Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 6 de 6
Filter
Add more filters










Database
Language
Publication year range
1.
Front Neurosci ; 17: 1094241, 2023.
Article in English | MEDLINE | ID: mdl-36866335

ABSTRACT

Introduction: Because of the steady increase in the use of synthetic opioids in women of childbearing age, a large number of children are at risk of exposure to these drugs prenatally or postnatally through breast milk. While there is older literature looking at the effects of morphine and heroin, there are relatively few studies looking at the long-term effects of high-potency synthetic opioid compounds like fentanyl. Thus, in the present study, we assessed whether brief exposure to fentanyl in male and female rat pups during a period roughly equivalent to the third trimester of CNS development altered adolescent oral fentanyl self-administration and opioid-mediated thermal antinociception. Methods: We treated the rats with fentanyl (0, 10, or 100 µg/kg sc) from postnatal day (PD) 4 to PD 9. The fentanyl was administered daily in two injections given 6 h apart. After the last injection on PD 9, the rat pups were left alone until either PD 40 where they began fentanyl self-administration training or PD 60 where they were tested for morphine- (0, 1.25, 2.5, 5, or 10 mg/kg) or U50,488- (0, 2.5, 5, 10, or 20 mg/kg) induced thermal antinociception. Results: In the self-administration study, we found that female rats had more active nose pokes than male rats when receiving a fentanyl reward but not sucrose alone solution. Early neonatal fentanyl exposure did not significantly alter fentanyl intake or nose-poke response. In contrast, early fentanyl exposure did alter thermal antinociception in both male and female rats. Specifically, fentanyl (10 µg/kg) pre-treatment increased baseline paw-lick latencies, and the higher dose of fentanyl (100 µg/kg) reduced morphine-induced paw-lick latencies. Fentanyl pre-treatment did not alter U50,488-mediated thermal antinociception. Conclusions: Although our exposure model is not reflective of typical human fentanyl use during pregnancy, our study does illustrate that even brief exposure to fentanyl during early development can have long-lasting effects on mu-opioid-mediated behavior. Moreover, our data suggest that females may be more susceptible to fentanyl abuse than males.

2.
Naunyn Schmiedebergs Arch Pharmacol ; 394(5): 903-913, 2021 05.
Article in English | MEDLINE | ID: mdl-33205248

ABSTRACT

There is disagreement about whether the locomotor activity produced by serotonin (5-HT) 1A/1B receptor agonists is ultimately mediated through a dopaminergic mechanism or is independent of dopamine (DA) system functioning. Using a developing rat model, we examined whether DA neurotransmission is necessary for the locomotor activity produced by 5-HT1A/1B receptor stimulation. Depending on experiment, male and female preweanling rats were pretreated with vehicle, the monoamine-depleting agent reserpine, the 5-HT synthesis inhibitor 4-chloro-DL-phenylalanine methyl ester hydrochloride (PCPA), the DA synthesis inhibitor ∝-methyl-DL-p-tyrosine (AMPT), or the D1 and D2 receptor antagonists SCH 23390 and raclopride, respectively. After completing the pretreatment regimen, the behavioral effects of saline and the 5-HT1A/1B receptor agonist RU 24969 were assessed during a 2-h test session. Locomotor activity in the center and margin of the testing chamber was recorded. RU 24969's locomotor activating effects were sensitive to blockade of the D2 receptor, but not the D1 receptor. The DA synthesis inhibitor (AMPT) significantly attenuated the RU 24969-induced locomotor activity of preweanling rats, as did the 5-HT synthesis inhibitor PCPA. The latter result suggests that presynaptic 5-HT1A/1B receptors may have a role in mediating RU 24969-induced locomotion during the preweanling period. DA neurotransmission, especially involving D2 receptors, is necessary for the 5-HT1A/1B-mediated locomotor activity of preweanling rats. The actions of PCPA, reserpine, and SCH 23390 differ substantially between preweanling and adult rats, suggesting that the neural mechanisms underlying these DA/5-HT interactions vary across ontogeny.


Subject(s)
Dopamine/metabolism , Indoles/pharmacology , Locomotion/drug effects , Serotonin Receptor Agonists/pharmacology , Animals , Behavior, Animal/drug effects , Benzazepines/pharmacology , Female , Male , Rats , Rats, Sprague-Dawley , Receptors, Dopamine D2/drug effects , Receptors, Dopamine D2/metabolism , Serotonin/metabolism , Synaptic Transmission/drug effects
3.
Psychopharmacology (Berl) ; 237(8): 2469-2483, 2020 Aug.
Article in English | MEDLINE | ID: mdl-32445054

ABSTRACT

RATIONALE: MK801, like other NMDA receptor open-channel blockers (e.g., ketamine and phencyclidine), increases the locomotor activity of rats and mice. Whether this behavioral effect ultimately relies on monoamine neurotransmission is of dispute. OBJECTIVE: The purpose of this study was to determine whether these psychopharmacological effects and underlying neural mechanisms vary according to sex and age. METHODS: Across four experiments, male and female preweanling and adolescent rats were pretreated with vehicle, the monoamine-depleting agent reserpine (1 or 5 mg/kg), the dopamine (DA) synthesis inhibitor ∝-methyl-DL-p-tyrosine (AMPT), the serotonin (5-HT) synthesis inhibitor 4-chloro-DL-phenylalanine methyl ester hydrochloride (PCPA), or both AMPT and PCPA. The locomotor activity of preweanling and adolescent rats was then measured after saline or MK801 (0.3 mg/kg) treatment. RESULTS: As expected, MK801 increased the locomotor activity of all age groups and both sexes, but the stimulatory effects were significantly less pronounced in male adolescent rats. Preweanling rats and adolescent female rats were more sensitive to the effects of DA and 5-HT synthesis inhibitors, as AMPT and PCPA caused only small reductions in the MK801-induced locomotor activity of male adolescent rats. Co-administration of AMPT+PCPA or high-dose reserpine (5 mg/kg) treatment substantially reduced MK801-induced locomotor activity in both age groups and across both sexes. CONCLUSIONS: These results, when combined with other recent studies, show that NMDA receptor open-channel blockers cause pronounced age-dependent behavioral effects that can vary according to sex. The neural changes underlying these sex and age differences appear to involve monoamine neurotransmission.


Subject(s)
Dizocilpine Maleate/pharmacology , Dopamine/physiology , Excitatory Amino Acid Antagonists/pharmacology , Locomotion/physiology , Serotonin/physiology , Sexual Maturation/physiology , Adrenergic Uptake Inhibitors/pharmacology , Age Factors , Animals , Animals, Newborn , Dopamine Antagonists/pharmacology , Female , Locomotion/drug effects , Male , Rats , Rats, Sprague-Dawley , Serotonin Antagonists/pharmacology , Sex Factors , Sexual Maturation/drug effects
4.
Behav Brain Res ; 379: 112267, 2020 02 03.
Article in English | MEDLINE | ID: mdl-31593789

ABSTRACT

Ketamine significantly increases the locomotor activity of rodents, however this effect varies according to the sex and age of the animal being tested. To determine the role monoamine systems play in ketamine's locomotor activating effects: (a) male and female preweanling, adolescent, and adult rats were pretreated with vehicle or the monoamine depleting agent reserpine (1 or 5 mg/kg), and (b) the behavioral actions of ketamine (20 or 40 mg/kg) were then compared to d-amphetamine (2 mg/kg) and cocaine (10 or 15 mg/kg). The ability of reserpine to deplete dorsal striatal dopamine (DA) and serotonin (5-HT) in male and female rats was determined using HPLC. Ketamine caused substantial increases in the locomotion of preweanling rats and older female rats (adolescents and adults), but had only small stimulatory effects on adolescent and adult male rats. When compared to cocaine and d-amphetamine, ketamine was especially sensitive to the locomotor-inhibiting effects of monoamine depletion. Ketamine-induced locomotion is at least partially mediated by monoamine systems, since depleting DA and 5-HT levels by 87-96% significantly attenuated the locomotor activating effects of ketamine in male and female rats from all three age groups. When administered to reserpine-pretreated rats, ketamine produced a different pattern of behavioral effects than either psychostimulant, suggesting that ketamine does not stimulate locomotor activity via actions at the presynaptic terminal. Instead, our results are consistent with the hypothesis that ketamine increases locomotor activity through a down-stream mechanism, possibly involving ascending DA and/or 5-HT projection neurons.


Subject(s)
Behavior, Animal/drug effects , Biogenic Monoamines/metabolism , Excitatory Amino Acid Antagonists/pharmacology , Ketamine/pharmacology , Locomotion/drug effects , Neurotransmitter Uptake Inhibitors/pharmacology , Receptors, N-Methyl-D-Aspartate/antagonists & inhibitors , Synaptic Transmission/drug effects , Adrenergic Uptake Inhibitors/pharmacology , Age Factors , Animals , Cocaine/pharmacology , Dextroamphetamine/metabolism , Dopamine Uptake Inhibitors/pharmacology , Drug Interactions , Excitatory Amino Acid Antagonists/administration & dosage , Female , Ketamine/administration & dosage , Male , Neurotransmitter Uptake Inhibitors/administration & dosage , Rats , Rats, Sprague-Dawley , Reserpine/pharmacology , Selective Serotonin Reuptake Inhibitors/pharmacology , Sex Characteristics
5.
Behav Brain Res ; 379: 112302, 2020 02 03.
Article in English | MEDLINE | ID: mdl-31655095

ABSTRACT

The pattern of ketamine-induced locomotor activity varies substantially across ontogeny and according to sex. Although ketamine is classified as an NMDA channel blocker, it appears to stimulate the locomotor activity of both male and female rats via a monoaminergic mechanism. To more precisely determine the neural mechanisms underlying ketamine's actions, male and female preweanling and adolescent rats were pretreated with vehicle, the dopamine (DA) synthesis inhibitor ∝-methyl-DL-p-tyrosine (AMPT), or the serotonin (5-HT) synthesis inhibitor 4-chloro-DL-phenylalanine methyl ester hydrochloride (PCPA). After completion of the pretreatment regimen, the locomotor activating effects of saline, ketamine, d-amphetamine, and cocaine were assessed during a 2 h test session. In addition, the ability of AMPT and PCPA to reduce dorsal striatal DA and 5-HT content was measured in male and female preweanling, adolescent, and adult rats. Results showed that AMPT and PCPA reduced, but did not fully attenuate, the ketamine-induced locomotor activity of preweanling rats and female adolescent rats. Ketamine (20 and 40 mg/kg) caused a minimal amount of locomotor activity in male adolescent rats, and this effect was not significantly modified by AMPT or PCPA pretreatment. When compared to ketamine, d-amphetamine and cocaine produced different patterns of locomotor activity across ontogeny; moreover, AMPT and PCPA pretreatment affected psychostimulant- and ketamine-induced locomotion differently. When these results are considered together, it appears that both dopaminergic and serotonergic mechanisms mediate the ketamine-induced locomotor activity of preweanling and female adolescent rats. The dichotomous actions of ketamine relative to the psychostimulants in vehicle-, AMPT-, and PCPA-treated rats, suggests that ketamine modulates DA and 5-HT neurotransmission through an indirect mechanism.


Subject(s)
Central Nervous System Stimulants/pharmacology , Cocaine/pharmacology , Dextroamphetamine/pharmacology , Dopamine Agents/pharmacology , Enzyme Inhibitors/pharmacology , Excitatory Amino Acid Antagonists/pharmacology , Fenclonine/analogs & derivatives , Ketamine/pharmacology , Locomotion/drug effects , Serotonin Agents/pharmacology , alpha-Methyltyrosine/pharmacology , Age Factors , Animals , Behavior, Animal/drug effects , Central Nervous System Stimulants/administration & dosage , Cocaine/administration & dosage , Dextroamphetamine/administration & dosage , Dopamine Agents/administration & dosage , Drug Interactions , Enzyme Inhibitors/administration & dosage , Excitatory Amino Acid Antagonists/administration & dosage , Female , Fenclonine/administration & dosage , Fenclonine/pharmacology , Ketamine/administration & dosage , Male , Rats , Rats, Sprague-Dawley , Receptors, N-Methyl-D-Aspartate/antagonists & inhibitors , Serotonin Agents/administration & dosage , alpha-Methyltyrosine/administration & dosage
6.
Eur Neuropsychopharmacol ; 29(6): 740-755, 2019 06.
Article in English | MEDLINE | ID: mdl-30981586

ABSTRACT

Although ketamine has long been known to increase locomotor activity, only recently was it realized that this behavioral effect varies according to both sex and age. The purpose of the present study was threefold: first, to measure the locomotor activating effects of ketamine in male and female rats across early ontogeny and into adulthood; second, to assess ketamine and norketamine pharmacokinetics in the dorsal striatum and hippocampus of the same age groups; and, third, to use curvilinear regression to determine the relationship between locomotor activity and dorsal striatal concentrations of ketamine and norketamine. A high dose of ketamine (80 mg/kg, i.p.) was administered in order to examine the complete cycle of locomotor responsiveness across a 280-min testing session. In separate groups of rats, the dorsal striata and hippocampi were removed at 10 time points (0-360 min) after ketamine administration and samples were assayed for ketamine, norketamine, and dopamine using HPLC. In female rats, ketamine produced high levels of locomotor activity that varied only slightly among age groups. Male preweanling rats responded like females, but adolescent and adult male rats exhibited lesser amounts of ketamine-induced locomotor activity. Ketamine and norketamine pharmacokinetics, especially peak values and area under the curve, generally mirrored age- and sex-dependent differences in locomotor activity. Among male rats and younger female rats, dorsal striatal ketamine and norketamine levels accounted for a large proportion of the variance in locomotor activity. In adult female rats, however, an additional factor, perhaps involving other ketamine and norketamine metabolites, was influencing locomotor activity.


Subject(s)
Excitatory Amino Acid Antagonists/pharmacology , Excitatory Amino Acid Antagonists/pharmacokinetics , Ketamine/pharmacology , Ketamine/pharmacokinetics , Locomotion/drug effects , Aging/metabolism , Aging/psychology , Animals , Animals, Newborn , Dopamine/metabolism , Female , Hippocampus/metabolism , Humans , Ketamine/analogs & derivatives , Ketamine/metabolism , Male , Neostriatum/metabolism , Rats , Rats, Sprague-Dawley , Sex Characteristics
SELECTION OF CITATIONS
SEARCH DETAIL
...