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B Gough

Publications and source records attributed to B Gough.

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Declines in stimulated striatal dopamine release over the first 32 h following microdialysis probe insertion: generalization across releasing mechanisms.

In a recent paper [R.R. Holson, J.F. Bowyer, P. Clausing, B. Gough, Methamphetamine-stimulated striatal dopamine release declines rapidly over time following microdialysis probe insertion, Brain Res. 739 (1996) 301-307] we reported that methamphetamine-stimulated striatal dopamine release declined rapidly over the first eight hours following microdialysis probe insertion. This decline was strictly a function of time post-probe implantation, and not due to tolerance or desensitization. To further examine this phenomenon, we subjected rats to three brief pulses of several DA-releasing compounds at 2, 4 and 6 h post-probe insertion, and compared these results to those caused by a single pulse 6 h post-insertion, or in some cases to pulses given more than 24 h post-insertion. We found that when buproprion, a dopamine reuptake blocker, was infused briefly into the striatum via the microdialysis probe, there was a pronounced drop in the amount of dopamine released at 6 h vs. 2 h post-insertion; this drop was not due to repeated exposure, since dopamine release at 6 h post-insertion was the same for a single pulse, or when preceded by two earlier pulses. Twenty-four hours later, buproprion-stimulated dopamine release was still lower, but did not appear to drop further thereafter. Potassium-stimulated dopamine release, on the other hand, dropped rapidly over the first 8 h post-insertion, and this decline continued throughout the 24-32 h interval post-insertion. Similarly, a single i.p. injection of 0.5 mg/kg haloperidol released three times as much dopamine when given two compared to six hours post-implantation. Both bupropion- and potassium-stimulated dopamine release were accompanied by declines in extracellular DOPAC concentrations, and these declines were the same 2 or 26 h post-insertion. In contrast, haloperidol exposure increased extracellular DOPAC, and this haloperidol-stimulated DOPAC increase was also greatly attenuated at 6 compared to 2 h post-insertion. We conclude that there is a general decline over time post-probe implantation in the ability of the striatal dopamine system to release dopamine, and perhaps to increase dopamine synthesis, in response to pharmacological challenges.

3,4-Dihydroxyphenylacetic Acid

Parental accounts regarding the physical punishment of children: discourses of dis/empowerment.

OBJECTIVE: In the light of the psychological literature (e.g., Bettleheim, 1987) which indicates various contradictions surrounding the talk about and practice of the physical punishment of children (PPC), the main aim of the present study is to identify and examine the rationale(s) used by parents which bolster(s) PPC. METHODOLOGY: Data collection--semistructured interviews carried out with 10 parents (nine female, one male). Data analysis--discourse analysis (e.g., Potter & Wetherall, 1987), a form of qualitative data analysis which is sensitive to the range and complexity of accounts (or discourses) presented by participants. Hence, we explore the various (often conflicting) discourses deployed by parents while talking about PPC, an approach which has not been used before in the study of parental discipline. RESULTS: Various oppositional discourses were used by the parents, each of which implies diverse justifications and consequences. Four in particular were identified--PPC as (1) pedagogic (educational). (2) cathartic (need relief); (3) individualistic (power assertion); (4) cyclical (reproduction)--and five instances of contradiction explicated with reference to the particular discursive context. CONCLUSION: Much confusion and complexity regarding PPC is evident from parental talk which is marked by discursive variation and contradiction. These discursive collisions notwithstanding, the participant's discourse generally implies the oppressive positioning of children and, consequently, offers support for physical punishment. The study also highlights the utility of discourse analysis as a method for interrogating PPC--and indeed other phenomena related to child abuse and neglect.

Child

Methamphetamine-stimulated striatal dopamine release declines rapidly over time following microdialysis probe insertion.

To investigate changes in striatal dopamine release over a series of brief methamphetamine (METH) exposures, METH was pulsed three times at 2-h intervals, with the first exposure occurring 2 h after microdialysis probe insertion. Whether METH was administered directly into the striatum via the microdialysate (20 microM of METH for 10 min), or via peripheral intraperitoneal (i.p.) injection (1 mg/kg METH, i.p.), the dopamine (DA) peak elicited by the third METH exposure was only 50% as large as that elicited by the first exposure, 4 h earlier. This decline in the magnitude of METH-induced DA release probably continued over at least 24 h, since the magnitude of a single peak 26 h after probe implantation was only one-seventh of that at 2 h. This reduction in the response to METH was a function of time post-probe insertion, and not of prior METH exposure. Thus, peak size was the same at 6 h post-implantation in animals which received two prior METH pulses or no prior METH pulses, and in both cases this 6-h peak was substantially lower than that at 2 h post-implantation. Circadian influences were also excluded as a factor, because size of the initial METH-induced DA peak did not vary as a function of time of probe implantation. It is concluded that METH-stimulated striatal DA release declines rapidly over time post-probe insertion. When METH exposures occur repeatedly at short intervals, this decline can mimic, but is not caused by, desensitization or depletion in response to prior METH exposure.

3,4-Dihydroxyphenylacetic Acid

Nitric oxide regulation of methamphetamine-induced dopamine release in caudate/putamen.

A possible role for NO modulation of dopamine (DA) release in the caudate/putamen (CPU) during methamphetamine (METH) exposure was investigated using in vivo microdialysis in rats. Inclusion of the nitric oxide synthase (NOS) inhibitors NG-nitro-L-arginine (NOARG), NG-nitro-L-arginine methyl ester (L-NAME) or D-NAME (less potent inhibitor) in the microdialysis buffer prior to METH minimally affected basal levels of DA, DOPAC or HVA in CPU microdialysate. However, L-NAME and NOARG produced concentration-dependent decreases of up to 64% (100 microM) in CPU DA levels in microdialysate during exposure to four doses of METH (5 mg/kg i.p./2 h), with lesser effects on DOPAC or HVA. Reversal of the NOARG inhibition was produced by inclusion of 500 microM of either L-arginine or L-citrulline in the microdialysate. D-NAME (100 microM) minimally affected levels of DA or metabolites. Paradoxically, inclusion of from 20 to 2 microM of the NOx generators isosorbide dinitrate (ISON) or sodium nitroprusside (SNP) in the microdialysis buffer decreased DA and DOPAC levels in microdialysate during METH exposure. This paradox might result from the concentrations of NOx produced by SNP or ISON being great and not regionally specific resulting in inhibition of DA release and/or synthesis while the NO generated endogenously during METH exposure may have localized and site-specific actions. Alternatively, NOx may inhibit NOS or other enzymes in the NO synthesis pathway, thereby reducing levels of an intermediate (other than NO) which potentiates DA release. In their entirety, our results indicate that NO generation in the CPU may augment the release of DA during METH exposure.

Animals

Amphetamine levels in brain microdialysate, caudate/putamen, substantia nigra and plasma after dosage that produces either behavioral or neurotoxic effects.

Extracellular levels of d-amphetamine (AMPH) in caudate/putamen were determined using microdialysis and HPLC quantitation after s.c. doses that produced increased motor activity (1 mg/kg), stereotypic behavior (2.5 mg/kg) or dopamine depletion in the caudate/putamen (4 x 5 mg/kg). In 6-mo-old rats exposed to neurotoxic doses of AMPH sulfate (4 x 5 mg/kg in a 23 degrees C environment), extracellular caudate/putamen AMPH rose to levels of 7.9 +/- 0.9 microM after the first dose and peaked at 15.1 +/- 2.5 microM after the third dose with no further increases after the fourth dose. After one or three doses of 5 mg/kg, peak plasma and tissue levels of AMPH were 1.7 +/- 0.2 and 2.9 +/- 0.3 microM in plasma, 36 +/- 6 and 73 +/- 10 in substantia nigra and 25 +/- 4 and 50 +/- 8 in caudate/putamen, respectively. Caudate/putamen extracellular AMPH levels were about three times higher (in either 6- or 12-mo-old rats) after 4 x 15 mg/kg in a 10 degrees C environment and tissue levels in caudate/putamen and substantia nigra were three to five times higher after three doses of AMPH. However, these higher levels did not produce dopamine depletion in the caudate/putamen, while the lower doses (4 x 5 mg/kg) given at 23 degrees C did. Estimated caudate/putamen extracellular AMPH levels of 2.5 to 5 microM after single doses (1 and 2.5 mg/kg) that caused hyperactivity and stereotypic behavior are compatible with the 2 to 10 microM AMPH concentrations reported to be necessary to produce pronounced dopamine release in vitro.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Effects of a cold environment or age on methamphetamine-induced dopamine release in the caudate putamen of female rats.

Extracellular levels of dopamine (DA) and metabolites as well as serotonin [5-hydroxytryptamine (5-HT)] and 5-hydroxyindoleacetic acid (5-HIAA) were determined in the caudate putamen (CPU) of either 6- or 12-month-old female rats using microdialysis and high-performance liquid chromatography with electrochemical detection (HPLC-ED) before, during, and after four consecutive injections (given at 2-h intervals) of methamphetamine (METH). In 6-month-old rats administered 4 x 5 mg/kg METH at an environmental temperature (ET) of 23 degrees C, peak extracellular DA levels (between 50 and 150 rho g/10 microliters) were attained 30-45 min after each dose of METH while dihydroxyphenylacetic acid (DOPAC) decreased steadily after the first doses of METH until it reached a plateau at 50% of control (550-700 pg/10 microliters) levels. Increases in 5-HT levels during METH administrations paralleled DA increases while 5-HIAA decreases paralleled DOPAC decreases. The total CPU DA and 5-HT content of these rats was about 65% of control at 3 days post-METH. Reducing the ET to 4 degrees C during dosing decreased the peak and average DA levels attained during the 4 x 5 mg/kg METH administration to about 50% of that observed at a 23 degrees C ET. Increasing the dose to 4 x 10 mg/kg METH (4 degrees C ET) increased peak and average CPU DA levels to 200% that observed during 4 x 5 mg/kg METH at a 23 degrees C ET. However, no significant decreases in total CPU DA content of any rats dosed with METH at a 4 degrees C ET were observed 3 days post-METH. In 12-month-old rats dosed with 4 x 5 mg/kg METH (23 degrees C ET), the peak and average extracellular DA levels were only 30-60% that of 6-month-old rats. However, the CPU DA content of older rats was significantly decreased both 3 (30% control) and 14 (60% control) days post-METH. In summary, METH toxicity may not be predicted solely by the extracellular levels of DA attained during METH administration; age and ET also greatly influence METH neurotoxicity.

3,4-Dihydroxyphenylacetic Acid

Fluoro-gold and pentamidine inhibit the in vitro and in vivo release of dopamine in the striatum of rat.

Fluoro-Gold (FG), first developed as an antifungal/antiparasitic agent, is now also used extensively as a retrograde tracer in histological studies of nervous tissue. The fact that FG is taken up by dopamine (DA) terminals before its retrograde transport to DA cell bodies implies a presynaptic interaction, though the biochemical target(s) and mechanism(s) are unknown. To further elucidate, FG and another aromatic diamidine, pentamidine, were tested on [3H]DA release and uptake in vitro from striatal slices and synaptosomes. Neither compound affected [3H]DA uptake in synaptosomes and slices, and neither inhibited DA efflux mediated through reversal of DA uptake mechanisms. NMDA-mediated glutamate-evoked DA release was completely inhibited by either FG (IC50 approximately 3 microM) or pentamidine (IC50 approximately 1 microM), and 20 mM K(+)-evoked DA release was inhibited by similar concentrations but only to 60% of control. Arginine (up to 500 microM) and spermidine (200 microM) failed to reverse 33 microM FG inhibition of either the spontaneous or the glutamate-evoked DA release, indicating that FG inhibition of release was not necessarily via blockade of either nitric oxide generation or spermidine binding to NMDA receptors. Interestingly, FG (33 microM) and pentamidine (10 microM) inhibited 1 and 5 microM D-methamphetamine (METH)-evoked [3H]DA release to approximately 50% of control, and in striatal synaptosomes, FG (33 microM) and pentamidine (10 microM) inhibited 5 microM METH- and 1.25 mM Ca(++)-evoked DA release. Additionally, in vivo brain microdialysis supported the in vitro results; 100 microM FG in the microdialysis buffer inhibited 70% of the increase in extracellular DA in the striatum produced by 2.5 mg/kg METH.(ABSTRACT TRUNCATED AT 250 WORDS)

3,4-Dihydroxyphenylacetic Acid

Acute effects of 3,4-methylenedioxymethamphetamine (MDMA) on monoamines in rat caudate.

Extracellular levels of dopamine (DA), 3,4-dihydroxyphenylacetic acid (DOPAC), homovanillic acid (HVA), 5-hydroxyindoleacetic acid (5-HIAA) and serotonin (5-HT) were assayed in the caudate of freely moving rats using microdialysis and high performance liquid chromatography with electrochemical detection (HPLC-EC) to detect changes in their release. Dialysates were assayed at 20-minute intervals for four hours after an intraperitoneal (IP) injection of MDMA (10 mg/kg). In a separate study to determine MDMA effects on total caudate levels of the above neurochemicals, animals were injected IP with MDMA (10 mg/kg) and then sacrificed at 20, 60, 120 and 180 minutes after treatment. Brains were quickly removed, and caudate nuclei were dissected for neurochemical analysis using HPLC-EC. MDMA elicited an amphetamine-like increase in DA release, followed by an increase in DA content. DOPAC and HVA were both reduced in homogenate. 5-HT release was also increased, followed by a drop in caudate homogenate levels by three hours. DA extracellular content was 686% of control at 80 minutes; caudate homogenate levels were 122% at 120 minutes. 5-HT extracellular release was 123% at 20 minutes, then decreased thereafter. It is concluded that the acute effect of MDMA on caudate is at least as great on the DA as it is on the 5-HT system.

3,4-Dihydroxyphenylacetic Acid

Adrenocortical, beta-endorphin and behavioral responses to graded stressors in differentially reared rats.

Isolation rearing has long been suspected to alter hormonal and behavioral responses to stress. Two experiments were conducted to test the hypothesis that isolates are more timid or fearful than socially reared rats when exposed to novel test environments. In both, isolate response to 3 graded stressors was compared to that of socially-reared rats. In the first experiment, animals were handled, shocked or not treated prior to testing to produce three levels of conditioned fear. They were then tested on four paradigms previously shown sensitive to conditioned fear: open field activity, emergence latency, auditory startle, and latency to accept food from the experimenter. In the second experiment, rats were given a 0-, 5- or 20-min forced swim, then sacrificed for analysis of plasma corticosterone and pituitary and hypothalamic beta-endorphin. It was found that isolates showed little evidence of enhanced behavioral timidity, although rearing effects were seen on all 4 behavioral measures. Plasma corticosterone levels increased in a graded fashion over the course of the forced swim, but there was no effect of rearing conditions. While there were no effects of rearing or stress on hypothalamic beta-endorphin, pituitary beta-endorphin content was lower in females than in males, and isolate males had lower pituitary endorphin than social males. In summary, these experiments provide no evidence that isolation rearing produces a primary, global increase in fearfulness, but identify several behavioral and hormonal differences associated with differential housing in rats.

Animals

Chemical surveillance and quality assurance for preparation of dosed (2-AAF) animal feed (ED01 study).

Protocol development of the ED01 experiment included assurances that only minimal levels of contaminants were present and correct concentrations of 2-AAF were present in animal feed. Laboratory and administrative controls were developed to assure proper feed packaging and delivery, and to conduct a personnel surveillance as well as a chemical surveillance of work environs to ensure safe work areas. Animal feed and ancillary animal supplies were monitored prior to use to provide assurances that acceptable levels of nutrients were present and to prohibit the entrance of unacceptable levels of contaminants such as pesticides and heavy metals.

2-Acetylaminofluorene

Drug-induced circling preference in rats. Correlation with monoamine levels.

Drugs of abuse, such as phencyclidine (PCP), methamphetamine (METH), and cocaine (COC) are known to affect several behaviors in rats, such as motor activity, stereotypy, and circling. In this study, we evaluated whether these drugs produce circling preferences in the presence or absence of unilateral 6-hydroxydopamine (6-OHDA)-induced lesions of the caudate nucleus. Adult male CD rats were lesioned with 10 micrograms 6-OHDA/site. Animals were dosed with PCP (15 mg/kg, ip) its congener (+) MK-801 (0.15 mg/kp, ip), METH (2 mg/kg, ip) COC (60 mg/kp, ip), or apomorphine (0.2 mg/kg, ip). Circling preference was recorded in control and lesioned rats for 2 h before animals were sacrificed to determined monoamine levels by HPLC/EC. In control animals, administration of these drugs produced 60-70% left circling. In lesioned animals, these drugs produced 78-90% ipsilateral (toward the lesion) circling, except apomorphine, which produced 60-80% contralateral (away from the lesion) circling. Dopamine (DA) and its metabolites 3,4-dihydroxyphenylacetic acid (DOPAC) and homovanillic acid (HVA) concentrations significantly decreased ipsilaterally in lesioned caudate nucleus (CN) and substantia nigra (SN). However, no significant changes were observed in nucleus accumbens (NA) and olfactory tubercles (OT). These data demonstrate that drugs of abuse like PCP, its congener (+) MK-801, METH, and COC produce a greater preference to turn toward the left than the right, a finding similar to that found in human psychosis. Since 6-OHDA lesions enhanced the circling bias and depleted DA and its metabolites DOPAC and HVA, it also suggests that the dopaminergic system may be involved in the circling behavior.

3,4-Dihydroxyphenylacetic Acid

Prenatal dexamethasone or stress but not ACTH or corticosterone alter sexual behavior in male rats.

Prenatal maternal stress in rats and mice can demasculinize and feminize the sexual behavior of adult male offspring. Causal mechanisms are unknown, but one attractive hypothesis is that stress activation of maternal adrenal glucocorticoid secretion is the responsible agent. To test this hypothesis, pregnant rats were exposed to a variety of substances which enhance glucocorticoid actions. These included ACTH (20 IU of a gel preparation, SC once daily), corticosterone (CORT; 7 mg/kg SC in oil, three times daily), or dexamethasone (DEX; 0.1 mg/kg, SC once daily). Controls included noninjected dams and a positive stress control group (restraint under bright lights three times daily). All treatments reduced maternal weight gain, DEX most potently. No treatment altered litter size, stillbirths, or sex ratio, but DEX reduced weight at birth, an effect still seen at postnatal day 85. DEX, CORT, and stress reduced male adrenal weight at birth, while DEX and CORT altered sexual differentiation as measured by anogenital distance. Stress impaired adult male sexual performance but not the lordosis quotient following exposure of animals to stud males. DEX affected both measures. No other treatment had any significant effect on sexual behavior. No treatment altered plasma LH levels, either basal or in response to an estrogen challenge in adult gonadectomized males. In adulthood there was no treatment effect on stress reactivity, measured behaviorally or by plasma glucocorticoids. Correlational analysis revealed that weight gain during pregnancy was the single best predictor of subsequent sexual performance. It is concluded that prenatal dexamethasone exposure demasculinizes and feminizes male offspring.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Glands

Postnatal methylazoxymethanol: sensitive periods and regional selectivity of effects.

Work on neonatal MAM exposure has focused primarily on exposure within the first week postpartum, and on resulting hypoplasia or stunting of the cerebellum. Rats in this study were exposed to MAM on 4 consecutive postnatal days (PND), beginning at one of six ages, from birth through weaning (PND 1, 5, 9, 13, 17, or 21). MAM was administered subcutaneously in doses of 3, 4, or 5 mg/kg twice per day. Rats were sacrificed at PNDs 28 or 84. The most sensitive age for MAM-induced stunting was determined to be PNDs 1-4. When 5 mg/kg MAM was administered twice daily on PNDs 1-4, body weight was reduced by 24% at age 28 days. Additionally, when compared to control rats, brains of the 28-day-old rats were stunted as follows: whole brain (11%), cerebellum (35%), hippocampus (11%), and olfactory bulb (27%). The effects of PND 1-4 MAM exposure were still evident at 84 days of age when cerebellum and olfactory bulbs from treated rats weighed 30% less than those same regions in control rats. These findings indicate that neonatal exposure to MAM results in permanent stunting in select regions of developing rat brain. This stunting, along with other known MAM effects, can be tailored by exposure age and dose to augment the use of MAM as a positive control for investigation of compounds with neurotoxic potential.

Age Factors

Potential of machine-vision light microscopy in toxicologic pathology.

Major developments in machine-vision light microscopy and in reagent chemistry have led to a renaissance and revolution in the use of the light microscope in biology, biotechnology, and medicine. The potential use of this technology in the field of toxicologic pathology is discussed. It is suggested that a combination of investigating living cells and tissues and fixed samples using the new technologies will lead to understanding mechanisms of toxicity. Examples of the use of the methods in basic cell biology and medicine are presented.

Animals

d-Amphetamine as a behavioral teratogen: effects depend on dose, sex, age and task.

Reports on the behavioral effects of prenatal exposure to d-amphetamine in rodents are inconsistent. Activity levels have been variously reported to increase, decrease, or show no change (as in the Collaborative Study) following such exposure. As a follow-up to the Collaborative Behavioral Teratology Study, 3 experiments have been conducted at the NCTR to examine the behavioral teratogenicity of this compound following SC dosing on days 12-15 of gestation. A higher dosage (3 mg/kg) was included and evaluations involved tasks used in the Collaborative Behavioral Teratology Study (startle, figure-8 activity) and other tasks not previously undertaken at the NCTR (short-term reactivity to novel open fields, intake of sweetened solutions). Activity measures gave especially mixed results. There was no effect of prenatal exposure, even at 3 mg/kg, upon longer-term activity, before or after amphetamine challenge, in figure-8 mazes or rectangular photocell chambers, at postnatal days (PND) 47 or 120. In one experiment, changes in reactivity to brief exposure to an open field daily over 3 days were seen in higher dosage PND 135 males but not females, while higher dosage females but not males showed lowered emergence latencies at this age. In a second experiment, no exposure-related changes were seen in reactivity to an open field in offspring of either sex at PND 47 or 70. Auditory startle amplitude showed complex dose effects in these two experiments. Females exposed to 3 mg/kg had elevated startle amplitude at PNDs 47 and 120, but not at PND 19. Males in the 3 mg/kg group had elevated startle at PND 19, but not thereafter.(ABSTRACT TRUNCATED AT 250 WORDS)

Acoustic Stimulation