PubMed HealthSearch

Biomedical subjects

J L Moreau

Publications and source records attributed to J L Moreau.

At least 19 recordsLinked to original sources

A non peptidic corticotropin releasing factor receptor antagonist attenuates fever and exhibits anxiolytic-like activity.

The multiple actions of corticotropin-releasing factor (CRF) on neuroendocrine and behavioural functions can now be examined using new, high affinity, non peptidic antagonists which exhibit central activity upon systemic application. We have shown that compound CP 154,526 (butyl-ethyl-[2,5-dimethyl-7-(2,4,6-trimethylphenyl)-7H-pyrrolo [2,3-d]pyrimidin-4-yl]amine) displaces [125I][Tyr0]CRF from rat hippocampal CRF receptors (IC50 = 0.5 nM) and from pituitary CRF receptors (IC50 = 0.04 nM). The same compound inhibits in a concentration-dependent manner the ovine CRF (0.1 microM)-stimulated adenylate cyclase activity in membranes of a mouse pituitary adenoma cell line, AtT20, with an IC50 value of 50 nM. Systemic application of the CRF receptor antagonist (0.16 mg/kg i.p.) blocked recombinant human interleukin-1 beta 5 micrograms/kg i.p.) induced fever in rats. The CRF receptor antagonist CP 154,526 (1 mg/kg i.p.) also exhibited signs of anxiolytic-like activity in the elevated plus-maze test in rats.

Analgesics, Non-Narcotic

beta-APP cognitive function versus beta-amyloid--induced cell death.

The beta-amyloid precursor protein (beta-APP) has been hypothesized to play an important role in the establishment of synaptic connections. Icv injections of anti-beta APP antibodies into rat brains produced no appreciable effect on subsequent learning of a passive avoidance task whereas memory assessed 1 day later in a retention test was impaired in anti-beta-APP--but not control-IgG-injected animals. This suggests a possible involvement of beta-APPs in cognitive functions. In order to evaluate the properties of the proteolytic A beta-fragment accumulating in Alzheimer's disease brains, four different neuronal cell types were exposed to A beta 1-42 for 24 hours. All cells degenerated in response to A beta, yet chromosomal condensation and internucleosomal DNA fragmentation, typical for apoptosis, occurred in only three of the cell types tested. These findings suggest that beta-APPs may play an important role in cognitive processes and additionally, that their alternative proteolytic product A beta may be differentially toxic to neuronal cell types, inducing cell death either by necrosis or by apoptosis.

Amyloid beta-Peptides

Lack of intermediate-affinity interleukin-2 receptor in mice leads to dependence on interleukin-2 receptor alpha, beta and gamma chain expression for T cell growth.

An interleukin (IL)-4 dependent mouse T cell clone 8.2 derived from an IL-2-dependent T cell line was characterized. As measured by flow cytometric analysis and Northern blotting, it expresses IL-2 receptor beta (IL-2R beta) and gamma (IL-2R gamma) chains, but has lost expression of IL-2 receptor alpha chain (IL-2R alpha). To investigate the properties of the mouse IL-2R beta gamma complex and the role of IL-2R alpha gene expression, this clone was further studied. T cell clone 8.2 has lost the capacity to bind 125I-labeled human IL-2 under experimental conditions able to detect intermediate-affinity IL-2R in human cells. Mouse IL-2 is unable to block the binding of mAb TM beta 1 to 8.2 cells. Under the same experimental conditions, mouse IL-2 blocks the binding of TM beta 1 to C30-1 cells expressing the IL-2 alpha beta gamma complex. Since TM beta 1 recognizes an epitope related to the IL-2 binding site of IL-2R beta, these results can be taken as a demonstration that mouse IL-2R beta gamma does not bind mouse IL-2. Furthermore, T cell clone 8.2 does not proliferate in response to recombinant mouse or human IL-2. On the other hand, T cell transfectant lines expressing heterospecific receptors made of the human IL-2R beta and mouse IL-2R gamma chains bind 125I-labeled human IL-2 and proliferate in response to IL-2. This establishes the difference between mouse and human IL-2R beta chains. Transfection of T cell clone 8.2 with human IL-2R alpha genes restores their capacity to proliferate in response to IL-2. In addition, all transfectants grown in IL-2 express the endogeneous mouse IL-2R alpha chain. When grown in IL-4, the endogeneous mouse IL-2R alpha gene remains silent in all these transfectants. These results show that, contrary to the human, the mouse does not express an intermediate-affinity IL-2R. Expression of the IL-2R alpha gene is therefore required for the formation of the functional IL-2R in mice.

Animals

Differential regulation of interleukin-12- and interleukin-15-induced natural killer cell activation by interleukin-4.

The regulation of human natural killer (NK) cell activation is under the control of a network of regulatory signals provided by cytokines. In the present study, we investigated the functional interaction between interleukin (IL)-4 and two monocyte/macrophage-derived cytokines, IL-12 and IL-15, during the process of NK stimulation. Using freshly isolated human NK cells, we have demonstrated that IL-4 negatively regulates lymphokine-activated killer (LAK) activity induced by IL-15 against the NK-resistant Daudi target cells. In contrast, IL-4 had no effect on IL-12-stimulated LAK generation. The differential effect of IL-4 on NK cell activation by IL-12 and IL-15 correlates with its ability to increase or to down-regulate the level of tumor necrosis factor-alpha and interferon-gamma release by NK cells, respectively. In contrast, endogenous transforming growth factor-beta 1 does not appear to be involved in the IL-4 regulatory pathway. Furthermore, while IL-4 was found to decrease the basal expression of the IL-2 receptor beta subunit utilized by IL-15, it had no effect on the expression of the beta 1 chain of the IL-12 receptor compared to untreated cells. Northern blot analysis indicated that the IL-4 regulatory effect on NK lytic function was associated with its capacity to down-regulate granzyme B and perforin gene transcription in response to IL-15 and its failure to affect the expression of both gene's in response to IL-12. Together, these data suggest the existence of a distinct cross-talk between IL-4 and IL-15 or IL-12 signaling pathways during the regulation of human non-major histocompatibility complex-restricted cytotoxicity.

Blotting, Northern

Penetration of pefloxacin and its desmethyl metabolite into the uroepithelium after a 800-mg single oral dose in human patients.

Penetration of pefloxacin into the uroepithelium was studied in 20 patients (10 men and 10 women) receiving a single oral dose of 800 mg. Samples of serum, urine, and uroepithelium were taken 1.8 h (mean) after the dose. Pefloxacin and its active metabolite, norfloxacin, were assayed by liquid chromatography, and the microbiologically active compounds were quantified by a microbiological assay. Both procedures were correlated (r > 0.7); nevertheless, slight differences detected in concentrations depended on the levels of norfloxacin achieved in the biological samples. The serum and tissue concentrations were higher than the concentration of bactericide (4 micrograms.ml-1), except in one case. The uroepithelium concentration of pefloxacin was proportional to the serum concentration (r = 0.79). The urinary concentrations ranged from 1.2 micrograms.ml-1 to 82.4 micrograms.ml-1. The mean norfloxacin/pefloxacin ratios were 3% in serum, 8% in uroepithelium, and 44% in urine. The mean uroepithelium/serum concentration ratios were 1 for pefloxacin and 2.3 for norfloxacin. This result shows that, at a time close to that of the maximum concentration, there is good penetration of pefloxacin and norfloxacin into the uroepithelium.

Administration, Oral

Decreased hedonic responsiveness following chronic mild stress is not secondary to loss of body weight.

Chronic exposure to mild unpredictable stress (CMS) has previously been found to decrease hedonic responsiveness, as measured by the consumption of palatable sweet solutions or sensitivity to brain stimulation reward. These effects are reversed by chronic treatment with antidepressant drugs, and the CMS procedure has been proposed as a relatively valid animal model of depression. It has recently been suggested that the behavioural effects of CMS may be secondary to loss of body weight. This article collates data from five laboratories using the CMS procedure. Data are presented from seven studies using five different rat strains, as well as CD1 mice. Three-week exposure to CMS significantly decreased sucrose consumption by Lister hooded, PVG hooded, Wistar, and Wistar WU rats, and by CD1 mice, and sensitivity to brain stimulation reward in Ibm:Ro Ro rats. Weight loss in different experiments varied between 0 and 10%. Hedonic sensitivity relative to body weight (e.g., mg sucrose/g body weight) decreased significantly in all experiments. Animals maintained on a restricted feeding regime lost weight but did not show decreases in sucrose intake. It is concluded that decreased hedonic sensitivity following chronic mild stress cannot be attributed to loss of body weight.

Animals

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

Behavioral effects of CCKB receptor ligands in a validated simulation of panic anxiety in rats.

Animals or human subjects receiving brain stimulation in the dorsal periaqueductal gray matter (dPAG) show sudden fear-suggestive behavioral reactions and physical signs of autonomic activation which are reminiscent of the symptom profile characterizing a panic attack. An experimental situation in rats measuring dPAG stimulation self-interruption thresholds has been validated as realistically simulating several aspects of panic anxiety with objective signs of symptomatic and predictive validity using established antipanic and panicogenic agents; it was utilized here to evaluate the effects of various cholecystokinin B receptor ligands. A dose-dependent increase in self-interruption thresholds (antipanic-like effect) was recorded following injection of L-365,260 (3.2, 10 and 32 mg/kg i.p.), a CCKB receptor antagonist with good brain penetration, whereas no significant changes in thresholds were recorded following CI-988 (3.2, 10 and 32 mg/kg i.p.), a dipeptoid CCKB receptor antagonist with poor brain penetration. Latencies for self-interruption were not modified, suggesting that motor functions remained intact. No significant changes in self-interruption thresholds were recorded following peripheral administration of the CCKB receptor agonists CCK4 (0.03 to 0.32 mg/kg i.v.; 0.01 to 3.2 mg/kg i.p.) or the metabolically stabilized analog Boc-CCK4 (0.1 to 10 mg/kg i.p.). Systemic administration of the panicogenic compounds caffeine and yohimbine enhance acute anxiety in this model. These data indicate that, in the dPAG simulation of panic anxiety, central CCKB receptor blockade by L-365,260 induces antiaversive effects analogous to those observed following benzodiazepine receptor activation by clonazepam or alprazolam. Potency and efficacy of L-365,260 were lower than those of clonazepam or alprazolam, suggesting modest, but nonetheless authentic, antiaversive properties for this CCKB receptor antagonist. Lack of effects observed following peripheral administration of the agonists CCK4, and Boc-CCK4 or of the dipeptoid antagonist CI-988 is likely to reflect restricted brain penetration of those compounds in rats; it furthermore excludes a contribution of peripheral gastrin and CCKA receptors to the antipanic-like properties of selective CCKB receptor antagonists such as L-365,260.

Animals

Ligand-induced autoregulation of IL-2 receptor alpha chain expression in murine T cell lines.

The IL-2 receptor (IL-2R) is composed of three chains alpha, beta and gamma. In mice, contrary to the human system, we have previously demonstrated that the IL-2R beta gamma complex does not bind IL-2. Therefore, mouse IL-2 response is completely dependent on the expression of the IL-2R alpha gene product. T cell clones expressing mouse IL-2R beta gamma and the human IL-2R alpha transgene have been studied. When cells are grown in IL-4, mouse IL-2R alpha is not expressed. However, exposure to IL-2 leads to the expression of the endogenous murine IL-2R alpha subunit. The T cell line expressing mouse IL-2R gamma and human IL-2R beta can grow in IL-2 but does not express endogenous murine IL-2R alpha. Transfection of these cells with the human IL-2R alpha gene restores the capacity to induce murine IL-2R alpha. This result demonstrates that IL-2-IL-2R alpha interactions are required for induction of IL-2R alpha. The kinetics of induction and deinduction of murine IL-2R alpha have been studied using clone 18.III. From negative cells, expression of murine IL-2R alpha is a very slow phenomenon. From cells fully expressing IL-2R alpha, deinduction is a two-step process: after a rapid decrease of IL-2R alpha the cells continue to express, for a long period of time, basal levels of murine IL-2R alpha. When cells expressing basal levels of IL-2R alpha are exposed to IL-2, induction of IL-2R alpha is a very rapid phenomenon. The autoregulatory loop formed by IL-2-IL-2R alpha therefore displays different levels of functioning.

Animals

[Results of endorectal MRI in local staging of prostatic cancer. Correlation with specimens from prostatectomy. Apropos of 47 cases].

Endorectal surface coil magnetic resonance imaging (MRI) was used in the local staging of prostate cancer in 47 patients. We used an 1.5 Tesla General Electric magnet. Fast spin echo sequences were acquired in all cases. All pathological specimen were reviewed by one pathologist. Pathological study showed that 19 patients had a locally confined cancer of the prostate (pT2), and 28 had an extraglandular extension (pT3). MRI correctly predicted a pT3 tumor in 15 of 28 cases, and a pT2 tumor in 18 of 19 patients. MRI was 70% accurate in the differenciation of stage pT2 from stage pT3 cancer. One case was overestimated and 13 cases were underestimated. The latter 13 patients had microscopic extracapsular invasion only.

Aged

Control of the IL-2 responsiveness of B lymphocytes by IL-2 and IL-4.

A two-step culture system was used to analyze the parameters involved in the acquisition of IL-2 responsiveness by murine B cells. In the first culture, unstimulated, or resting, B cells prepared from spleen of naive animals were challenged during 48 h with IL-2, IL-4, anti-mu, anti-mu+IL-2, anti-mu+IL4, or anti-mu+IL-2 + IL-4. In a second culture, IL-2 responsiveness was followed by measuring either the cell proliferation or the Ig production. It was found that only B cells stimulated by anti-mu+IL-2 were able to respond. The expression of three chains of the IL-2 receptor (IL-2R alpha, IL-2R beta, and IL-2R gamma) was studied by FACS. IL-2R beta and IL-2R gamma were found to be expressed constitutively on resting B cells. IL-2R alpha was induced by anti-mu and anti-mu+IL-2 treatment. Although B cells treated by anti-mu alone are not able to respond to IL-2, they do express an IL-2 binding capacity comparable with B cells treated by anti-mu+IL-2. This paradoxical result suggests that IL-2 has a direct influence on the acquisition of the IL-2 responsiveness. IL-4 exerts a negative effect on the IL-2 response. At the molecular level, IL-4 was found to reduce selectively the IL-2R beta expression at the B cell surface. This effect was confirmed by Northern blot analysis. Maximum expression of the IL-2R beta mRNA is obtained after anti-mu+IL-2 treatment. In the presence of IL-4, expression of the IL-2R beta mRNA is greatly reduced.

Animals

Dorsal periaqueductal gray-induced aversion as a simulation of panic anxiety: elements of face and predictive validity.

Neurosurgical stimulation of the dorsal periaqueductal gray (dPAG) matter in man induces acute signs of autonomic arousal and feelings of subjective anxiety; those signs have phenomenological similarity with the symptom profile characterizing a panic attack. Animals undergoing dPAG stimulation show comparable physical signs of autonomic activation and sudden fear-suggestive behavioral reactions that can be shaped into operant self-interruption behavior. Drugs known to acutely reduce (alprazolam, clonazepam) or precipitate (yohimbine, caffeine) panic attacks in patients were found to acutely and dose-dependently reduce or enhance, respectively, aversion induced by dPAG stimulation in rats. When considered as an animal model of panic anxiety, the dPAG model simultaneously meets criteria of face validity (symptomatic homology) and predictive validity (pharmacological homology under short-term treatment); aspects of its construct validity (theoretical rationale supporting the model) are discussed. It is suggested that dPAG stimulation-induced aversion may represent a model of some aspects of panic disorders.

Alkaloids

Precipitated withdrawal in squirrel monkeys after repeated daily oral administration of alprazolam, diazepam, flunitrazepam or oxazepam.

The lowest dose of alprazolam, diazepam, flunitrazepam and oxazepam consistently to induce loss of righting reflex in squirrel monkeys or vehicle was orally administered to monkeys on 18 consecutive days: 2 mg/kg alprazolam (n = 4), 30 mg/kg diazepam (n = 4), 1 mg/kg flunitrazepam (n = 4), 280 mg/kg oxazepam (n = 5), or vehicle (n = 4). Tolerance developed rapidly for loss of righting reflex, more slowly for sleep and only minimally for muscle relaxation observed during the period immediately following daily oral administration. Injection of the specific benzodiazepine receptor antagonist flumazenil (10 mg/kg i.v.) 5 h after the ninth daily oral treatment produced signs of precipitated withdrawal (tremor, vomiting and/or convulsions) in one alprazolam-, four diazepam-, one flunitrazepam- and four oxazepam-treated monkeys, but not in the vehicle-treated monkeys. Physiological saline injected intravenously several days later under these same experimental conditions failed to provoke a precipitated withdrawal reaction. When flumazenil-induced precipitated withdrawal was again evaluated after the 18th daily oral treatment, withdrawal signs were observed in all alprazolam- and all diazepam-treated monkeys, as well as in three flunitrazepam- and three oxazepam-treated monkeys, but not in the vehicle-treated monkeys (convulsions were observed in one alprazolam-, two diazepam-, one flunitrazepam- and two oxazepam-treated monkeys). No signs of spontaneous withdrawal were observed in any of the monkeys during a subsequent 3-week drug-free period. Thus, repeated administration of approximately equieffective doses of these four benzodiazepines resulted in a similar development of tolerance and physical dependence (indicated by the occurrence of a precipitated withdrawal reaction).

Administration, Oral

Characterization of a monoclonal antibody directed against the NH2 terminal area of interleukin-2 (IL-2) and inhibiting specifically the binding of IL-2 to IL-2 receptor beta chain (IL-2R beta).

An anti-human IL-2 mAb (19B11/beta) was found to selectively block the binding of IL-2 to TS1 beta cells expressing the interleukin-2 receptor beta (IL-2R beta) without affecting binding to TS1 alpha cells expressing the IL-2R alpha receptor. It also specifically inhibits the IL-2 driven cell proliferation in TS1 beta cells. These observations have lead to the hypothesis that its epitope is related to an IL-2 area involved in binding with IL-2R beta chain. This epitope was identified using various peptides covering the N-terminal half (including alpha helix A) of the 133 amino acids of IL-2. MAb 19B11/beta does not recognize peptides 30-54 and 44-54 but recognizes peptides 1-22 and 1-30 with a good affinity. Furthermore, threonine in position no. 3 was found to be critical for the binding of mAb 19B11/beta. A relationship between the epitope of mAb 19B11/beta and the glycosylation of the IL-2 molecule was observed. This further demonstrates that the NH2 terminal area of IL-2 is critical for IL-2/IL-2R beta interactions. Two other mAbs were studied during the course of this work. They served as control for the study of mAb 19B11/beta and provide some additional insight concerning the question of IL-2/IL-2R structure-function. MAb 16F11/alpha selectively blocks the IL-2 binding to TS1 alpha cells. The epitope of mAb 16F11 is conformational and it was not possible to study the corresponding IL-2/IL-2R alpha region of interaction. Epitope of mAb 3H9 is localized between residues 30 and 54 and does not affect the binding of IL-2 to IL-2R alpha.

Amino Acid Sequence

Aniracetam reverses memory impairment in rats.

The pyrrolidinone derivative aniracetam given orally immediately after acquisition of an inhibitory avoidance response reproducibly ameliorated scopolamine-induced amnesia in female rats in an extensive series of test sessions conducted over a 1-year period. In a dose-response experiment it was demonstrated that 50 mg kg-1 was the lowest oral dose of aniracetam to significantly ameliorate scopolamine-induced amnesia. Combined results from these numerous test sessions demonstrated that 50 mg kg-1 aniracetam administered to scopolamine-treated rats resulted in 53% of the animals exhibiting correct passive avoidance responding in the retention evaluation versus 9% of the scopolamine-treated rats given vehicle (in comparison, 64% of the rats injected with vehicle rather than scopolamine in this experimental situation exhibited correct responding in the retention test). There was minimal variation in this pattern of results over the successive 1-month blocks constituting the complete experimental period. Thus, the nootropic compound aniracetam replicably exhibited memory enhancing effects in this animal model of reduced cholinergic function.

Administration, Oral

Active cyclin B-cdc2 kinase does not inhibit DNA replication and cannot drive prematurely fertilized sea urchin eggs into mitosis.

Feedback mechanisms preventing M phase occurrence before S phase completion are assumed to depend on inhibition of cyclin B-cdc2 kinase activation by unreplicated DNA. In sea urchin, fertilization stimulates protein synthesis and releases eggs from G1 arrest. We found that in the one-cell sea urchin embryo cyclin B-cdc2 kinase undergoes partial activation before S phase, reaching in S phase a level that is sufficient for G2-M phase transition. S phase entry is not inhibited by this level of cyclin B-dependent kinase activity. Inhibition of DNA replication by aphidicolin suppresses nuclear envelope breakdown, yet it does not prevent the microtubule array from being converted from its interphasic to its mitotic state. Moreover, mitotic cytoplasmic events occur at the same time in control and aphidicolin-treated embryos. Thus unreplicated DNA only prevents mitotic nuclear, not cytoplasmic, events from occurring prematurely. These results together show that the inhibition of cyclin B-cdc2 kinase activation is probably not the only mechanism that prevents mitotic nuclear events from occurring as long as DNA replication has not been completed. In contrast, cytoplasmic mitotic events seem to be controlled by a timing mechanism independent of DNA replication, set up at fertilization, that prevents premature opening of a window for mitotic events.

Animals

Comparison of benzodiazepine receptor ligands with partial agonistic, antagonistic or partial inverse agonistic properties in precipitating withdrawal in squirrel monkeys.

Benzodiazepine receptor (BZR) ligands previously characterized as differing in intrinsic efficacy were evaluated first for potency in antagonizing flunitrazepam-induced sleep in monkeys. Data from these experiments were used to define approximately equieffective doses for subsequent use in precipitating withdrawal in diazepam-treated monkeys. It was shown that partial agonists with intermediate intrinsic efficacy (bretazenil, Ro 41-7812) were relatively ineffective in precipitating withdrawal reactions in diazepam-treated squirrel monkeys. The potent and specific BZR antagonist flumazenil, which possesses weak intrinsic efficacy, was more effective in precipitating a withdrawal reaction in diazepam-treated monkeys. In contrast, the highest dose of the BZR antagonist ZK 93426 that could be administered failed to precipitate withdrawal under the same experimental conditions. Finally, the BZR partial inverse agonist sarmazenil was the most effective of these BZR ligands in eliciting a precipitated withdrawal reaction. Thus, the results of the present investigation strongly suggest that BZR ligands differing in intrinsic efficacy differentially precipitate withdrawal in squirrel monkeys treated chronically with diazepam.

Animals

Application of high-performance liquid chromatography to the study of the biological transformation of adiponitrile.

A procedure for the assay of nitrile hydratase and amidase activity by high-performance liquid chromatography is described. The method can be used to assay the intermediate compounds resulting from the hydrolysis of adiponitrile into adipic acid, and to determine the kinetics of the hydrolysis of these compounds using whole cells and enzyme extracts. The precision of the method makes it suitable for the determination of the enzyme parameters: Km and Vm (nitrile hydratase and amidase). Using cyanovaleramide as substrate, Km and Vm were respectively 370 mM and 2060 U/mg for nitrile hydratase and 6.6 mM and 33 U/mg for amidase.

Adipates