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H Anisman

Publications and source records attributed to H Anisman.

At least 109 records · Page 6Linked to original sources

Multiple neurochemical and behavioral consequences of stressors: implications for depression.

Animal models of clinical depression have frequently focused on the contribution of stressors to the induction of behavioral impairments and pharmacological intervention in the amelioration of these disturbances. Stressors provoke various behavioral disturbances and influence the activity of central neurotransmitters implicated in depression. It is our contention that those variables which favor the provocation of amine depletions or prevent the development of a neurochemical adaptation will increase vulnerability to behavioral disturbances. It is essential to consider, however, that marked interindividual and interstrain differences exist in the behavioral and neurochemical response to stressors, and in the effectiveness of antidepressant treatments.

Animals↗

Stressor-induced behavioral alterations in intracranial self-stimulation from the ventral tegmental area: evidence for regional variations.

Exposure to uncontrollable footshock reduced responding for electrical brain stimulation (ICSS) from the ventral tegmental area (VTA) of the CD-1 mouse. Such an effect, however, varied with electrode position in the tegmental field. In both a rate-dependent and a current intensity paradigm, ICSS from the dorsal VTA was reduced immediately, 24 hr and 168 hr following exposure to acute uncontrollable footshock. In contrast, ICSS from the ventral VTA was unaffected by the stressor regimen. These data are consistent with the suggestion that a stressor may reduce the rewarding value ordinarily derived from ICSS. Inasmuch as the stressor differentially affected ICSS from the dorsal and ventral tegmentum, these data provide evidence for a functional differentiation within the midbrain tegmental area.

Animals↗

Strain-specific effects of antidepressants on escape deficits induced by inescapable shock.

The effects of several antidepressants (desmethylimipramine, amitriptyline and bupropion) on escape deficits induced by inescapable shock were assessed in four strains of mice. The extent of the escape interference engendered by inescapable shock varied across strains of mice. These deficits of escape performance were differentially affected by the drug treatments across strains. Repeated administration of desmethylimipramine eliminated the escape interference in A/J, but did not affect the performance in Balb/cByJ, C57BL/6J or CD-1 mice. Bupropion, in contrast, had a modest effect only in CD-1 mice. Unlike these compounds, the 5-HT reuptake blocker, amitriptyline, was found to influence escape performance irrespective of whether the drug was acutely or chronically applied. It is suggested that (a) the relative contributions of various mechanisms subserving the escape interference may vary across strains of mice, hence accounting for the strain-specific effects of the drug treatments, and (b) various antidepressants influence performance by affecting different components of the behavioral output, some of which may be apparent after acute treatment while others are expressed only after repeated treatment with the compound.

Amitriptyline↗

Alterations of immune functioning following exposure to stressor-related cues.

A critical period exists (approximately 72 h) following administration of sheep red blood cells (SRBC) during which inescapable footshock suppressed the peak splenic plaque forming cell (PFC) response and serum antibody titers in CD-1 mice. The immunosuppression was likewise provoked in mice that were exposed to the stressor 2 weeks prior to immunization and reexposed to stressor-related cues 72 h after inoculation. In contrast, when the stressor was initially applied immediately after immunization, reexposure to the stressor-related cues was found to provoke an immunoenhancement. Moreover, stressor exposure immediately following inoculation had the effect of counteracting the immunosuppression otherwise induced by a stressor applied at the 72-h interval. Evidently, environmental cues associated with a stressor provoke profound alterations of immunoresponsiveness, but the direction of the effect is dependent upon the time at which the stressor was initially applied.

Animals↗

Critical periods associated with stressor effects on antibody titers and on the plaque-forming cell response to sheep red blood cells.

A series of experiments assessed the effects of stressors on the antibody response in mice. A critical period existed (72 h following antigen administration; sheep red blood cells 10(6) cells, ip) at which footshock reduced the plaque-forming cell (PFC) response in CD-1 mice. When shock was applied at other intervals following immunization (0, 24, 48, or 95 h) the PFC response was unaffected. The immunosuppression was unrelated to the time between stressor application and sacrifice, in that the reduced PFC response was evident both 24 and 48 h after stressor application, and reduced serum antibody titers (IgG) were evident 1 week after stressor exposure. The reduction of the PFC response was dependent on the severity of the stressor, but was not related to stressor controllability, being evident after both escapable and inescapable shock. It appears that stressful events may profoundly influence the immune response but the time between antigen administration and subsequent exposure to a stressor is critical in determining whether such an effect will be evident.

Animals↗

Stressor-provoked behavioral changes in six strains of mice.

Behavioral changes induced by inescapable shock were examined in six strains of mice. Exposure to shock provoked time-dependent disturbances of shuttle escape performance. In some strains the shock treatment did not affect escape performance, whereas in others profound performance deficits were evident. The inescapable shock treatment likewise induced strain-dependent alterations of performance in a forced-swim task. In most instances the shock treatment initially provoked invigorated responding, but in other strains the shock had no effect or depressed active responding. Finally, Y-maze spontaneous alteration performance was not affected by the shock treatment, although a strain-dependent increase of perseverative responses was evident. The occurrence of a stressor-induced deficit in one task in a particular strain of mouse was not predictive of behavioral alterations in a second task. These data are discussed with respect to animal models of depression and genetic differences associated with the response to stressors.

Animals↗

Strain-specific effects of inescapable shock on intracranial self-stimulation from the nucleus accumbens.

Responding for electrical stimulation from the nucleus accumbens was assessed in 3 inbred strains of mice (DBA/2J, C57BL/6J and BALB/cByJ) following exposure to uncontrollable footshock. While the operant response was most readily acquired in the DBA/2J strain, exposure to inescapable shock in this strain induced a marked deterioration of self-stimulation responding, which tended to dissipate over a 168-h period. In contrast to these mice, the stressor did not affect self-stimulation responding in the C57BL/6J strain, and produced a transient enhancement of responding in BALB/cByJ mice. It appears that although uncontrollable aversive events may engender an anhedonic effect, such an outcome is strain-dependent. These data suggest the importance of considering individual and genetic differences in the development of animal models of depression.

Animals↗

Variations of norepinephrine concentrations following chronic stressor application.

Exposure to acute uncontrollable footshock increased utilization of central norepinephrine (NE), and in some brain regions, most notably the hypothalamus, a decline in amine concentrations was induced. Utilization of NE was likewise increased in mice exposed to footshock on 14 consecutive days, but the NE reduction was not evident, suggesting that the chronic stressor provoked a compensatory increase of amine synthesis. In mice that were decapitated 24 hr after the chronic shock regimen, NE concentrations exceeded those of nonshocked animals or mice decapitated immediately after the last shock session, possibly reflecting a sustained increase of amine synthesis. The altered NE utilization and concentrations associated with chronic footshock were evident irrespective of whether the stressor was applied on a predictable schedule or on an intermittent basis, although the former treatment was somewhat more effective in increasing concentrations and utilization.

Animals↗

Evaluation of stressor effects on intracranial self-stimulation from the nucleus accumbens and the substantia nigra in a current intensity paradigm.

The effect of uncontrollable footshock was evaluated in animals responding for intracranial self-stimulation from the nucleus accumbens and the substantia nigra (pars compacta) in a descending current intensity paradigm. Responding for brain stimulation from the nucleus accumbens was found to be affected by the stressor at the upper end of the rate-intensity curve. In contrast, responding for brain stimulation from the substantia nigra was unaffected by the stressor at any of the current intensities employed. The variations of responding for self-stimulation from the nucleus accumbens were unrelated to alterations of locomotor activity or rearing. It is suggested that stressor-provoked reductions of responding for intracranial self-stimulation are not a result of the brain stimulation taking on aversive properties, but rather reflect a reduction in the reinforcing or motivational value associated with the stimulation.

Animals↗

Sensitization of norepinephrine activity following acute and chronic footshock.

Acute inescapable shock provokes an increase of norepinephrine (NE) utilization, leading to transient reductions of amine concentrations. In contrast, increased amine levels are evident after chronic shock, apparently because of a compensatory increase in synthesis. In acutely shocked animals subsequent re-exposure to even a limited amount of shock reinduced the NE reduction, whereas in chronically shocked mice a comparable re-exposure stressor increased amine levels and utilization. It is suggested that the mechanisms responsible for the amine release in acutely stressed animals, as well as those mechanisms subserving the increased amine levels evident after chronic stressor application, may be subject to conditioning or sensitization processes.

Animals↗

Amphetamine withdrawal: a behavioral evaluation.

The effects of withdrawal from long-term amphetamine treatment of intracranial self-stimulation, forced swim-induced immobility, shuttle escape performance, acoustic startle and locomotor activity were evaluated. Mice implanted with stimulating electrodes in the lateral hypothalamus demonstrated stable and reliable rates of self-stimulation responding. After exposure to a chronic schedule of amphetamine treatment response rates were severely depressed. In addition to modifying intracranial self-stimulation responding, amphetamine withdrawal increased the duration of immobility in a forced-swim situation. Although chronic amphetamine exposure induced pronounced behavioral changes in the intracranial self-stimulation and forced swim tasks, drug withdrawal had little effect on shuttle escape performance, acoustic startle and locomotor activity. Based on these findings it was suggested that the development of post-amphetamine depression in the self-stimulation and forced swim paradigms was not related to variations in motoric or arousal mechanisms resulting from amphetamine withdrawal, but rather involved drug-induced changes in motivational processes.

Acoustic Stimulation↗

Influence of p-chloroamphetamine and methysergide on the escape deficits provoked by inescapable shock.

The effects of serotonergic manipulations on the escape interference engendered by exposure to inescapable shock were assessed. Consistent with the view that the behavioral interference was related to reductions of serotonin (5-HT), treatment with the 5-HT receptor blocker methysergide mimicked the effects of inescapable shock in that it increased escape latencies. Conversely, acute treatment with a moderate dose of the 5-HT releasing agent p-chloroamphetamine (PCA) effectively antagonized the escape interference ordinarily provoked by inescapable shock. The effects of PCA were behaviorally distinguishable from the previously observed effects of catecholamine stimulants. Whereas catecholamine stimulants applied prior to either inescapable shock or escape testing eliminated the interference, PCA antagonized the behavioral disruption only if it was administered before testing. It is suggested that catecholamine alterations may be fundamental in the provocation of the interference, whereas 5-HT variations may contribute to the expression of the behavioral disturbance.

Amphetamines↗

Alterations of amphetamine elicited perseveration and locomotor excitation following acute and repeated stressor application.

The effects of acute and repeated stressor application on amphetamine-induced Y-maze perseveration and locomotor activity were assessed. When the stimulus context associated with an acute stressor (restraint or restraint plus shock) was distinctively different from that in which an amphetamine test was conducted 72 hr afterward, neither perseveration nor locomotor excitation were augmented. However, following three restraint sessions the amphetamine elicited perseveration was enhanced. With a more protracted regimen applied over 15 days the augmented perseveration was absent, whereas the amphetamine-provoked motor excitation was increased. While stimulus factors have been shown to be fundamental, it is provisionally suggested that the stressor induced enhancement of amphetamine-elicited perseveration is influenced by sensitization processes. However, the sensitization is apparent only under some stress regimens, and the behavioral expression of the sensitization may be obfuscated if the stressor is too severe. Furthermore, it appears that the mechanisms operative in enhancing the stressor provoked amphetamine motor excitation are independent of those which subserve the augmented perseveration.

Amphetamine↗

Stressor-provoked response patterns in a swim task: modification by diazepam.

When placed in a water-filled arena in which one area is illuminated mice tend to remain in the illuminated region. Moreover, in a forced-swim task mice initially exhibit vigorous responding followed by a rapid decay of active swimming, and the adoption of a characteristic floating posture. Immediately following exposure to inescapable shock the response invigoration was appreciably enhanced, as was the tendency to remain in the illuminated region of the arena. Administration of low doses of diazepam (0.5 and 1.0 mg/kg) prior to testing effectively eliminated the response invigoration, as well as the response of approaching the illuminated region of the arena. It is proposed that the behavioral variations evident soon after uncontrollable shock are related to a transient increase of anxiety or vigilance. Moreover, it is suggested that several time-dependent behavioral variations associated with inescapable shock may be related to alterations of anxiety.

Animals↗

Central norepinephrine and plasma corticosterone following acute and chronic stressors: influence of social isolation and handling.

Exposure to acute inescapable shock resulted in a decline of hypothalamic norepinephrine (NE), and an increase of plasma corticosterone concentrations. With repeated application of the stressor over 15 successive days the reduction of NE was eliminated and concentrations of the amine actually exceeded those of control animals. In contrast to the NE variations, plasma corticosterone concentrations were elevated irrespective of whether mice received a single or repeated sessions of inescapable footshock. Moreover, unlike NE concentrations, handling mice on successive days in the absence of the shock treatment was sufficient to provoke a modest, but reliable increase of corticosterone concentrations. It is suggested that the hypothalamic NE and plasma corticosterone changes may be reflective of different attributes of the stressor or are subserved by different mechanisms. It is suggested that variations in both these systems represent adaptive changes to meet environmental demands.

Animals↗

Behavioral and neurochemical consequences associated with stressors.

A series of neurochemical changes occur in response to stressors that may permit the organism to contend with environmental demands. When the organism is exposed to a stressor the utilization and synthesis of brain NE and DA increases. Under conditions where utilization exceeds synthesis, owing either to the nature of the stressor (uncontrollability), experiential factors (e.g., prior exposure to acute stressors), or organismic variables (e.g., strain, age), reductions of the amine may be incurred. It is suggested that the reduced amine concentrations leave the organism less well prepared to deal with the demands placed upon it, and ultimately increase vulnerability to psychological disturbances. It follows that the more persistent the amine reduction, the greater the probability of pathology being engendered. In effect, in our analyses of stressor effects it is not sufficient merely to determine whether amine reductions occur, but also to assess the ability of the system to re-establish adequate levels and turnover. Additionally, since stressors may result in the conditioning or sensitization of neurochemical processes, it is essential not only to assess the immediate impact of the stressor, but also the neurochemical variations that occur upon re-exposure to stressors or cues associated with the stressor. In considering the consequences of stressors and the potential implications for human pathology, it is important to consider the impact of chronic stressors. After all, many stressors encountered by humans are chronic in nature, particularly if one considers ruminations associated with the aversive event. It seems that with repeated stressor application a further series of adaptive neurochemical changes occur. The activity of tyrosine hydroxylase is increased, and concentrations of NE and DA approach those of nonstressed animals. Indeed, it appears that after stressor termination the increased amine synthesis may persist for some time leading to a further increase of amine concentrations, which may enable the organism to deal with environmental demands. In addition, receptor variations may occur, including down-regulation of beta-NE receptors, and possibly alterations of alpha-1 and alpha-2 receptors as well. It is believed that the receptor variations may be the essential element in maintaining the integrity of the organism. It is our contention that where such adaptive changes do not occur or are slow in occurring, pharmacological intervention may be necessary to engender such neuronal variations.

3,4-Dihydroxyphenylacetic Acid↗

Differential effects of pimozide on response-rate and choice accuracy in a self-stimulation paradigm in mice.

Intracranial self-stimulation (ICSS) from the dopamine (DA) A9 cell grouping was evaluated in mice following pimozide administration in both a one hole head dipping task and a two hole discrimination paradigm. While pimozide reliably decreased response rates, choice accuracy in the discrimination paradigm was unaffected by the drug treatment. The data were taken to suggest that neuroleptics influence response rate owing to motoric disturbances, without influencing the effectiveness of cues that previously had been associated with primary reinforcement.

Animals↗

Stressor invoked exacerbation of amphetamine-elicited perseveration.

The provocation of stimulus preservation induced by amphetamine in a Y-maze was appreciably enhanced in animals that had been exposed to uncontrollable shock, whereas controllable shock did not influence performance. The enhancement of the stimulus perseveration was evident irrespective of whether the stressor was applied immediately or 72 hr prior to the perseveration test, provided that the stimulus complex in which shock was delivered was similar to that in which the perseveration test was conducted. When the two environments were distinctively different from one another the enhancement of stimulus perseveration was evident immediately after shock exposure, but not 72 hr after shock. It is suggested that stressors may have long-term effects of amphetamine-elicited perseveration, but the expression of such an effect is dependent upon the stimulus context in which the behavior is examined. Moreover, it is suggested that evaluation of amphetamine-induced behavioral changes, and possibly amphetamine-elicited and idiopathic psychosis, should consider the stress history of the organism.

Amphetamine↗