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K A Miczek

Publications and source records attributed to K A Miczek.

At least 19 recordsLinked to original sources

Accumbal dopamine and serotonin in anticipation of the next aggressive episode in rats.

Autonomic and limbic neural activities are linked to aggressive behavior, and it is hypothesized that activities in the cardiovascular and monoaminergic systems play a role in preparing for an aggressive challenge. The objective was to learn about the emergence of monoamine activity in nucleus accumbens before an aggressive confrontation that was omitted at the regular time of occurrence, dissociating the motoric from the aminergic activity. Dopamine, serotonin, heart rate and behavioral activity were monitored before, during and after a single 10-min confrontation in resident male Long-Evans rats fitted with a microdialysis probe in the n. accumbens and with a telemetry sender (experiment 1). DA, but not 5-HT efflux, was confirmed to increase in n. accumbens during and after a single aggressive episode. In aggressive males that confronted an opponent daily for 10 days (experiment 2) heart rate rose 1 h before the regularly scheduled encounter relative to control rats, as measured on day 11 in the absence of any aggression. Concurrently, DA levels increased by 60-70% over baseline levels and 5-HT levels decreased by 30-35% compared to baseline levels. These changes were sustained over 1 h, and contrasted with no significant changes in DA, 5-HT, heart rate or behavioral activity in control rats. The rise in mesolimbic DA appears to be significant in anticipating the physiological and behavioral demands of an aggressive episode, and the fall in 5-HT in its termination, dissociated from the actual execution of the behavior.

Aggression↗

Aggressive behavioral phenotypes in mice.

Aggressive behavior in male and female mice occurs in conflicts with intruding rivals, most often for the purpose of suppressing the reproductive success of the opponent. The behavioral repertoire of fighting is composed of intricately sequenced bursts of species-typical elements, with the resident displaying offensive and the intruder defensive acts and postures. The probability of occurrence as well as the frequency, duration, temporal and sequential patterns of aggressive behavior can be quantified with ethological methods. Classic selection and strain comparisons show the heritability of aggressive behavior, and point to the influence of several genes, including some of them on the Y chromosome. However, genetic effects on aggressive behavior critically depend upon the background strain, maternal environment and the intruder. These factors are equally important in determining changes in aggressive behavior in mice with a specific gene deletion. While changes in aggression characterize mutant mice involving a variety of genes, no pattern has emerged that links particular gene products (i.e. enzyme, peptide, receptor) to either an increase or a decrease in aggressive behavior, but rather emphasizes polygenic influences. A potentially common mechanism may be some components of the serotonin system, since alterations in 5-HT neurotransmission have been found in several of the KO mice that display unusual aggressive behavior.

Aggression↗

Repeated social-defeat stress, cocaine or morphine. Effects on behavioral sensitization and intravenous cocaine self-administration "binges".

RATIONALE: Repeated social stress experiences engender "behavioral sensitization" and may also increase the potential for abuse of psychomotor stimulants, particularly cocaine use during "binges." OBJECTIVE: Experimental protocols were designed to induce behavioral sensitization through exposures to social-defeat stress or injections of cocaine or morphine. The impact of stress, cocaine or morphine sensitization on cocaine self-administration was assessed using several protocols. METHODS: Behavioral sensitization was induced in male Long-Evans rats by four social-defeat stress episodes, each separated by 72 h. Expression was assessed following a challenge of D-amphetamine (1.0 mg/kg) or cocaine (7.5 mg/kg or 10.0 mg/kg), 10-15 days after the last defeat. Sensitization to cocaine (15.0 mg/kg) or morphine (10.0 mg/kg) was induced via daily administrations for 10 days and later assessed by challenges with cocaine or morphine. Subsequently, i.v. self-administration of cocaine was analyzed for (i) rates of acquisition, (ii) sensitivity to various doses, (iii) "breaking points" during a progressive ratio schedule of cocaine reinforcement, and (iv) patterns of intake during a 24-h binge, in sensitized and control rats. RESULTS: Social-defeat stress, cocaine or morphine administrations increased the locomotor response to stimulant challenges. During 24-h cocaine self-administration binges, sensitization to social-defeat stress or to cocaine prolonged responding, resulting in more cocaine intake. In addition, cocaine sensitization increased the rate of acquisition to cocaine self-administration and the breaking point during a progressive ratio schedule. CONCLUSION: The process of sensitization to social-defeat stress or cocaine intensifies cocaine intake during a binge, supporting the hypothesis that sensitization may facilitate the transition to compulsive drug taking.

Animals↗

Alcohol, allopregnanolone and aggression in mice.

RATIONALE: Aggressive behavior of certain individual animals can be greatly increased when under the influence of low doses of alcohol. One of alcohol's neurochemical actions that may be relevant to alcohol-heightened aggression (AHA) is its positive modulation of the GABA(A) receptor complex. OBJECTIVE: The objective of this study was to investigate whether alcohol interacts with an endogenous modulator of the GABA(A) receptor complex, the neurosteroid allopregnanolone, in stimulating/heightening aggressive behavior. METHODS AND RESULTS: The first experiment was designed to test the hypothesis that neurosteroid modulators of the GABA(A) receptor complex will increase aggression and to compare these effects with alcohol. Male CFW mice were injected with allopregnanolone, alphaxalone (3-30 mg/kg, i.p.), or alcohol (1.0 g/kg, p.o.) 15 min prior to a 5-min confrontation with an intruder. Moderate doses of alcohol and the neurosteroids increased aggression by ca. 50% above baseline; impaired locomotion was seen only at the highest doses. A second experiment compared AHA and ANA (i.e. alcohol-non-heightened aggression) mice by giving allopregnanolone (1-10 mg/kg) with a simultaneous oral injection of alcohol (0.6 or 1.0 g/kg) or water. When administered with water and the 0.6 g/kg dose of alcohol, allopregnanolone increased the aggression of AHA and ANA mice. Administration of the 1.0 g/kg dose of alcohol in ANA mice prevented allopregnanolone-heightened aggression. In AHA mice, addition of allopregnanolone to 1.0 g/kg alcohol dose-dependently reduced alcohol-heightened aggression, suggesting potentiation of alcohol's suppressive effects on aggression. CONCLUSIONS: The neuroactive steroid allopregnanolone appears to play an important role in alcohol-heightened aggression. Moreover, the upward shift of the aggression-heightening effects of alcohol and the downward shift at the maximally effective alcohol dose by allopregnanolone point to a shared mechanism for both positive modulators of the GABA(A) receptor complex.

Aggression↗

Repeated self-administered cocaine "binges" in rats: effects on cocaine intake and withdrawal.

RATIONALE: Repeated access to cocaine may engender behavioral sensitization, which emerges as an enhanced response to the effects of cocaine. Repeated exposure to prolonged self-administration sessions has been shown to produce an escalation in cocaine intake. OBJECTIVE: The objective of the present study was to identify the consequence of repeated exposure to prolonged access to self-administered cocaine. METHODS: Pairs of rats that were matched for training, housing, and surgery were treated as a single experimental unit, and these pairs were separated into groups for two separate experiments. In the first experiment, one animal of the pair acquired and maintained a stable rate for i.v. cocaine self-administration (0.5 mg/infusion), while the second rat was yoked such that it passively received saline infusions in the same pattern. After acquisition, the active self-administration rats were given free access to cocaine for 16 h (binge), while the yoked animal continued to receive infusions of saline. Twenty-four hours after the binge, both animals were exposed to tactile startle stimuli, and ultrasonic vocalizations (USVs) and startle reflexes were measured. The animals were exposed to three cocaine binges and 24 h post-binge startle tests with an interval of 10 days between binges, and then a fourth binge, with an interval of 24 h separating binges three and four. In the second experiment, pairs of rats were separated into three groups (A, B, and C). The active cocaine rats acquired self-administration and were allowed access to a 16-h cocaine binge while their yoked controls received saline. Twenty-four hours after the binge, all animals were tested for emission of USVs and startle reflexes with an identical protocol as that in experiment 1. Immediately after exposure to the startle stimuli, the self-administering animals were again allowed to self-administer cocaine for either 16 (group A), 12 (group B), or 8 h (group C). RESULTS: In experiment 1, the total amount of cocaine self-administered was significantly decreased when the cocaine binges were separated by 10 days, but total cocaine intake during the binge significantly increased when the drug-free interval was 24 h. The pattern of self-administration and the withdrawal response remained unchanged over consecutive binges. In experiment 2, rats that self-administered cocaine for either 16 or 12 h emitted significantly less USVs immediately after renewed access than they emitted 24 h after the first access period. CONCLUSION: It appeared that consecutive prolonged self-administration was insufficient to produce sensitization, as measured by cocaine intake and renewed access to self-administered cocaine was sufficient to reduce the large number of USVs that characterize withdrawal from a cocaine binge.

Animals↗

Zolmitriptan--a 5-HT1B/D agonist, alcohol, and aggression in mice.

RATIONALE: Zolmitriptan is an anti-migraine agent with action at 5-HT1B/D receptors. It penetrates into the central nervous system and, like other 5-HT1B/D agonists, its pharmacotherapeutic profile may include significant anti-aggressive effects. OBJECTIVES: To examine whether zolmitriptan has potential anti-aggressive effects by studying two kinds of aggressive behavior in mice--species-typical and aggression under the influence of alcohol. A second objective was to study whether pre- or post-synaptic receptors mediate these anti-aggressive effects. METHODS: Initially, the anti-aggressive effects of zolmitriptan were studied in male CFW mice during 5-min resident-intruder confrontations. To confirm the 5-HT1B receptor as a critical site of action for the anti-aggressive effects, the zolmitriptan dose-effect determinations were repeated after pretreatment with GR 127935 (10 mg/kg, i.p.). In further experiments, mice were treated concurrently with alcohol (1.0 g/kg, p.o.) and zolmitriptan (1-30 mg/kg, i.p.) in order to compare the effects of this agonist on species-typical and alcohol-heightened aggression. Finally, mice were infused with the neurotoxin 5,7-DHT (10 microg) into the raphé area to eliminate somatodendritic and presynaptic autoreceptors. The anti-aggressive effects of zolmitriptan (17 mg/kg, i.p.) or CP-94,253 (10 mg/kg, i.p.) were assessed 10 days after the lesion, and levels of 5-HT and 5-HIAA were measured in the hippocampus and prefrontal cortex. RESULTS: Zolmitriptan exerted behaviorally specific anti-aggressive effects. The reduction in aggression was antagonized by GR 127935, indicated by a rightward shift in the dose-effect curves of zolmitriptan, showing the specificity for the 5-HT1B receptors. Zolmitriptan also decreased alcohol-heightened aggression with equal efficacy. The anti-aggressive effects of CP-94,253 and zolmitriptan remained unaltered by 5,7-DHT lesions that depleted cortical and hippocampal 5-HT by 60-80%. CONCLUSIONS: Zolmitriptan proved to be an effective and behaviorally specific anti-aggressive agent in situations that engender moderate and alcohol-heightened levels of aggression. These effects are potentially due to activation of post-synaptic 5-HT1BD receptors.

Aggression↗

Alprazolam withdrawal and tolerance measured in the social conflict test in mice.

RATIONALE: It is difficult to assess withdrawal from benzodiazepines, and preclinical assessment of behaviour during social conflict offers the opportunity to quantify tolerance and withdrawal by measuring aggressive, defensive and social behaviour. The relationship between benzodiazepine withdrawal symptoms and the development of tolerance is not well understood. Are withdrawal symptoms dependent on the development of tolerance? OBJECTIVE: The aim of the present study was to compare the development of tolerance to alprazolam effects on the behavioural repertoire during the social conflict test in mice, and to determine whether or not behavioural changes during alprazolam withdrawal are correlated with the development of tolerance. METHODS: An experimental model consisting of interactions of pairs of singly housed male mice with non-aggressive group-housed male mice was used. Alprazolam (1 mg/kg) was given orally once or repeatedly (twice daily) for 8 or 21 days. Behaviour was measured, based on videoanalysis, in aggressive mice before treatment, 30 min or 3 days after the last dose, respectively. RESULTS: A single administration of alprazolam significantly reduced aggressive activities and increased social investigation without changing locomotion or other behaviour. Tolerance developed to the inhibitory effects of alprazolam on aggressive behaviour but not to the effects of alprazolam to increase social investigation. When withdrawn from alprazolam, mice exhibited less social investigation and locomotion while aggression tended to be increased. CONCLUSIONS: Tolerance to the alprazolam effects on aggressive and social behaviour developed at different rates suggesting that they are differentially regulated. Furthermore, the evidence of withdrawal responses appearing in a behaviour to which tolerance had not developed does suggest that tolerance and withdrawal phenomena are dissociated in benzodiazepines.

Alprazolam↗

Oral drug self-administration in the home cage of mice: alcohol-heightened aggression and inhibition by the 5-HT1B agonist anpirtoline.

RATIONALE: In order to model heightened aggression after alcohol consumption and to study the inhibitory influence of 5-HT1B receptors on drinking and fighting, an experimental procedure should enable self-administration of precise amounts of alcohol in a limited period of time before an aggressive confrontation. OBJECTIVES: To design a new device that can reinforce operant responding by the delivery of sweet alcohol in the resident mouse home cage, where aggressive behavior toward an intruder can subsequently be examined, and to demonstrate inhibition of alcohol-heightened aggression by 5-HT1B receptor agonist treatment. METHODS: Within one experimental session, all singly housed CFW male mice (n=26) performed a nose-poke response that was reinforced by 0.05 ml sucrose. Using the sucrose fading technique, eventually the mice consumed a 6% ethanol/4% sucrose solution after each fifth nose poke during daily 15-min experimental sessions. The number of ethanol reinforcements was adjusted so that 0.6, 1.0, 1.7, and 3.0-g/kg doses were consumed in 15 min or less. Assays confirmed blood alcohol levels at 68.1 mg/dl for intake of 1.0 g/kg. After consuming a specific dose of ethanol in the form of a fixed number of response-dependent deliveries, the response panel was removed from the home cage and, 15 min later, the resident confronted a male intruder. Anpirtoline was administered either before alcohol self-administration or before the aggressive confrontation. RESULTS: After being reinforced with 1.0 g/kg or 1.7 g/kg sweet ethanol, the mice significantly increased attack and threat behavior relative to their aggressive behavior following sucrose or water consumption only. Treatment with the 5-HT1B receptor agonist anpirtoline (0.125, 0.25, 0.5 mg/kg, i.p.) before the confrontation decreased alcohol-heightened aggression and species-typical aggression in the absence of changes in other elements of the behavioral repertoire. Anpirtoline affected ethanol-reinforced behavior only at doses that were 5-10 times higher than those producing anti-aggressive effects. CONCLUSIONS: Self-administration of alcohol in the home cage of mice is readily accomplished with the aid of a simple, removable panel. The effective inhibition of high levels of aggressive behavior due to alcohol consumption after anpirtoline treatment confirm the 5-HT1B receptor as a critical site in the termination of aggression.

Aggression↗

Persistent suppression of ethanol self-administration by brief social stress in rats and increased startle response as index of withdrawal.

Excessive alcohol drinking is often linked to the experience of stress, but experimental approaches using animal models of alcohol self-administration have had widely varying outcomes. The objective was to determine how daily exposure to brief, predictable social stress would change alcohol self-administration in rats in a daily limited access protocol. Male Long-Evans rats had either access to a 10% ethanol solution for 15 min in the home cage setting (n=20) or were reinforced with 15% ethanol deliveries for every fifth lever press (n=10). Subsequently, all rats were subjected to brief social stress for five consecutive days. Social stress consisted of attacks by an opponent for 5 min followed by exposure to threats while in a protective cage for 30 min. In both the home cage drinking and operant conditioning groups, social stress exposure significantly decreased alcohol intake or rate of alcohol reinforcements, respectively. When alcohol intake was scheduled immediately before social stress (i.e., 24 h after the previous social stress episode), a decrease was observed with a delay of 1 or 2 days. When alcohol intake was scheduled 4 h after stress, no changes in intake or alcohol reinforcements were observed. Animals that consumed a low dose of ethanol displayed less defensive behavior during social stress compared to water-drinking animals, and showed an increased startle reflex at 8 and 56 h after discontinuation of daily ethanol access. The current experimental protocols of social defeat stress reveal a transient suppression rather than a facilitation of alcohol consumption.

Aggression↗

Short or continuous social stress: suppression of continuously available ethanol intake in subordinate rats.

We explored the effects of short, intermediate, and continuous social stress on daily ethanol and water intake in rats. The study was designed to: (1) detect increases in intake during hours when animals were not stressed; and (2) detect shifts in preference from solutions with high to low alcohol content. Male Long-Evans rats acquired ethanol self-administration using a sucrose-fading procedure, which was followed by continuous access to 10% and 3% ethanol solutions and water. After intake stabilized, rats were exposed to three periods of five consecutive days of social stress, with 8-10 days without stress in between. Short social stress consisted of being attacked and defeated by an aggressive opponent, followed by 30 min exposure to threats by the aggressive male while in a protective cage. Intermediate and continuous social stress consisted of a 6 h or 24 h 'threat of attack' exposure, respectively. All stress exposures reduced daily intake of 10% ethanol, did not cause changes in intake of 3% ethanol, and caused increases in water intake. No compensatory ethanol consumption was observed on stress days or after stress exposure was discontinued. These results are at variance with the hypothesis for increased alcohol consumption during or following social stress episodes.

Alcohol Drinking↗

Zolpidem, triazolam, and diazepam decrease distress vocalizations in mouse pups: differential antagonism by flumazenil and beta-Carboline-3-carboxylate-t-butyl ester (beta-CCt).

In response to stressful events, neonatal mice emit ultrasonic vocalizations (USVs), which are suppressed by BZ agonists. The present study examined the role of the benzodiazepine/alpha1 (BZ/alpha1) receptor subtype in the suppression engendered by the BZ/alpha1-preferring agonist zolpidem and the nonselective BZ agonists triazolam and diazepam. The role of BZ receptor subtypes was explored further by conducting antagonism studies using the BZ/alpha1-preferring antagonist beta-carboline-3-carboxylate-t-butyl ester (beta-CCt), in comparison with the nonselective BZ antagonist flumazenil. Mouse pups (CFW strain) were separated from their dam and littermates at day 7, and placed for 4 min in a test chamber with reduced ambient temperature (19 +/- 1 degrees C) for recording USVs, motor incoordination (measured as a pup rolling on its back per grid cross), and body temperature. Zolpidem, triazolam, and diazepam suppressed USVs in a dose-dependent manner, concomitant with increases in incoordination and augmentation of hypothermia. These effects of the three BZ agonists were blocked by flumazenil in a manner consistent with surmountable antagonism. The ability of zolpidem, but not triazolam or diazepam, to suppress USVs and augment hypothermia was antagonized by beta-CCt, whereas the increase in motor incoordination engendered by zolpidem, triazolam, and diazepam was not sensitive to beta-CCt administration. Collectively, these results suggest that zolpidem suppresses distress USVs in mouse pups by a mechanism distinct from that of typical BZs. Furthermore, suppression of distress USVs by zolpidem may involve BZ/alpha1 receptors and a nonanxiolytic mechanism, such as hypothermia.

Animals↗

Alterations within the endogenous opioid system in mice with targeted deletion of the neutral endopeptidase ('enkephalinase') gene.

The biological inactivation of enkephalins by neutral endopeptidase (enkephalinase, NEP, EC3.4.24.11) represents a major mechanism for the termination of enkephalinergic signalling in brain. A pharmacological blockade of NEP-activity enhances extracellular enkephalin concentrations and induces opioid-dependent analgesia. Recently, knockout mice lacking the enzyme NEP have been developed [Lu et al., J. Exp. Med. 1995;181:2271-2275]. The present study investigates the functional consequences and biochemical compensatory strategies of a systemic elimination of NEP activity in these knockout mice. Using biochemical and behavioural tests we found that the lack of NEP activity in brain is not compensated by enhanced activities of alternative enkephalin-degrading enzymes. Also no change in enkephalin biosynthesis was detectable by in situ methods quantifying striatal proenkephalin-mRNA levels in NEP-deficient mice compared with wildtype. Only a 21% reduction of mu receptor density in crude brain homogenates of NEP knockout mice was observed, while delta- and kappa-opioid receptor densities were unchanged. This receptor downregulation was also confirmed functionally in the hot-plate paradigm. NEP knockouts developed normally, but showed enhanced aggressive behaviour in the resident-intruder paradigm, and altered locomotor activity as assessed in the photobeam system. Thus, although NEP plays a substantial role in enkephalinergic neurotransmission, the biochemical adaptations within the opioid system of NEP-deficient mice are of only modest nature.

Aggression↗

Aggressive behavior, increased accumbal dopamine, and decreased cortical serotonin in rats.

Dopamine (DA) and serotonin have been implicated in the regulation of aggressive behavior, but it has remained challenging to assess the dynamic changes in these neurotransmitters while aggressive behavior is in progress. The objective of this study was to learn about ongoing monoamine activity in corticolimbic areas during aggressive confrontations in rats. Male Long-Evans rats were implanted with a microdialysis probe aimed at the nucleus accumbens (NAC) or medial prefrontal cortex (PFC); next, 10 min samples were collected before, during, and after a 10 min confrontation. Rats continued to display aggressive behavior while being sampled, and they performed two to six attack bites as well as 140 sec of aggressive acts and postures. Dopamine levels in NAC were significantly increased up to 60 min after the confrontation. Peak levels of 140% were achieved approximately 20-30 min after the confrontation. No concurrent changes in accumbal serotonin levels were seen during or after the confrontation. Dopamine and serotonin levels in PFC changed in the opposite direction, with a sustained decrease in serotonin to 80% of baseline levels during and after the confrontation and an increase in dopamine to 120% after the confrontation. The temporal pattern of monoamine changes, which followed rather than preceded the confrontation, points to a significant role of accumbal and cortical DA and 5-hydroxytryptamine in the consequences as opposed to the triggering of aggressive acts. The increase in accumbal DA in aggressive animals supports the hypothesis that this neural system is linked to the execution of biologically salient and demanding behavior.

Aggression↗

Distress vocalizations in maternally separated mouse pups: modulation via 5-HT(1A), 5-HT(1B) and GABA(A) receptors.

RATIONALE: Young rodents emit ultrasonic vocalizations (USVs) when separated from their dams and littermates. Pharmacological agents that act on GABA(A) and/or 5-HT receptors and that alleviate anxiety in humans reduce the emission of these calls. OBJECTIVES: 1) to investigate specific 5-HT1 receptor subtypes that modulate maternal separation-induced USVs in mice; 2) to assess the behavioral specificity of these effects; and 3) to compare 5-HT1 agonists with a positive neurosteroid modulator of the GABA(A) receptor complex. METHODS: Seven-day old CFW mouse pups were isolated from their littermates and placed onto a 20 degrees C surface for 4 min. USVs between 30 and 80 kHz, grid crossing, and rectal temperature were measured in separate groups of mouse pups following subcutaneous administration of 5-HT1A and 5-HT1B receptor agonists and antagonists, the neurosteroid allopregnanolone, or the benzodiazepine midazolam. RESULTS: The 5-HT1A agonists (+)8-OH-DPAT (0.01-0.1 mg/kg) and flesinoxan (0.3-1.0 mg/kg), the selective 5-HT1B agonist CP-94,253 (0.03-30.0 mg/kg), and the mixed 5-HT1B/2C receptor agonist TFMPP (0.1-10.0 mg/kg) dose-dependently reduced USVs. These effects were reversed by the 5-HT1A receptor antagonist WAY 100,635 (0.1 mg/kg) or the 5-HT1B/D receptor antagonist GR 127935 (0.1 mg/kg). The effects of TFMPP were biphasic; low doses (i.e. 0.01 and 0.03 mg/kg) increased the rate of vocalization. Midazolam and allopregnanolone also reduced USVs. The highest doses of flesinoxan, (+)8-OH-DPAT, and allopregnanolone suppressed locomotion, whereas CP-94,253, TFMPP, and midazolam stimulated motor activity. CONCLUSIONS: These experiments confirm that agonists at the 5-HT1 receptors and a positive allosteric modulator of the GABA(A) receptor complex decrease maternal separation-induced USVs in mice, with 5-HT1B manipulations dissociating the effects on vocalizations from sedative effects.

Animals↗

Cocaine self-administration "binges": transition from behavioral and autonomic regulation toward homeostatic dysregulation in rats.

BACKGROUND: An essential feature of cocaine addiction is the breakdown to control or regulate drug intake. OBJECTIVE: The present studies aimed to examine the transition from regulated intravenous cocaine reinforcement to a more unpredictable, chaotic pattern of cocaine self-administration in rats that were given continuous access to the drug. Autonomic activity was continuously monitored via biotelemetry senders for heart-rate and core temperature before, during and after the cocaine "binges", in an attempt to characterize the breakdown of homeostatic regulation. METHODS: After Long-Evans rats were fitted with intravenous catheters and intraperitoneal telemetry senders, they acquired cocaine self-administration with each fifth lever press being reinforced by a 0.25 mg cocaine infusion. Rats self-administered 15 cocaine infusions daily at stable rates for ca. 2-3 weeks, when continuous access periods ("binges") of 26 and 72 h were scheduled, with a 3-week cocaine-free period between and following the two "binges". RESULTS: A distinctive pattern of cocaine self-administration emerged during the "binges" that consisted of (1) an initial loading phase, (2) stable, predictable inter-infusion intervals for up to 8-10 h, termed "regulatory phase", (3) increased variability in inter-fusion intervals, mostly beginning at 22-24 h of continuous access. During the first half of the 72-h "binge", the autonomic activities remained elevated, showed a greatly constrained variability, and the characteristic circadian rhythmicity was substantially decreased. The average cocaine intake (6.8+/-0.5 mg/kg per hour) during the "regulatory" phase did not change during the subsequent phases. Following the 72-h "binge", the amplitude of autonomic circadian rhythms remained attenuated for more than 2 weeks. In a separate set of animals, the dose effect of inter-infusion intervals following the self-administered infusion was similar during a variable dose protocol, scheduled in an early and a late phase of a 30-h long "binge". CONCLUSIONS: The homeostatic dysregulation during the "binge" as evidenced by the diminished capacity of autonomic functions to vary is accompanied by emerging irregularities in the pattern of cocaine self-administration.

Animals↗

Reduction of zif268 messenger RNA expression during prolonged withdrawal following "binge" cocaine self-administration in rats.

Cocaine self-administration increases dopamine efflux and neuronal activity in the mesocorticolimbic dopamine system compared with experimenter-administered cocaine. Following a prolonged cocaine self-administration binge, dopamine efflux in the nucleus accumbens is attenuated and behaviors emerge that are indicative of anhedonia and anxiety. The neuronal correlates of these behavioral and neurochemical effects of a cocaine binge were assessed using in situ hybridization histochemistry to detect changes in zif268 messenger RNA expression. Rats were fitted with intravenous catheters; one group was trained to self-administer cocaine (0.5mg/injection), then allowed continuous access to cocaine during a 16h binge, while yoked animals received either saline or cocaine according to the same schedule. Measurement of tactile startle responses and ultrasonic distress calls either immediately after termination of cocaine access or one or 14 days later confirmed peak withdrawal at 24h after the binge. The level of zif268 messenger RNA was lower upon termination of cocaine self-administration than in both yoked treatment groups in the ventral tegmental area and hippocampus. In contrast, zif268 messenger RNA expression increased in the periaqueductal gray matter one day after termination of passive cocaine treatment, coincident with enhanced expression of ultrasonic vocalizations. Zif268 messenger RNA expression decreased over time in the nucleus accumbens core and infralimbic cortex, with reduced expression observed in the nucleus accumbens core, caudatoputamen, hippocampus and amygdala 14 days after termination of cocaine self-administration. The results suggest that withdrawal following a cocaine self-administration binge produces a long-lasting reduction of constitutive zif268 messenger RNA expression in mesocorticolimbic brain regions related to the nucleus accumbens. The relatively greater effect in animals that self-administered cocaine implies a relationship of certain regional responses to behavioral conditioning.

Animals↗

Social defeat stress increases expression of mu-opioid receptor mRNA in rat ventral tegmental area.

Prompted by previous studies linking social defeat stress to changes in opioid antinociception, we evaluated the expression of mu-opioid receptor (MOR)-encoding mRNA in selected rat brain areas as a function of this type of stress. Because opioids mediate significant regulatory activities of brain dopamine neurons, dopaminergic loci in the ventral tegmental area (VTA) and substantia nigra (SN) were selected for analysis. Within 30 min after social defeat stress, the level of MOR-encoding mRNA, as detected and quantified by in situ hybridization histochemistry, increased in the lateral VTA and this increase was present for at least 6 h. In contrast, defeat stress was without effect on the expression of MOR-encoding mRNA in the SN. These data suggest that stress-induced alteration of MOR-encoding mRNA expression in the VTA may be involved in the consequences of social defeat stress.

Animals↗