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Biomedical subjects

J V Martin

Publications and source records attributed to J V Martin.

At least 19 recordsLinked to original sources

In vitro thyroid hormone rapidly modulates protein phosphorylation in cerebrocortical synaptosomes from adult rat brain.

Thyroid hormones induced rapid changes in phosphorylation in a membrane-containing lysate of synaptosomes purified from adult rat cerebral cortex. The in vitro addition of 3,5,3'-L-triiodothyronine or L-thyroxine strongly influenced incorporation of label from [gamma-32P]-ATP into proteins in a cerebrocortical synaptosomal lysate. Incubation with 3,5,3'-L-triiodothyronine or L-thyroxine had strong biphasic dose-dependent effects on the phosphorylation of 38+/-1, 53+/-1, 62+/-1, and 113+/-1 kDa proteins (which we termed alpha, beta, gamma, and delta, respectively) and several others. Although we observed differing levels of phosphorylation among the four proteins, doses of 3,5,3'-L-triiodothyronine or L-thyroxine ranging from 1 to 30 nM caused significant dose-dependent stimulation of the phosphorylation of all of them, an effect which occurred within three minutes. In each case, the enhancement of phosphorylation diminished with higher concentrations (100 nM-1 microM) of 3,5,3'-L-triiodothyronine. In contrast, incubations with similar doses of 3,3',5'-L-triiodothyronine (reverse L-triiodothyronine) were without significant effect, indicating a specificity for 3,5,3'-L-triiodothyronine and L-thyroxine. Western blots of synaptosomal lysates incubated with 3,5,3'-L-triiodothyronine (1 nM-1 microM) demonstrated phosphorylation at the serine residues of a 112 kDa protein (matching delta) and phosphorylation at tyrosyl residues of a distinct 95 kDa protein. These data support the contention that thyroid hormones have a variety of rapid nongenomic pathways for regulation of protein phosphorylation in mature mammalian brain.

Animals↗

Basal forebrain microinjections of L-3,3',5-triiodothyronine modify sleep in hypothyroid rats.

Male rats were injected bilaterally with various doses of L-3,3',5-triiodothyronine (T3) into basal forebrain areas. The electroencephalogram (EEG), electromyogram (EMG) and brain temperature (Tbr) were then measured in 8-h studies. In the medial preoptic area (MPA), a 4 microg dose of T3 caused significant elevations in REM sleep as compared to control injections. In the median preoptic nucleus (MnPO), both 2 and 4 microg doses of T3 significantly inhibited non-REM sleep. Injections to the diagonal band of Broca did not alter EEG-defined sleep. Influences on Tbr were not significant for any of the treatments. Since these effects of T3 were demonstrated after acute injections, the data are consistent with possible non-genomic actions of thyroid hormones in adult brain.

Animals↗

Application of a convenient extraction procedure to analyze gamma-hydroxybutyric acid in fatalities involving gamma-hydroxybutyric acid, gamma-butyrolactone, and 1,4-butanediol.

The most common chemicals that can be ingested and lead to greater than endogenous levels of gamma-hydroxybutyric acid (GHB) in decedents are salts of GHB, gamma-butyrolactone (GBL), and 1,4-butanediol (BD). Results for three deaths involving the ingestion of one or another of these three chemicals, which led to findings of GHB in the decedents, are presented. An extraction procedure that facilitates the quantitation of GHB was developed. If present in the same specimen, both GHB and GBL can be quantitated. To determine the GBL concentration, the specimen is first analyzed for existing GHB, the GBL is then converted to GHB, and the analysis is repeated. The difference between the results in molarity units can yield the GBL concentration. A separate procedure was utilized for estimating concentrations of BD. Specimens analyzed included urine, blood, ocular fluid, brain, and solutions consumed by the decedents prior to death. The procedures were found to be convenient in as much as they are relatively rapid, precise, and economical.

4-Butyrolactone↗

Thyroid hormonal modulation of the binding and activity of the GABAA receptor complex of brain.

Thyroid hormones, which are known to act by genomic mechanisms in peripheral tissues, were found to influence the binding and function of the GABAA receptor complex in brain membranes. Submicromolar concentrations of triiodothyronine and thyroxine stereospecifically stimulated the binding of [35S]t-butylbicyclophosphorothionate (a convulsant ligand for the GABAA receptor complex) to highly washed rat brain membranes, while higher concentrations of the hormones inhibited radioligand binding. GABA-stimulated 36Cl-flux in isolated brain membrane sacs was inhibited by L-triiodothyronine with a half-maximally inhibitory concentration (IC50) of 10(-7) M. Patch-clamp analysis of recombinant GABAA receptor subunits expressed in human embryonic kidney-293 cells showed an inhibition of chloride currents by thyroid hormones. This effect required only the alpha 1 beta 2 subunits, and was not blocked by the benzodiazepine antagonist flumazenil. Since thyroid hormones are known to be concentrated in nerve terminal preparations and subsequently released, the hormones may have non-genomic mechanisms of action as putative neurotransmitters or neuromodulators in brain and act through GABAA receptors.

Animals↗

Benzodiazepine binding varies with stage of estrous cycle in unwashed membranes from mouse brain.

The influence of the stage of the estrous cycle on binding of [3H]diazepam was examined in membranes from brains of female mice. In order to conserve endogenous factors such as progesterone, other steroids, or GABA, the assay was performed without the extensive washing procedures typically employed in measurements of benzodiazepine binding. Significant variations in the apparent maximal numbers of binding sites (Bmax) were noted during the estrous cycle in both hypothalamus and cortex. The Bmax measured in membranes from proestrus female mice was significantly higher than in membranes from mice at other stages in the estrous cycle. Variations in apparent equilibrium binding dissociation constants (Kd) were not statistically significant by stage of the estrous cycle. The demonstrated variations in binding suggest the existence of a factor which varies with the estrous cycle in female mice and modulates the activity of the GABAA receptor complex.

Animals↗

The lymph node pathology of Omenn's syndrome.

Omenn's syndrome is a rare, usually fatal immunologic disorder of infancy characterized by recurrent infections, skin lesion, lymphadenopathy, peripheral blood lymphocytosis, and eosinophilia. Histologic evaluation of a lymph node revealed total effacement of the microscopic architecture resulting from a diffuse proliferation of interdigitating reticulum cells and a depletion of B lymphocytes. The lymph node lacked a distinct cortex and had no follicle formation. The most striking feature was a diffuse hyperplasia of S-100-protein-positive nonphagocytic reticulum cells with large, pale Langerhans-like nuclei. Ultrastructural examination identified these cells to be interdigitating reticulum cells. The lymphocytes were small and predominantly of the CD8 cytotoxic/suppressor cell type.

Antigens, CD↗

Temporal changes in intracellular free calcium levels in the developing neuroepithelium during neurulation in the chick.

Intracellular free calcium ion (Ca2+) levels of the developing chick neuroepithelium during neural tube closure (Hamburger and Hamilton stages 3-11 of embryonic development) were determined using the hydrophobic acetoxymethyl ester of the fluorescent dye fura-2 (fura-2/AM). Temporal changes in the free Ca2+ level in neuroepithelial cells are correlated with the degree of folding of the neuroepithelium. The concentration of intracellular Ca2+ in the neuroepithelium reaches its highest level when apposing neural folds are actively making contact.

Actin Cytoskeleton↗

Characterization of the hypnotic effects of triazolam microinjections into the medial preoptic area.

We have previously reported that microinjections of the benzodiazepine hypnotic triazolam into the medial preoptic area (MPA) of the hypothalamus enhance sleep in rats. The present study further characterizes this effect, by examining its anatomical specificity, determining whether it is mediated by interaction with central benzodiazepine receptors, and assessing whether sleep induction is associated with changes in core temperature. It was found that microinjections of 0.25 and 0.5 micrograms triazolam into two nearby structures, the lateral preoptic area and diagonal band of Broca, failed to alter sleep. Total sleep time was enhanced by microinjection of triazolam into the MPA, and this effect was blocked by co-administration of the benzodiazepine receptor blocker RO 15-1788. Sleep enhancement by triazolam was not associated with significant alterations in core body temperature. These observations continue to suggest that the MPA may be a site which mediates the hypnotic effect of triazolam, and add to the growing body of data emphasizing the importance of hypothalamic function in the regulation of sleep and waking.

Body Temperature↗

Purification and characterization of iotrochotin, a novel toxin from the Caribbean sponge Iotrochota birotulata, which selectively permeabilizes synaptosomes.

A protein termed iotrochotin (IOT) was isolated from the exudate of the Caribbean sponge Iotrochota birotulata using as an assay its stimulation of the release of radioactivity from synaptosomes preloaded with [3H]choline. Sephadex G-50 chromatography of the exudate produced one peak, with a mol. wt of approximately 18,000, which was further resolved into two active fractions by anion exchange chromatography. The more tightly bound of the two fractions was characterized and referred to as IOT. The action of IOT was essentially complete by 0.5-1.0 min and was independent of the Ca2+ or Na+ content of the incubation mixture. Released radioactivity included about 50% each of [3H]acetylcholine and [3H]choline. Release of radioactivity increased as a function of IOT concentration and then reached a maximum. Extrapolated asymptotic release was nearly equal to that obtained by lysing the synaptosomes. IOT also released radioactivity from synaptosomes which had been preincubated with other tritiated neurotransmitters or with 2-[3H]deoxy-D-glucose. Lactate dehydrogenase and choline acetyltransferase activities were not released from synaptosomes by treatment with IOT, but were released by digitonin. IOT therefore releases some of the smaller molecular weight components of synaptosomes, but does not permeabilize the synaptosomal membrane in the same way as digitonin treatment.

Animals↗

Diazepam enhances intrasynaptosomal free calcium concentrations.

Synaptosomes prepared from brains of rats were incubated in different concentrations of diazepam under conditions designed to reduce the action of a reversed Na+/Ca2+ exchanger. In synaptosomes depolarized in the presence of added Ca2+, doses of diazepam ranging from 0.1 to 100 microM were found to significantly enhance Ca2+ levels measured with the fluorescent dye fura-2, compared to control incubations without drug. Furthermore, doses of diazepam as low as 1 microM significantly increased the concentration of Ca2+ in non-depolarized synaptosomes without added Ca2+ in the medium. The effects of depolarization and diazepam treatment were synergistic in increasing the levels of intrasynaptosomal Ca2+.

Analysis of Variance↗

Effects of muscimol and flurazepam on the sleep EEG in the rat.

In order to assess the possible role of GABA receptor function in the hypnotic property of benzodiazepines, we have examined the sleep EEG in rats given the GABA agonist muscimol, alone and in combination with flurazepam. Muscimol 0.05 and 0.1 mg/kg IP failed to alter sleep latency or total sleep time, and did not interact with the sleep-enhancing properties of flurazepam 20 mg/kg IP. These observations, in conjunction with a previous study of bicuculline, suggest that the hypnotic property of benzodiazepines may not be mediated by alteration of GABAergic activity.

Animals↗

Accidental death from a black-powder rifle breech plug.

Authentic black-powder muzzle-loader weapons and replicas are used today primarily for hunting game such as deer and hogs. The following is a case presentation of accidental death from cerebral trauma caused by a .45-caliber black-powder-rifle breech plug implanting in the victim's brain.

Accidents↗

Monoamine receptors in an animal model of affective disorder.

After a relatively mild course of uncontrollable shocks, two distinct groups of rats can be defined in terms of their performance in learning to escape from a controllable stressor. Response-deficient (RD) rats do not learn to terminate the controllable stressor, whereas nondeficient (ND) rats learn this response as readily as do untreated control rats. The current studies were designed to determine the neurochemical correlates of the behavioral differences between these groups of rats. The major findings concerned postsynaptic beta-adrenergic effects in the hippocampus of RD rats. These included an up-regulation of beta-adrenergic receptors and, in parallel experiments, an increase in the sensitivity of adenylyl cyclase to stimulation by norepinephrine. There was no difference in brain levels of catecholamines between the three groups of rats. A statistically significant increase in levels of 5-hydroxytryptamine was noted in the hippocampus and hypothalamus of RD rats as compared to levels in ND rats, but no significant differences were measured between groups of rats in terms of S1 or S2 serotonergic receptor binding. These results implicate both beta-adrenergic and serotonergic mechanisms in the behavioral deficit caused by uncontrollable shock.

Adenylyl Cyclases↗

Effects of buspirone on sleep and respiration.

Drugs used in the treatment of anxiety are frequently sedating and tend to be respiratory depressants. Buspirone, a nonbenzodiazepine anxiolytic agent, has little reported sedative effect. It has been shown to be a respiratory stimulant in an anesthetized, glomectomized cat model. In this study, we examined the effects of two intraperitoneal single doses (10 and 20 mg/kg) of buspirone on sleep and respiration in unanesthetized, intact, freely moving rats. Buspirone increased sleep latency (p less than 0.0001) and decreased total sleep (p less than 0.02) through reductions in both non-REM and REM sleep. Respiratory rate (p less than 0.0003) and ventilation (p less than 0.004) were significantly increased for 4 h after drug injection. The effects on respiration were independent of those on sleep; stimulation was evident in both waking and non-REM sleep. This study suggests that buspirone, in addition to being free of sedating and respiratory depressant side effects when prescribed for anxiety in humans, may be a respiratory stimulant whose effects persist in sleep.

Animals↗

Evidence for the presence of a benzodiazepine receptor binding substance in cerebrospinal fluid of a rabbit model of hepatic encephalopathy.

Based on the reversal of hepatic encephalopathy in animal models with administration of specific benzodiazepine receptor antagonists, it has been postulated that this syndrome may be mediated by an endogenous benzodiazepine-like compound. In this study using a radio-receptor assay, evidence for the existence of this substance has been demonstrated in cerebrospinal fluid but not sera of rabbits with hepatic encephalopathy due to galactosamine-induced hepature failure. Cerebrospinal fluid from rabbits with hepatic encephalopathy caused 36.1 +/- 5.03% displacement of 3H-Ro 15-1788 specific binding to cortical benzodiazepine receptors, compared to 11.7 +/- 0.76% in control animals (P less than 0.01). The benzodiazepine receptor binding activity has been shown to behave as a competitive inhibitor of radiolabeled benzodiazepine receptor binding. The finding of endogenous benzodiazepine binding activity affords a potential explanation for the amelioration of hepatic encephalopathy in this model with the administration of benzodiazepine receptor antagonists.

Aminocaproates↗

Effect of exertion on the stimulation of ornithine decarboxylase activity by growth hormone in rats.

To investigate the effect of stressful stimulation on tissue responsiveness to growth hormone (GH), we examined ODC activity as a measure of hepatic sensitivity to the hormone during forced exertion in rats. GH caused a 15-fold increase in ODC activity in the livers of resting rats at 3 hours after the injection of hormone. Forced walking in a rotating cylinder enhanced the effect of GH on ODC activity by up to 66% above the effect in resting rats, and this enhancement was positively related to the speed of rotation of the cylinder. These results suggest that tissue hypersensitivity to GH stimulation is a consequence of forced exertion. This hypersensitivity to GH would tend to compensate for the inhibitory effects of forced exertion on GH secretion in rats.

Animals↗

Inhibition of sleep and benzodiazepine receptor binding by a beta-carboline derivative.

The effects of systemic injections of beta-carboline-3-carboxylate-t-butyl ester (beta-CCtB) were investigated with regard to normally occurring sleep and several measures of benzodiazepine receptor occupancy in rats. A dose of 30 mg/kg of beta-CCtB was found to have a long time-course of action as measured by an in vivo assay for benzodiazepine binding, with an 84% depletion of [3H]diazepam binding at one hour after the intraperitoneal injection. This dose of beta-CCtB was shown to delay sleep onset, decrease non-REM and total sleep in the first two hours after the injection, and to delay the appearance of REM sleep after the sleep onset. The dose- and time-dependence of the effects on sleep approximated the dose- and time-dependence of inhibitory effects of an IP injection of beta-CCtB on in vitro measures of benzodiazepine receptor affinity and number.

Animals↗