hr of incubation at 37 degrees. At this temperature the binding was reversible, with a dissociation t 1/2 of about 35 min. At lower temperatures the radioactivity dissociation was much slower. Among the various drugs tested, only inhibitors of MAO-A were able to effectively prevent [3H]Ro 41-1049 specific binding. As previously reported for the MAO-B ligands [3H]Ro 16-6491 and [3H]Ro 19-6327, the analysis of the membrane-bound radioactivity showed that [3H]Ro 41-1049 was entirely recovered in the form of its aldehyde derivative, indicating that Ro 41-1049 was deaminated by MAO-A. The existence of a Ro 41-1049 adduct reversibly bound to the enzyme active site might explain the inhibition mechanism of this compound. The exposure of the radioligand-enzyme complex to NaBH3CN at pH 4.5 caused the irreversible covalent incorporation of about 70% of the specifically bound radioactivity into a 60-kDa polypeptide. This incorporation was dependent on the pH and on the amount of NaBH3CN added. The presence of MAO-A- but not MAO-B-selective inhibitors prevented the covalent incorporation of [3H]Ro 41-1049. The present results indicate that [3H]Ro 41-1049 is incorporated into a subunit of MAO-A, in the presence of NaBH3CN, and modifies a protein domain that is essential for the enzyme activity.(ABSTRACT TRUNCATED AT 400 WORDS)

Affinity Labels↗

Resolution, EPC-syntheses, absolute stereochemistry, and pharmacology of the (S)-(+)- and (R)-(-)-isomers of the MAO-A inhibitor tetrindole hydrochloride.

Resolution of (RS)-tetrindole (3) and enantioselective reductions of the imine 7 yielded (S)-(+)-(4) and (R)-(-)-tetrindole (5). The absolute stereochemistry of 4 was established by X-ray analysis of the corresponding Mosher amide 6. From in vitro as well as in vivo data (MAO-inhibition, levels of monoamines and their respective metabolites in rat brain), 4 was identified as the eutomer.

Animals↗