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Biomedical subjects

A Doble

Publications and source records attributed to A Doble.

105 records · Page 6Linked to original sources

The benzodiazepine receptor in rat brain and its interaction with ethyl beta-carboline-3-carboxylate.

[3H]Ethyl beta-carboline-3-carboxylate ( [3H] beta-CCE) binds to a homogeneous population of recognition sites in rat whole brain membranes with high affinity. The [3H]beta-CCE binding is completely displaceable by low concentrations of a number of benzodiazepines with similar potencies found when using a 3H-benzodiazepine as the ligand. This suggests that the recognition sites for beta-CCE and the benzodiazepines are identical or that they are involved in a close interaction. The binding of [3H]beta-CCE does not obey simple mass-action kinetics. [3H]Flunitrazepam dissociation from its receptor population is biphasic, and different methods of initiation of this dissociation indicate that cooperative interactions take place within the receptor population. We conclude that the benzodiazepine receptor is a single entity that can exist in two conformations, the equilibrium between which may be controlled by some as yet unidentified factor.

Animals↗

GABA abolishes cooperativity between benzodiazepine receptors.

Benzodiazepine receptors on neuronal membranes demonstrate cooperative interactions; these can be studied by observing the rates at which [3H]flunitrazepam dissociates from the receptors at different levels of receptor occupancy. In this study, the effect of GABA on the rates of reaction of [3H]flunitrazepam with benzodiazepine receptors is examined. GABA increases the association rate and decreases the dissociation rate of this ligand. In the presence of GABA, it is no longer possible to observe cooperativity between benzodiazepine receptors.

Animals↗

6 -Hydroxydopamine decreases benzodiazepine but not GABA receptor binding in rat cerebellum.

The noradrenergic innervation to the cerebellum was lesioned by intracerebroventricular 6-hydroxydopamine and the effects on GABA and benzodiazepine receptors followed by radiolabelling experiments. This lesion produced a 20% decrease in benzodiazepine receptor labelling in the cerebellum with no change in the labelling of GABA receptors. This provides further evidence for a lack of identity between the GABA and benzodiazepine receptors.

Animals↗

Bicuculline-insensitive GABA receptors on peripheral autonomic nerve terminals.

The action of gamma-aminobutyric acid (GABA) and related compounds on rat isolated atria and mouse and guinea pig isolated vas deferens has been studied. GABA depressed the evoked but not basal release of [3H]noradrenaline from atria (IC50 4 micro M) and reduced the twitch responses of the vas deferens (IC50 3 micro M) in a dose-dependent manner. These depressant effects were not prevented by recognized GABA antagonists such as bicuculline and picrotoxin. Numerous GABA analogues, in particular 3-aminopropanesulphonic acid, failed to mimic the action of GABA. However, beta-p-chlorophenyl GABA (baclofen) was stereospecifically active. Other related beta-substituted derivatives were also active but to a lesser degree than GABA. Pretreatment of the vas deferens with the neuronal GABA uptake inhibitors 2,4-diaminobutyric acid or cis-3-aminocyclohexanecarboxylic acid potentiated the action of GABA. These data suggest the presence of a bicuculline-insensitive GABA receptor on autonomic nerve terminals. Preliminary observations indicate a lack of chloride ion dependence in the action of GABA at this site.

Animals↗

The non-passage of mycobacteria from Freund's complete adjuvant granuloma depots to arthritic joints.

The intra-articular injection of antigen after immunization with that antigen in FCA, the mycobacterial component of which consisted of live M. avium or dead 125I-M. tuberculosis, resulted in identical chronic disease, experimental allergic arthritis. In the former case live mycobacteria could be isolated from the subcutaneous granuloma which developed at the injection site, and from arthritic joints into which 10 mug wet weight (equivalent of 2 mug dry weight) had been injected with this antigen. However, no mycobacteria could be isolated from other inflamed or normal joints. With 125I-labelled mycobacteria radioactive counting and radioautography clearly showed M. tuberculosis present in the subcutaneous granuloma but not in either injected or uninjected joints. The quantity of mycobacteria which could have been detected if present was estimated to be less than 1 mug dry weight. These results strongly suggest that mycobacteria do not travel from the granuloma depot to the arthritic joint, and that any mechanism one may consider to explain the chronicity of EAA cannot involve the physical presence of mycobacteria in the knee joint.

Animals↗

Pharmacological properties and mechanism of action of the cyclopyrrolones.

We present the pharmacological properties of two cyclopyrrolones, zopiclone as a hypnotic and suriclone as an anxiolytic, and examine their mechanism of action. The effects of zopiclone on the amount of time spent at each vigilance level have been studied in freely moving rats. Zopiclone from 2.5 mg/kg i.p. extends the duration of slow wave sleep (SWS), concomitantly shortening the periods awake. This SWS inducing effect of zopiclone was more potent after 10 mg/kg i.p.; moreover, zopiclone did not depress REM sleep and no rebound of activity in wakefulness or REM sleep were observed the day after zopiclone treatment. In rats, at the cortical level, zopiclone increases the spectral energy in the delta band (0.5 to 4 hertz). This rise in energy appears at doses starting from 1.25 mg/kg p.o. and can also reach the fast frequencies (beta band: 12 to 16 hertz). This power spectrum is characteristic of a compound having tranquilizing-hypnotic potential. Taken together these EEG results corroborate the clinical studies. In man, zopiclone increased SWS, decreased SWS latency and respected sleep architecture in both healthy volunteers and insomniacs. This respect of sleep structure and the relative short duration of action of zopiclone minimized the residual effects seen upon waking (drowsiness, impairment of psychomotor performance). In the Geller-Seifter test, an operant conflict procedure, the minimal effective dose (MED) of suriclone in reversing the conflict-induced inhibition of drinking behavior was 2.5 mg.kg-1 p.o. in rats. Depression of unpunished responding is only seen at higher doses (20 mg.kg-1 p.o.).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Excitatory amino acid receptors and neurodegeneration.

This review describes recent advances in our understanding of the pharmacology of excitatory amino acid receptors, and the application of this knowledge to the unravelling of the aetiology of neurodegenerative diseases, and to their therapy. Ionotropic excitatory amino acid receptors can be divided into two large families, the NMDA receptor family, and the AMPA/kainate receptor family. Receptor cloning studies have shown there to be a large number of potential subtypes of receptors in both these families. Antagonists have been developed for the NMDA receptor which can interact with at least four independent drug recognition sites on the receptor. For the AMPA/kainate receptor, two classes of antagonist have so far been identified. Reasonably potent, selective and brain-penetrating antagonists now exist for virtually all these sites, and compounds inhibiting the release of glutamic acid presynaptically have also been identified, such as riluzole. The ability of glutamic acid to kill neurons (excitotoxicity) seems to be mediated, in most cases, by an interaction with NMDA receptors, leading to an uncontrollable rise in intracellular calcium concentrations and thence cell lysis and death. The setting-up of glutamatergic loops seems to be a key process in the maintenance, spread and amplification of neurodegenerative foci. The existence of such processes has been amply demonstrated in animal models of stroke, in which both NMDA and AMPA/kainate receptor antagonists have neuroprotective effects. Clinical trials are underway with NMDA receptor antagonists in stroke. Excitotoxic mechanisms probably also contribute to pathology in head trauma and viral encephalopathy. Ingestion of excitatory amino acids may play a role in neurological conditions of dietary aetiology, such as neurolathyrism and domoic acid intoxication. For chronic neurodegenerative diseases, the role of excitatory amino acids is much less clear, although there is some evidence for the existence of excitotoxic mechanisms in amyotrophic lateral sclerosis. Evidence from animal models suggests that drugs that block glutamatergic neurotransmission might be beneficial in Parkinson's disease, Huntington's chorea and amyotrophic lateral sclerosis, but the relevance of these animal models to the human pathology is not clear. However, preliminary clinical results suggest riluzole to be efficacious in prolonging survival in amyotrophic lateral sclerosis, and certain weak NMDA receptor antagonists are currently used in the treatment of Parkinson's disease. The next few years could witness a breakthrough in the treatment of neurological conditions as drugs that interfere with glutamatergic transmission become available for clinical use.

AIDS Dementia Complex↗