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Neuropharmacology

ISSN 1873-7064

125 papers in the library · 4,720 citations · publishing 1971-2026

Papers

Differential effects of opioid receptor antagonism on the anti-dyskinetic and anti-parkinsonian effects of sub-anesthetic ketamine treatment in a preclinical model.

Neuropharmacology October 1, 2024 Carolyn J Stopera, Mitchell J Bartlett, Chenxi Liu et al. 9 citations

Sub-anesthetic ketamine reduces levodopa-induced dyskinesia (LID) in a rat model of Parkinson's disease, and this anti-dyskinetic effect persists even when opioid receptors are blocked by naloxone at 3 or 5 mg/kg. The higher naloxone dose extended the time course of LID, suggesting opioid receptor activation plays a modulatory role but is not required for ketamine's anti-dyskinetic action. In contrast, naloxone enhanced ketamine's anti-parkinsonian effect, further reducing akinesia. These findings indicate that opioid receptor blockade differentially affects ketamine's anti-parkinsonian and anti-dyskinetic properties, offering mechanistic insight for repurposing ketamine to treat LID in Parkinson's disease.

Chronic psilocybin administration increases sociability and alters the gut microbiome in male wild-type mice but not in a preclinical model of obsessive-compulsive disorder

Neuropharmacology August 21, 2025 James J Gattuso, Geraldine Kong, Bilgenur Bezcioglu et al. 7 citations

Chronic psilocybin given orally to mice at two doses (0.1 and 1 mg/kg) increased sociability in male wild-type mice but did not improve anxiety, compulsive, or depressive behaviors, nor did it induce psychosis-like effects. Psilocybin affected gut motility in a dose-dependent way. While overall gut microbiome diversity remained unchanged, specific bacterial species—Lactobacillus murinus, Lactobacillus animalis, and Alistipes dispar—decreased in male wild-type mice only. A cluster of these bacteria correlated with movement, head-twitch response, and gut motility, distinguishing psilocybin-treated from control mice, suggesting a feedback loop involving serotonin signaling. Other bacterial clusters were linked to startle response and sociability, indicating psilocybin engages distinct neural pathways. The findings underscore the roles of the microbiome and sex in psychedelic research.

Is the antidepressant effect of ketamine separate from its psychotomimetic effect? A review of rodent models.

Neuropharmacology November 1, 2024 M C Acero-Castillo, M B M Correia, F V Caixeta et al. 7 citations

Ketamine, an NMDA glutamate receptor antagonist, has dose-dependent effects including anesthesia, sedation, and analgesia. At subanesthetic doses, it uniquely both mimics schizophrenia symptoms and serves as the first fast-acting antidepressant. This overview describes ketamine's dual role as an antidepressant and as a pharmacological model of schizophrenia in animals and humans. Its mechanism involves NMDA receptors, triggering immediate and downstream effects. The authors discuss a unified approach linking the glutamatergic hypothesis of schizophrenia to ketamine's success in treating refractory depression.

The high frequency oscillation in orbitofrontal cortex is susceptible to phenethylamine psychedelic 25C-NBOMe in male rats.

Neuropharmacology April 1, 2023 Zhi-Peng Yu, Qiong Li, Zhou-Xiao Wu et al. 7 citations

The substituted phenethylamine psychedelic 25C-NBOMe, at a dose of 0.1 mg/kg that disrupts sensorimotor gating, selectively potentiates high frequency oscillation (HFO, 120-150 Hz) power in the orbitofrontal cortex (OFC) of male Sprague-Dawley rats, peaking 20-30 minutes after treatment. It strengthens HFO coherence within the intra-prefrontal network but not the hippocampal-prefrontal network. Potentiated OFC HFO strongly correlates with strengthened inter-prefrontal HFO coherence. Pre-treatment with the serotonin 2A receptor antagonist MDL100,907 prevents these alterations. The findings indicate that OFC HFO is particularly susceptible to this psychedelic and may drive drug-induced rhythmic coherence within prefrontal regions, suggesting altered HFO could serve as a biological marker of psychedelic effects.

Psychedelics - Re-opening the doors of perception.

Neuropharmacology August 23, 2018 David J. Heal, Jack Henningfield, Bruno G. Frenguelli et al. 7 citations

Psychedelic compounds can temporarily alter brain connectivity, potentially re-opening periods of heightened plasticity that allow rigid neural patterns to be reshaped. This process may facilitate cognitive shifts, including new perspectives and changes in emotional processing, which could underlie therapeutic breakthroughs for various mental health conditions. The text suggests that by disrupting entrenched brain networks, psychedelics enable a reconfiguration of neural pathways, offering a mechanism for lasting improvements in mental well-being.

Exploring ketamine's reinforcement, cue-induced reinstatement, and nucleus accumbens cFos activation in male and female long evans rats.

Neuropharmacology September 1, 2024 Devin P Hagarty, Adam Dawoud, Alfonso Brea Guerrero et al. 6 citations

Ketamine, used for treatment-resistant depression, shows reinforcing effects in both male and female rats at higher doses (0.25 and 0.5 mg/kg/infusion), with females self-administering more at the highest dose. All doses that supported self-administration led to cue-induced reinstatement. After reinstatement, ketamine-treated animals had higher cFos protein expression in the nucleus accumbens than saline controls, with greater expression in the core than shell subregion, and no sex differences in this neural activation. These dose- and sex-dependent effects highlight the need for further research into ketamine's addictive potential, especially at lower clinical doses.

Hallucinogenic activity, neurotransmitters release, anxiolytic and neurotoxic effects in Rat's brain following repeated administration of novel psychoactive compound 25B-NBOMe.

Neuropharmacology December 1, 2023 Adam Wojtas, Monika Herian, Marzena Maćkowiak et al. 6 citations

Repeated administration of the hallucinogenic drug 25B-NBOMe (0.3 mg/kg for 7 days) in rats rapidly produced tolerance to its effects on neurotransmitter release and hallucinogenic behavior, as measured by the Wet Dog Shake test. The drug reduced dopamine, serotonin, and glutamate responses in the frontal cortex, striatum, and nucleus accumbens after a challenge dose. Genotoxicity, indicated by DNA damage, was found in the frontal cortex and hippocampus, with increased glial cells in cortical regions but no neuronal loss. Anxiety effects depended on treatment and environmental context, with anxiogenic effects observed after both single and repeated dosing.

From recent advances in underlying neurocircuitry of fear and anxiety to promising pharmacotherapies for PTSD: The saga of heart, sex and the developing brain.

Neuropharmacology July 1, 2023 Joanna Dabrowska 6 citations

Current medications for anxiety disorders and PTSD have limited effectiveness, and no new anxiety drug has been approved since the 1980s. This review discusses promising approaches being revisited or newly developed, including serotonergic psychedelics as low-dose adjuncts to psychotherapy and glucocorticoids given shortly after trauma to interfere with fear memory consolidation. Three key obstacles are identified: too few preclinical studies on fear processing in female animals despite higher anxiety rates in women, poor translation of knowledge about stress effects on fear circuitry across the lifespan into clinical practice, and limited understanding of canonical fear circuitry in adaptive versus maladaptive fear processing. Interoceptive signals linked to emotion regulation may offer new treatment avenues, especially for PTSD with cardiovascular dysregulation.

Side effects of microdosing lysergic acid diethylamide and psilocybin: A systematic review of potential physiological and psychiatric outcomes

Neuropharmacology March 7, 2025 Stefan Modzelewski, Anna Stankiewicz, Napoleon Waszkiewicz et al. 5 citations

A review of psychedelic research finds that studies vary widely in how they report side effects and often follow participants for only a short time. The authors call for future work to describe side effects more clearly and systematically. This limitation makes it difficult to fully understand the risks associated with substances like psilocybin and LSD.

Indolealkylamines and prolactin secretion. A structure-activity study in the central nervous system of the rat.

Neuropharmacology December 1, 1985 G Seeman, G M Brown 5 citations

Indolealkylamine hallucinogens such as 5-methoxy-N,N-dimethyltryptamine (MDMT), bufotenin, and N,N-dimethyltryptamine (DMT) stimulate prolactin secretion when infused directly into the brain's lateral ventricle. MDMT is the most potent, followed by bufotenin, then DMT. Bufotenin, which does not easily cross the blood-brain barrier, produces a prolonged prolactin elevation with a possible biphasic effect at the highest dose (0.02 M). DMT shows a clear dose-response relationship. These findings confirm earlier work and suggest the effect is centrally mediated, not involving peripheral receptors, and that the time course of action differs from peripheral infusion.

Qualitative content analysis of expectations in participants with depression about to begin LSD microdosing treatment: Identifying the need for psychedelic expectancy measures.

Neuropharmacology December 1, 2025 Carina Joy Donegan, Dimitri Daldegan-Bueno, Tehseen Noorani et al. 4 citations

Before starting a low-dose LSD regimen, people with major depression held varied expectations shaped largely by media and personal experience. Over half had tried other treatments that failed. Many expected subtle effects or had no specific expectations, while some anticipated changes in consciousness or neural rewiring. Hope served both as a motivator and a buffer against disappointment. The findings underscore how media influences expectations and suggest that current expectancy measures miss important factors specific to psychedelic therapy.

Age- and estrous-dependent effects of psilocybin in rats.

Neuropharmacology November 15, 2025 A L Zylko, R J Rakoczy, B F Roberts et al. 4 citations

Psilocybin, the psychedelic compound in magic mushrooms, may treat psychiatric disorders, but little is known about how sex and age influence its effects. In a preclinical study on rats, a 1 mg/kg dose of psilocybin did not cause head twitch responses in adolescents but did in adults. Adolescent exposure did not lead to lasting changes in anxiety or behavioral flexibility. Adult females in diestrus had stronger head twitch responses than those in proestrus. The findings indicate age- and sex-dependent differences in psilocybin's effects, with no long-term effects on certain behaviors after adolescent exposure, highlighting the need for inclusive research on age, sex, and hormonal status.

LSD microdosing in major depressive disorder: results from an open-label trial

Neuropharmacology November 5, 2025 Dimitri Daldegan‐bueno, C Donegan, Rachael L. Sumner et al. 4 citations

In an open-label phase 2A trial, 19 participants with major depressive disorder, most of whom were taking antidepressants, took microdoses of LSD twice weekly for eight weeks. No serious adverse events occurred, and one participant withdrew due to anxiety. Depression scores on the Montgomery-Åsberg Depression Rating Scale dropped by 59.5% at the end of the intervention, with improvements sustained for up to six months. Anxiety, rumination, stress, and quality of life also improved. The results provide preliminary evidence that microdosed LSD is safe and feasible for treating moderate depression, but randomized controlled trials are needed.

Exploring serotonergic psychedelics as a treatment for personality disorders.

Neuropharmacology July 1, 2025 Brennan M Carrithers, Daniel E Roberts, Brandon M Weiss et al. 4 citations

Psychedelic therapy may hold potential for treating personality disorders by promoting adaptive changes in personality, though rigorous research is lacking. This review first examines research on psychedelics in individuals with personality disorders using the DSM-5-TR categorical model, then applies the dimensional DSM-AMPD framework to explore how psychedelics might affect self-functioning, interpersonal functioning, and pathological personality traits. The authors discuss clinical relevance, safety considerations, gaps, and recommendations for treating these complex populations.

Esketamine mitigates endotoxin-induced hippocampal injury by regulating calcium transient and synaptic plasticity via the NF-α1/CREB pathway.

Neuropharmacology May 15, 2025 Mu Xu, Jialiang Wang, Jia Shi et al. 4 citations

Esketamine treatment alleviated sepsis symptoms, cognitive impairment, and decreased mortality in a mouse model of sepsis-associated encephalopathy. It reduced neuroinflammation, oxidative stress, and neuronal loss, and normalized calcium transients while improving dendritic structure and synaptic plasticity in the hippocampal CA1 region. These effects depended on the NF-α1/CREB signaling pathway, as suppressing NF-α1 abolished the protective effects and reversed improvements in calcium transients, dendrites, and post-synaptic plasticity. The findings suggest esketamine protects against hippocampal injury in sepsis through this pathway.

Cognitive and subjective effects of psilocybin microdosing: Results from two double-blind placebo-controlled longitudinal trials

Neuropharmacology October 17, 2025 Luisa Prochazkova, Josephine Marschall, Dominique P. Lippelt et al. 3 citations

Microdosing psilocybin truffles does not reliably enhance cognitive or emotional functioning beyond a placebo. In two randomized, double-blind, placebo-controlled trials conducted in semi-naturalistic settings, microdosing did not significantly affect behavioral or subjective measures compared to placebo. Some initial effects on social cognition, mood, and self-reported cognitive flexibility were observed but did not remain significant after correcting for multiple comparisons. Participants predominantly reported positive subjective experiences regardless of condition, though negative bodily feelings were enhanced in the active condition. Participants remained effectively blinded throughout the trials.

Ketamine metabolism via hepatic CYP450 isoforms contributes to its sustained antidepressant actions.

Neuropharmacology November 1, 2024 Thi Mai Loan Nguyen, Jean-Philippe Guilloux, Céline Defaix et al. 3 citations

Ketamine produces rapid and lasting antidepressant effects in depressed patients. A metabolite called (2R,6R)-hydroxynorketamine (HNK) may contribute to these effects. In anxious male mice, blocking the liver enzyme cytochrome P450 with fluconazole before ketamine or HNK altered drug metabolism: it raised ketamine and norketamine levels in blood and brain but sharply reduced HNK levels. Fluconazole also prevented ketamine's sustained antidepressant-like actions in behavioral tests and its enhancement of cortical GABA levels 24 hours after injection. Giving (2R,6R)-HNK alone reversed fluconazole's blockade of ketamine's antidepressant-like activity. The findings suggest that HNK is essential for ketamine's sustained antidepressant effects and that drug interactions with cytochrome P450 inhibitors may affect ketamine treatment in patients.

Decoupling of cortical activity from behavioral state following administration of the classic psychedelic DOI.

Neuropharmacology October 1, 2024 Randall J Olson, Lowell Bartlett, Alex Sonneborn et al. 3 citations

Classic psychedelics like DOI cause lasting changes in experience and show promise for treating depression. In the medial prefrontal cortex of male mice, DOI reduced low-frequency brain waves during rest, preventing the usual synchronization that occurs in less active states. It also increased gamma activity and suppressed fast-spiking neurons both during active and rest periods. These results suggest that DOI induces persistent desynchronization in the medial prefrontal cortex, which may contribute to the longer-lasting effects of psychedelics on brain plasticity and their therapeutic properties.

Brain-penetrant microtubule-stabilizer epothilone B delays isoflurane-induced unconsciousness in mice.

Neuropharmacology April 1, 2026 Yixiang Huang, Zitong Qiu, Xinyue Yu et al. 2 citations

Stabilizing brain microtubules can make animals resistant to anesthesia. Mice given a single dose of a microtubule-stabilizing drug showed a 29-second delay in losing consciousness under isoflurane the next day. This significant within-subject effect, with a Cohen's d of 0.8, suggests that anesthetic binding to microtubules contributes to unconsciousness. This supports theories proposing consciousness arises from quantum states within these neural structures, and hints at potential sex differences in anesthetic mechanisms.

Microdosing psilocybin and its effect on creativity: Lessons learned from three double-blind placebo controlled longitudinal trials

Neuropharmacology November 2, 2025 Luisa Prochazkova, Josephine Marschall, Michiel van Elk et al. 2 citations

Microdosing psilocybin from truffles modestly improved the quality of divergent thinking—specifically the ratio of original responses to total responses—in a pooled analysis of three double-blind, placebo-controlled trials with 171 participants. The effect on unadjusted originality was significant only when dosage relative to body weight was considered, and it remained after controlling for dose guess and demographic biases. No effects were found on other measures of divergent thinking or on convergent thinking. The findings underscore the need to account for placebo effects and prior psychedelic experience when evaluating microdosing claims.

Esketamine ameliorates prenatal stress-induced postpartum depression and sex-related behavioral differences in adolescent progeny.

Neuropharmacology May 15, 2025 Yazhou Wen, Jin Zhou, Huiling Yu et al. 2 citations

Prenatal chronic restraint stress (CRS) in mice induced postpartum depression-like behaviors in mothers and sex-specific behavioral changes in their adolescent offspring: female offspring showed depression-like behaviors, while male offspring exhibited memory deficits. Esketamine, given to mothers on postpartum days 1-5, improved these maternal depression-like behaviors and also corrected the behavioral abnormalities in adolescent offspring. Additionally, prenatal CRS caused heightened secretion of ACTH and CORT in adolescent offspring during acute restraint stress, indicating hyperresponsiveness of the stress hormone system. Esketamine's effects on these hormone levels were not reported.

Low (micro)doses of 2,5-dimethoxy-4-propylamphetamine (DOPR) increase effortful motivation in low-performing mice.

Neuropharmacology May 1, 2025 Michael Noback, Johnny A Kenton, Adam K Klein et al. 2 citations

A compound called 2,5-dimethoxy-4-propylamphetamine (DOPR), a psychedelic that activates 5-HT2A receptors, can increase motivation in mice with low baseline motivation without causing hallucinogenic-like effects. In a progressive ratio breakpoint task (PRBT) involving 80 mice, doses as low as 0.0106 mg/kg improved performance only in animals with low initial motivation; high-performing mice were unaffected. The head-twitch response (HTR) assay in 72 mice showed hallucinogenic-like effects only at doses of 0.1 mg/kg or higher. These results suggest that low doses of DOPR might treat amotivated states while avoiding hallucinogenic side effects, warranting further research in rodents with disease-relevant conditions.

N,N-dimethyltryptamine elicits antidepressant and anxiolytic effects in helpless mice: a comparative study with S-ketamine.

Neuropharmacology July 1, 2026 Anne Nathalia De Sousa-Silva, Clarissa de Almeida Moura, Carina Ioná De Oliveira Torres et al. 1 citation

In helpless mice, the psychedelic compound N,N-dimethyltryptamine (DMT) produced rapid and long-lasting antidepressant effects comparable to the fast-acting antidepressant S-ketamine. DMT at 10 mg/kg reversed escape deficits and reduced immobility in several behavioral tests, with effects lasting up to 8 days, whereas S-ketamine's effects lasted up to 30 hours. DMT also showed anxiolytic-like effects, reversing stress-induced hypolocomotion and increasing open-arm exploration, while S-ketamine did not. Neither drug altered behavior in the novelty-suppressed feeding test. These findings suggest DMT has transdiagnostic therapeutic potential for stress-related disorders.

Beyond the toad's kiss: Mapping acute 5-MeO-DMT effects on brain connectivity across sex and dose using awake rat neuroimaging

Neuropharmacology March 6, 2026 Noah Cavallaro, Priya Rai, David Akins et al. 1 citation

In a first-ever fMRI study of 5-MeO-DMT, a fast-acting psychedelic, brain activity changes were observed that match its quick onset and short peak effects. A previously unknown sex difference in how the brain responds to the drug was also identified. The findings align with the drug's unique pharmacology and clinical reports, offering new insights into its neural effects.

Repeated administration of the synthetic cannabinoid AKB48 induces serotonergic neuroadaptation in male and female mice: behavioural and immunohistochemical evidence.

Neuropharmacology February 1, 2026 Giorgia Corli, Fabrizio De Luca, Sabrine Bilel et al. 1 citation

Repeated exposure to the synthetic cannabinoid AKB48 worsens the visual sensorimotor, sensory gating, and motor reactivity response to the hallucinogens 2C-I and 25I-NBOMe in mice. This effect is more prolonged in males than in females. The underlying mechanism involves neuroplastic changes in the cerebellum and cortex, specifically at serotonin 2A receptors and the serotonin transporter. These changes occur more markedly and rapidly in female mice. The findings highlight a significant interaction between synthetic cannabinoids and psychedelic drugs, which may be relevant to long-term effects and psychiatric consequences of their consumption.