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2-Oxo-2H-Pyrimido[2,1-b]benzothiazoles inhibit brain benzodiazepine receptor binding in vitro.

2-Oxo-2H-pyrimido[2,1-b]benzothiazole derivatives were found to inhibit the in vitro binding of (3)H-Ro 15-1788 ((3)H-flumazenil) to rat cortical benzodiazepine receptors with IC(50) values in the range of 0.7-13 micromol/l. The most potent compound, 2-oxo-4-phenyl-2H-pyrimido[2,1-b]- benzothiazole showed a similar potency to inhibit (3)H-Ro 15-1788 binding to membrane preparations of rat brain cortex, cerebellum and hippocampus as well as to various subunit combinations of recombinant human gamma-aminobutyric acid(A)/benzodiazepine receptors. Scatchard plot analysis showed that 2-oxo-4-phenyl-2H-pyrimido[2,1-b]benzothiazole is a competitive inhibitor of (3)H-Ro 15-1788 binding to rat brain cortical membrane preparations.

Animals↗

Gamma-aminobutyric acid-induced contraction of the dog basilar artery.

gamma-Aminobutyric acid (GABA) produced a biphasic action, that is, a relaxation followed by a contraction in the isolated dog basilar artery. Repeated applications of each concentration of GABA (10(-6), 10(-5), 10(-4), 10(-3) M) at regular intervals under resting conditions caused a stepwise increase in the contractile response. Marked reproducible contractile responses occurred (ED50: 1.3 X 10(-5) M), after at least 8-10 applications. The GABA-induced contraction as well as relaxation was blocked by bicuculline and picrotoxin. Pretreatment with inhibitors of prostaglandin synthesis such as aspirin (3 X 10(-6) to 3 X 10(-4) M) and indomethacin (3 X 10(-6) M) reduced the contractile response to GABA in an irreversible manner and without affecting the relaxation induced by GABA. These inhibitors increased the resting tone but reduced the tone in strips subjected to repeated applications of GABA. 15-Hydroperoxyarachidonic acid at concentrations of 1 X 10(-6) and 1 X 10(-5) M also attenuated the contractile response to GABA in a dose-dependent fashion. These observations suggest that GABA may modulate the contractile effect by inducing the production of contraction-causing prostaglandin(s) mediated through GABA receptors and/or by some as yet undefined mechanism.

Animals↗

Validation of GABA(A) receptor subtypes as potential drug targets by using genetically modified mice.

A key issue for drug discovery in the post genomic era is target validation. This is particularly important when considering the CNS, where currently the majority of drug targets are neurotransmitter receptors that are known to exist as multi-gene families. The GABAergic system, which is the major inhibitory neurotransmitter system in the CNS, is no exception in that respect. The GABA(A) receptors, which are the site of action of a number of clinically used drugs such as benzodiazepines and barbiturates, exist in a large gene family. Existing drugs mediating their effects through the GABA(A) receptor are generally non-selective, i.e. will act at several subtypes of that receptor family. Thus, if we are both to refine existing therapeutic approaches, and develop novel approaches, a key question is to define which subtype(s) of the GABA(A) receptor family we should target; which will mediate the beneficial effects of a drug, and which could be responsible for unwanted side effects? One of the tools, which has been developed over the last decade to elucidate the function of a given gene, is the generation and analysis of gene-targeted mice. This review will summarize progress on identifying individual GABA(A) receptor subtypes as potential drug targets by using genetically modified mice.

Anesthetics↗

Different sensitivity to ethanol in alcohol-preferring sP and -nonpreferring sNP rats.

BACKGROUND AND OBJECTIVES: Clinical research has proposed that initial sensitivity to ethanol may be negatively correlated with levels of subsequent ethanol intake; consistently, alcohol-preferring P rats were found to be less sensitive to the ataxic and sedative/hypnotic effects of ethanol than -nonpreferring NP rats. The present study investigated the initial sensitivity to the ataxic and sedative/hypnotic effects of ethanol and to the sedative/hypnotic effects of pentobarbital and diazepam in selectively bred Sardinian alcohol-preferring sP and -nonpreferring sNP rats. METHODS: In experiment 1, time to lose (onset) and regain (sleep time) the righting reflex after the acute intraperitoneal (ip) administration of 3.0 and 3.5 g/kg ethanol were measured in sP and sNP rats. In experiment 2, sP and sNP rats were required to perform a motor coordination task on a Rota-Rod after the acute intragastric administration of 2.0, 2.5, and 3.0 g/kg ethanol. Experiment 3 assessed onset and sleep time in sP and sNP rats after the acute injection of pentobarbital (40 mg/kg; ip) and diazepam (15 and 20 mg/kg; ip). RESULTS: In experiment 1, sP rats took shorter times to lose the righting reflex and regained this reflex over longer periods of time and at lower blood ethanol levels than sNP rats. In experiment 2, ethanol affected motor coordination to a greater extent in sP than sNP rats. In contrast, results from experiment 3 showed that sP and sNP rats were not differentially sensitive to the sedative/hypnotic effects of pentobarbital and diazepam. CONCLUSIONS: The results of experiments 1 and 2 suggest that sP rats possess a genetically determined, greater sensitivity to the motor impairing and sedative/hypnotic effects of ethanol than sNP rats. Although caution should be adopted before hypothesizing any comparison to humans, these results may feature sP rats as an experimental model of those subsets of human alcoholics with initial high sensitivity to ethanol challenges. Finally, the results of experiment 3 suggest a minimal involvement of the benzodiazepine and barbiturate recognition sites in the differential sensitivity to ethanol of sP and sNP rats.

Alcohol Drinking↗

Antinociceptive activity of a neurosteroid tetrahydrodeoxycorticosterone (5alpha-pregnan-3alpha-21-diol-20-one) and its possible mechanism(s) of action.

The present study investigates the effects of a neurosteroid tetrahydrodeoxycorticosterone (5alpha-pregnan-3alpha-21-diol-20-one) in two experimental models of pain sensitivity in mice. Tetrahydrodeoxycorticosterone (2.5, 5 mg/kg, i.p.) dose dependently decreased the licking response in formalin test and increased the tail flick latency (TFL) in tail flick test. Bicuculline (2 mg/kg, i.p.), a GABA(A) receptor antagonist blocked the antinociceptive effect of tetrahydrodeoxycorticosterone in TFL test but failed to modulate licking response in formalin test. Naloxone (1 mg/kg, i.p.), an opioid antagonist effectively attenuated the analgesic effect of tetrahydrodeoxycorticosterone in both the models. Tetrahydrodeoxycorticosterone pretreatment potentiated the antinociceptive response of morphine, an opioid compound and nimodipine, a calcium channel blocker in formalin as well as TFL test. Thus, tetrahydrodeoxycorticosterone exerts an analgesic effect, which may be mediated by modulating GABA-ergic and/or opioid-ergic mechanisms and voltage-gated calcium channels.

Analgesics↗

Chronic neurosteroid treatment decreases the efficacy of benzodiazepine ligands and neurosteroids at the gamma-aminobutyric acidA receptor complex in mammalian cortical neurons.

The effect of chronic 5 alpha-pregnane-3 alpha-ol-20-one (5 alpha 3 alpha; neurosteroid) treatment was investigated on the gamma-aminobutyric acid (GABA), 5 alpha 3 alpha, and ligands that bind to the benzodiazepine (BZ) site on GABA-induced [36Cl-]influx in intact cultured mammalian cortical neurons. Chronic 5 alpha 3 alpha treatment (1 microM; 5 days) decreased the efficacy of GABA, because its Emax (maximal response) value was decreased, whereas the EC50 (potency) value was not altered. Chronic 5 alpha 3 alpha treatment also decreased the Emax value of BZ agonists like diazepam to potentiate GABA-induced [36Cl-] influx, and decreased the -Emax (maximal inhibitory response) value of inverse agonists like methyl-6,7-dimethoxy-4-ethyl-beta-carboline-3'-carboxylate to inhibit GABA-induced [36Cl-] influx, whereas not altering their EC50/IC50 values. Furthermore, chronic 5 alpha 3 alpha treatment decreased the Emax value of 5 alpha 3 alpha to potentiate GABA-induced [36Cl-] influx, without altering its EC50 value. The decreased efficacy of GABA and 5 alpha 3 alpha were reversed by concomitant exposure of the neurons to R 5135 (3 alpha-hydroxy-16-imino-5 beta-17-androstan-11-one; a competitive GABA antagonist). Taken together, these findings suggest that chronic 5 alpha 3 alpha treatment produces decreased efficacy of GABA, ligands that bind to the BZ site, and neurosteroids at the GABAA-BZ receptor complex. The decreased efficacy is heterologous in nature and involves mediation via the GABAA receptor site.

Animals↗

Studies on annelated 1,4-benzothiazines and 1,5-benzothiazepines. X--Synthesis and inhibition of benzodiazepine receptor binding of new 1,4-thiazine and 1,5-thiazepine polycondensed heterocycles with steroidal structure.

Some naphtho[1,2,-b]-s-triazolo[4,3-d]-1,4-thiazine and 1,5-thiazepine and s-triazolo[4', 3'-4,5]-1,4-thiazino[3,2-c]quinoline derivatives have been synthesized and tested for their ability to displace [3H]RO 15-1788 binding from bovine brain membranes. Several compounds showed moderate binding affinity for the benzodiazepine receptor.

Animals↗

Effects of high doses of diazepam on carrageenin-induced paw edema in rats.

Benzodiazepine (BDZ) receptor sites play a relevant role in immune/inflammatory reactions. Acute BDZ treatments were shown not only to suppress cell proliferation in rat thymus but also to decrease TNF-alpha, IL-1 and IL-6 release from adult mouse macrophages. In the present investigation the effects of acute (10.0 and 20.0 mg/kg) and long-term (10.0 mg kg-1 day-1, for 21 days) diazepam treatment on carrageenin-induced paw edema were studied in rats. The results showed that acute treatment with high doses of diazepam decreased paw edema volume in a dose-dependent manner, and this effect was observed as early as 1 h after the administration of the 20.0 mg/kg dose and continued until the last measurement was performed (8 h). In contrast, long-term diazepam administration did not modify the phlogistic-induced edema. Taken together, these data show that 1) acute diazepam treatment with high doses decreases the volume of the acute inflammatory paw edema developed by the organism as a response to carrageenin-induced injury, and 2) long-term diazepam treatment induces tolerance to this effect. These results are discussed in the light of a possible effect of diazepam on the components of the rat cellular and humoral immune/inflammatory reaction such as T lymphocytes and/or interleukins.

Animals↗

Ethyl 2-(4-bromophenyl)-1-(2,4-dichlorophenyl)-1H-4-imidazolecarboxylate is a novel positive modulator of GABAA receptors.

Ethyl 2-(4-bromophenyl)-1-(2,4-dichlorophenyl)-1H-4-imidazolecarboxylate (TG41) enhanced the binding both of gamma-aminobutyric acid (GABA) and of flunitrazepam to rat cerebral cortical membranes. Electrophysiological recordings from Xenopus oocytes expressing various recombinant GABA(A) receptor subtypes revealed that TG41 enhanced the function of all receptor subunit combinations tested. The potency of TG41 at receptors containing alpha1, beta2, and gamma2L subunits was greater than that of alphaxalone, etomidate, propofol, or pentobarbital. The potency of TG41 was also greater at receptors containing alpha1 or alpha2 subunits than at those containing alpha4 and it was markedly higher at receptors containing beta2 or beta3 subunits than at those containing beta1. This drug induced a reversible loss of the righting reflex in Xenopus tadpoles and it elicited hypnosis (5 mg/kg) after intravenous administration in rats. These results indicate that the pharmacological profile of TG41 is similar to that of general anesthetics which potentiate the activity of GABA(A) receptors containing the beta2 or beta3 subunit.

Animals↗

Multiple NPY receptors coexist in pre- and postsynaptic sites: inhibition of GABA release in isolated self-innervating SCN neurons.

Although NPY has been shown to influence the action of many transmitters in the brain, modulation of GABA, the primary inhibitory transmitter, has not been detected with electrophysiology. Using whole-cell patch-clamp recording, we found that NPY has a large modulatory effect on GABAergic neurons of the suprachiasmatic nucleus (SCN) that act as the circadian clock in the mammalian brain. NPY, acting at both Y1- and Y2-like receptors, reduced the frequency of spontaneous miniature inhibitory postsynaptic currents while having little effect on the postsynaptic GABA receptors, suggesting a presynaptic mechanism of NPY action. In single self-innervating neurons, application of either Y1 or Y2 agonists to the same neuron significantly inhibited the evoked autaptic GABA release. The use of single-neuron microcultures has allowed the demonstration that a single peptide, NPY, has two different receptors coded for by different genes in the same axon terminal. The Y1 and Y2 agonists also inhibited whole-cell calcium currents when applied to the same neuron, indicating a coexistence of Y1- and Y2-like receptors in the postsynaptic cell body. The self-innervating cell model we use here may be applicable generally for discriminating presynaptic versus postsynaptic actions of other neurotransmitters and neuromodulators and locating their subtype receptors.

Animals↗

Decreased plasma and cerebrospinal fluid content of neuroactive steroids in Parkinson's disease.

The levels of the neuroactive steroids allopregnanolone (THP) and 5alpha-dihydroprogesterone (DHP) were quantified in the plasma of 11 (group 1) and in the liquor of 12 (group 2) Parkinson's disease (PD) patients using a gas-chromatographic/mass-spectrometric method. When compared with controls, both groups showed a significant decrease in DHP and THP concentrations. These decreases could be a useful marker of PD. Moreover, in view of the importance of GABA-ergic transmission to substantia nigra (SN) neurons and GABA-ergic modulation exerted by the two neuroactive steroids, our data indicate a global dysregulation of the SN GABA-ergic system in PD patients. Moreover, a lack of neuroprotective factors (i. e., GDNF, BDNF), promoted by DHP, may contribute to dopaminergic cell death.

Aged↗

Novel gamma-hydroxybutyric acid (GHB) analogs share some, but not all, of the behavioral effects of GHB and GABAB receptor agonists.

gamma-Hydroxybutyrate (GHB), a therapeutic for narcolepsy and a drug of abuse, has several mechanisms of action that involve GHB and GABA(B) receptors, metabolism to GABA, and modulation of dopaminergic signaling. The aim of these studies was to examine the role of GHB and GABA(B) receptors in the behavioral effects of GHB. Three approaches were used to synthesize GHB analogs that bind selectively to GHB receptors and are not metabolized to GABA-active compounds. Radioligand binding assays identified UMB86 (4-hydroxy-4-napthylbutanoic acid, sodium salt), UMB72 [4-(3-phenylpropyloxy)butyric acid, sodium salt], UMB73 (4-benzyloxybutyric acid, sodium salt), 2-hydroxyphenylacetic acid, 3-hydroxyphenylacetic acid (3-HPA), and 4-hydroxy-4-phenylbutyric acid as compounds that displace [(3)H]NCS-382 [5-[(3)H]-(2E)-(5-hydroxy-5,7,8,9-tetrahydro-6H-benzo[a][7] annulen-6-ylidene) ethanoic acid] from GHB receptors at concentrations that do not markedly affect [(3)H]GABA binding to GABA(B) receptors. In rats and pigeons, GHB discriminative stimulus effects were not mimicked or attenuated by UMB86, UMB72, or 3-HPA up to doses that decreased responding. In mice, GHB, GHB precursors (gamma-butyrolactone and 1,4-butanediol) and GABA(B) receptor agonists [SKF97541 [3-aminopropyl(methyl)phosphinic acid hydrochloride] and baclofen] dose-dependently produced hypolocomotion, catalepsy, ataxia, and loss of righting. The GABA(B) receptor antagonist CGP35348 (3-aminopropyl(diethoxymethyl)phosphinic acid) attenuated catalepsy and ataxia that was observed after GHB and GABA(B) receptor agonists SKF97541 and baclofen. UMB86, UMB72, UMB73, and 3-HPA, like GHB, produced hypolocomotion, ataxia, and loss of righting; however, catalepsy was never observed with these compounds, which is consistent with the cataleptic effects of GHB being mediated by GABA(B) receptors. Ataxia that was observed with UMB86, UMB72, UMB73, and 3-HPA was not antagonized by CGP35348, suggesting that ataxia induced by these analogs is not mediated by GABA(B) receptors and might involve GHB receptors.

Animals↗

A putative receptor for neurosteroids on the GABAA receptor complex: the pharmacological properties and therapeutic potential of epalons.

A critical mass of evidence now supports the existence of a novel class of neuroactive steroids. These steroids are devoid of any known steroid hormone activity and have high specificity for the gamma-aminobutyric acidA receptor complex (GRC), which is a ligand-gated chloride channel that mediates the inhibitory action of the neurotransmitter gamma-aminobutyric acid (GABA). The action of these steroids at the GRC is to allosterically potentiate the effect of GABA on chloride channel conductance through a unique site on the GRC. These neuroactive steroids have been termed the epalons, a shortened form of epiallopregnanolone, an endogenous metabolite of progesterone with potent actions at the GRC. Putative epalon receptors may be unique sites on the GRC that mediate the effects of epalons on GABA-gated channel function. The pharmacological profile of the epalons is consistent with those of other positive modulators of GABA action (e.g., the clinically useful benzodiazepines (BZs) and barbiturates). These neuroactive steroids have anxiolytic, anticonvulsant, and sedative-hypnotic properties. Based upon some of the unique characteristics of the epalons relative to barbiturates and the BZs, it is plausible that the epalons can be developed into a novel class of therapeutic agents for the treatment of anxiety, epilepsy, and insomnia.

Brain↗

[Endogenous dopamine modulates cortico-pallidal influence via GABA].

Sprague-Dawley rats were used to study the influence of local application of antagonists of D1 and D2 receptors (SCH 23390 and raclopride, respectively) on neuronal responses in globus pallidus evoked by somatosensory cortex stimulation. SCH 23390 was found to produce a short-latency inhibition in response to cortical stimulation and to block the long-latency inhibition. Raclopride application suppressed the short-latency inhibition and revealed the long-latency inhibition in response to cortical stimulation. It is suggested that the observed phenomena are based on the modulation of GABA releasing in stria-pallidar terminals by endogenous dopamine.

Animals↗

Pentobarbital modulates gamma-aminobutyric acid-activated single-channel conductance in rat cultured hippocampal neurons.

We examined the effect of a range of pentobarbital concentrations on 0.5 microM gamma-aminobutyric acid (GABA)-activated channels (10 +/- 1 pS) in inside-out or outside-out patches from rat cultured hippocampal neurons. The conductance increased from 12 +/- 4 to 62 +/- 9 pS as the pentobarbital concentration was raised from 10 to 500 microM and the data could be fitted by a Hill-type equation. At 100 microM pentobarbital plus 0.5 microM GABA, the conductance seemed to reach a plateau. The pentobarbital EC(50)(0.5 microM GABA) value was 22 +/- 4 microM and n was 1.9 +/- 0.5. In 1 mM pentobarbital plus 0.5 microM GABA, the single-channel conductance decreased to 34 +/- 8 pS. This apparent inhibition of channel conductance was relieved by 1 microM diazepam. The channel conductance was 64 +/- 6 pS in the presence of all three drugs. The channels were open more in the presence of both GABA and pentobarbital than in the presence of either drug alone. Pentobarbital alone (100 microM) activated channels with conductance (30 +/- 2 pS) and kinetic properties distinct from those activated by either GABA alone or GABA plus pentobarbital. Whether pentobarbital induces new conformations or promotes conformations observed in the presence of GABA alone cannot be determined from our study, but the results clearly show that it is the combination of drugs present that determines the single-channel conductance and the kinetic properties of the receptors.

Animals↗

Involvement of GABAA receptor modulating neuroactive steroids in patients with social phobia.

Dehydroepiandrosterone (DHEA) and its sulfate ester (DHEA-S), neurosteroids synthesized in the brain, are weak gamma-aminobutyric acid (GABA) A receptor allosteric antagonists that may be involved in anxiety disorders. In the present study we measured the circulatory [corrected] levels of DHEA, DHEA-S, pregnenolone and cortisol in [corrected] untreated patients (n=26) diagnosed with social phobia (SP) compared with sex- and age-matched healthy controls (n=21). No significant differences in neurosteroids were observed in [corrected] untreated SP patients and [corrected] compared with healthy controls. The findings may reflect an absence of involvement of the GABA(A) modulators DHEA, DHEA-S and pregnenolone in SP.

Adult↗

Cytotoxic action of lindane in neocortical GABAergic neurons is primarily mediated by interaction with flunitrazepam-sensitive GABA(A) receptors.

The cytotoxic action of the gamma-isomer of hexachlorocyclohexane (y-HCH; lindane) was studied in cultured mouse neocortical neurons by measurements of the reduction in mitochondrial function using the MTT (3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide) test. The cells were exposed to 30-300 microM lindane in the culture medium for different periods of time and lindane cytotoxicity was found to be time- and concentration-dependent. Lindane cytotoxicity could be ameliorated by addition of gamma aminobutyric acid (GABA) in a concentration-dependent manner but this effect of GABA was not blocked by bicuculline or picrotoxinin (PTX). Lindane induced cytotoxicity was also reduced by the GABA(A) receptor agonists muscimol and THIP (4,5,6,7-tetrahydroisoxazolo[5,4-c]pyridin-3-ol). This effect was enhanced by the simultaneous presence of flunitrazepam but only at the highest lindane concentrations studied (200 and 300 microM). Flunitrazepam by itself had no effect on lindane-induced cytotoxicity. The protective effect of GABA plus flunitrazepam was blocked by the benzodiazepine receptor antagonist flumazenil and by the GABA(A) antagonist bicuculline, suggesting the involvement of central benzodiazepine receptors allosterically coupled to the GABA recognition site at the GABA(A) receptor. When 100 microM PTX was used to suppress the protective effect of GABA and flunitrazepam, a significant effect of PTX was observed only at 300 microM lindane. The GABA(B) receptor agonist, baclophen, only marginally reduced the cytotoxic effect induced by the highest lindane concentrations. It is concluded that the cytotoxic action of lindane in neocortical neurons in culture is mediated primarily through an interaction with allosterically coupled GABA-benzodiazepine recognition sites at the GABA(A) receptor.

2-Amino-5-phosphonovalerate↗