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Biomedical subjects

S Chaney

Publications and source records attributed to S Chaney.

13 recordsLinked to original sources

Performance deficits of mGluR8 knockout mice in learning tasks: the effects of null mutation and the background genotype.

mGluR8 is a G-protein coupled metabotropic glutamate receptor expressed in the mammalian brain. Members of the mGluR family have been shown to be modulators of neural plasticity and learning and memory. Here we analyze the consequences of a null mutation at the mGluR8 gene locus generated using homologous recombination in embryonic stem cells by comparing the learning performance of the mutants with that of wild type controls in the Morris water maze (MWM) and the context and cue dependent fear conditioning (CFC). Our results revealed robust performance deficits associated with the genetic background, the ICR outbred strain, in both mGluR8 null mutant and the wild type control mice. Mice of this strain origin suffered from impaired vision as compared to CD1 or C57BL/6 mice, a significant impediment in MWM, a visuo-spatial learning task. The CFC task, being less dependent on visual cues, allowed us to reveal subtle performance deficits in the mGluR8 mutants: novelty induced hyperactivity and temporally delayed and blunted responding to shocks and temporally delayed responding to contextual stimuli were detected. The role of mGluR8 as a presynaptic autoreceptor and its contribution to cognitive processes are hypothesized and the utility of gene targeting as compared to pharmacological methods is discussed.

Animals↗

Ectopic G-protein expression in dopamine and serotonin neurons blocks cocaine sensitization in Drosophila melanogaster.

Sensitization to repeated doses of psychostimulants is thought to be an important component underlying the addictive process in humans [1] [2] [3] [4]. In all vertebrate animal models, including humans [5], and even in fruit flies, sensitization is observed after repeated exposure to volatilized crack cocaine [6]. In vertebrates, sensitization is thought to be initiated by processes occurring in brain regions that contain dopamine cell bodies [2] [7]. Here, we show that modulated cell signaling in the Drosophila dopamine and serotonin neurons plays an essential role in cocaine sensitization. Targeted expression of either a stimulatory (Galpha(s)) or inhibitory (Galpha(i)) Galpha subunit, or tetanus toxin light chain (TNT) in dopamine and serotonin neurons of living flies blocked behavioral sensitization to repeated cocaine exposures. These flies showed alterations in their initial cocaine responsiveness that correlated with compensatory adaptations of postsynaptic receptor sensitivity. Finally, repeated drug stimulation of a nerve cord preparation that is postsynaptic to the brain amine cells failed to induce sensitization, further showing the importance of presynaptic modulation in sensitization.

Animals↗

Requirement of circadian genes for cocaine sensitization in Drosophila.

The circadian clock consists of a feedback loop in which clock genes are rhythmically expressed, giving rise to cycling levels of RNA and proteins. Four of the five circadian genes identified to date influence responsiveness to freebase cocaine in the fruit fly, Drosophila melanogaster. Sensitization to repeated cocaine exposures, a phenomenon also seen in humans and animal models and associated with enhanced drug craving, is eliminated in flies mutant for period, clock, cycle, and doubletime, but not in flies lacking the gene timeless. Flies that do not sensitize owing to lack of these genes do not show the induction of tyrosine decarboxylase normally seen after cocaine exposure. These findings indicate unexpected roles for these genes in regulating cocaine sensitization and indicate that they function as regulators of tyrosine decarboxylase.

ARNTL Transcription Factors↗

Modification of methyliminodiacetato-trans-R,R-1,2-diamminocyclohexane platinum(II) pharmacology using a platinum-specific monoclonal antibody.

Platinum complexes are extremely active chemotherapeutic agents. A murine monoclonal antibody designated 1C1 was developed that binds to the third-generation platinum complex methyliminodiacetato-trans-R,R-1,2-diamminocyclohexane platinum(II) (MIDP). Competitive enzyme-linked immunosorbent assay (ELISA) shows that antibody 1C1 binds preferentially to the 1,2-diamminocyclohexane (DACH) side-chain of the platinum complex, although non-DACH-containing platinum complexes can compete for binding at high concentrations. When tested against MCF-7 breast carcinoma cells, the 1C1-MIDP complex caused 50% growth inhibition at 0.63 micrograms Pt/ml, whereas MIDP alone caused 50% growth inhibition at a concentration of 0.16 micrograms Pt/ml. Pharmacokinetic studies in rats using [3H]-MIDP showed that the drug was cleared triphasically from plasma, with elimination-phase half-lives (t1/2) of 1.2, 10.2, and 243 min for alpha, beta, and gamma phases, respectively. The MIDP-1C1 complex was cleared with longer half-lives of 5, 26, and 291 min, respectively. The overall clearance rate from plasma of the MIDP-1C1 complex was 10-fold lower than that of MIDP alone (0.37 vs 3.01 ml/kg x min). Tissue concentrations of [3H]-MIDP 3 h after administration showed that 1C1 antibody prevented MIDP distribution to most organs and dramatically reduced [3H] concentration in the intestine, liver, kidney, heart, and skeletal muscles. Studies are under way to determine the relative therapeutic activity of the 1C1 antibody-MIDP complex and assess whether the 1C1 antibody may be useful for antibody-directed delivery of platinum complexes to tumors.

Animals↗

Biochemical effects of sulfuric acid mist inhalation by human subjects while at rest.

This study evaluated the effect of sulfuric acid aerosol exposure for 2 consecutive days on seven human biochemical blood parameters. A total of 20 human subjects were exposed to 100 micrograms/m3 (0.033 microM) sulfuric acid aerosol (0.5 microns mean mass diameter) for 4 hr/day for 2 consecutive days. A total of 17 human subjects were exposed to 4 hr of ambient air on both exposure days. The chemical blood parameters were measured pre- and post-exposure, and 20 hr after the second exposure: serum glutathione, red blood cell glutathione reductase, red blood cell glucose-6-phosphate dehydrogenase, lysozyme, serum glutamic oxaloacetic acid transaminase, serum vitamin E, and 2, 3-diphosphoglycerate. The results indicate no significant response in any of the seven biochemical blood parameters measured. At this level, repeated exposure did not over-burden the upper airway defenses against acid aerosol.

Adolescent↗

Biochemical changes in humans upon exposure to nitrogen dioxide while at rest.

The biological response to controlled exposures of nitrogen dioxide (NO2) was studied in 19 human subjects exposed to 0.2 ppm NO2 for 2 hr and compared to 15 control subjects exposed to filtered air for 2 hr. Seven biochemical blood parameters, including glutathione, red blood cell glutathione reductase, 2,3-diphosphoglycerate, methemoglobin, vitamin E, complement C2, and IgA were measured prior to exposure, immediately after exposure, and 22 hr following exposure. The only variable that showed significant change due to NO2 exposure was glutathione. Glutathione is known to protect the erythrocyte from oxidative stress. The increase in glutathione observed upon exposure to NO2 may be a protective reaction of the erythrocyte to meet the oxidative stress.

2,3-Diphosphoglycerate↗

Biochemical changes in humans upon exposure to sulfuric acid aerosol and exercise.

This study evaluated the effect of a single exposure to sulfuric acid aerosol on six human biochemical blood parameters. A total of 18 human subjects were exposed to ambient air for 4 hr on the first day of exposure and to 100 microgram/m3 (0.033 microM) sulfuric acid aerosol (0.5 micrometer mean mass diameter) for 4 hr on the second day. A total of 17 human subjects were exposed for 4 hr to ambient air on both exposure days. On each exposure day, at 30 min and 90 min after exposure was initiated, all subjects engaged in a 15-min exercise period (walking 4 mph on a treadmill inclined at 10 degrees). Six biochemical blood parameters were measured before and after exposure: glutathione, lysozyme, glutathione reductase, serum glutamic oxaloacetic acid transaminase, serum vitamin E, and 2, 3-diphosphoglyceric acid. The results indicate no significant effect of one 4-hr exposure of humns to 100 microgram/m3 sulfuric acid aerosol. One significant post-exposure effect did occur--an increase in glutathione reductase--for both the control and acid-exposed group. It is concluded that at the levels studied, sulfuric acid aerosol is neutralized in the upper airways; consequently, no cellular damage is measurable.

Adult↗