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Shahar, O.

Publications and source records attributed to Shahar, O..

5 recordsLinked to original sources

Preclinical Comparison of DMT and 5-MeO-DMT Reveals Behavioral Dissociation, Distinct TrkB Activation and Differential Plasticity Profiles

N, N-dimethyltryptamine (DMT) and 5-methoxy-N, N-dimethyltryptamine (5-MeO-DMT) are structurally related tryptamine psychedelics with emerging therapeutic potential, yet their comparative acute pharmacology and longer-term neuroplastic effects remain incompletely defined. Here we show that DMT produces a bell-shaped dose-response curve in the mouse head-twitch response (HTR) assay, whereas 5-MeO-DMT elicits a monotonic increase. Selective antagonism at 5-HT2A or 5-HT1D receptors, or agonism at 5-HT1A, robustly attenuates HTR for both compounds without abolishing their ability to reduce marble burying, a screening assay for OCD-like behavior. Acutely, both agents elevate TrkB phosphorylation in a region-specific manner, with broader engagement by DMT across default-mode-network and hippocampal territories. Twelve days after a single dose, both compounds increase synaptic proteins (PSD-95, synaptophysin; SV2A for DMT), while DMT uniquely lowers hippocampal BDNF and reprograms frontal-cortex glutathione and energy metabolism. These findings demonstrate that acute hallucinogenic-like activity and selected therapeutic-like behavioral and plasticity outcomes can be pharmacologically dissociated, informing the rational design of more tolerable, scalable psychedelic-based treatments.

neuroscience↗

MDMA-Enhanced Exposure Therapy Reverses PTSD-Like Features In a Learned Helplessness Mouse Model

Post-traumatic stress disorder (PTSD) is a highly prevalent, debilitating psychiatric condition. Existing treatments are ineffective for many patients. 3,4-methylenedioxymethamphetamine (MDMA)-assisted psychotherapy has demonstrated substantial clinical efficacy but relies on prolonged, resource-intensive therapeutic protocols that limit scalability and accessibility. Here, we investigated whether combining MDMA with exposure-based intervention could enhance therapeutic efficiency in a preclinical model of PTSD-like behavior. Using a learned helplessness paradigm in mice, we identified trauma-susceptible individuals based on persistent escape failures following inescapable stress. Traumatised mice subsequently received brief treatment regimens consisting of MDMA or saline vehicle administered with or without exposure to the traumatic cue. Behavioral outcomes were tracked longitudinally using active avoidance performance as the primary endpoint, complemented by assays of anxiety-like, depressive-like, cognitive, and social behaviors. MDMA treatment markedly reduced trauma-associated behavioral deficits. MDMA combined with exposure produced rapid and sustained recovery compared to control conditions. Statistical analyses revealed significant treatment- and time-dependent effects on avoidance behavior, indicating accelerated resilience acquisition in MDMA-treated groups. Additional behavioral assays demonstrated dose-dependent effects of MDMA on anxiety- and depression-related measures. Together, these findings provide proof-of-principle that pharmacological modulation with MDMA can enhance exposure-driven behavioral recovery, supporting a strategy to integrate MDMA into more efficient and accessible PTSD treatment frameworks. This work establishes a preclinical foundation for clinical studies aimed at optimizing MDMA-assisted interventions to improve scalability and patient access.

neuroscience↗

Premorbid Characteristics of the SAPAP3-Mouse Model of Obsessive-Compulsive Disorder: Behavior, Neuroplasticity, and Psilocybin Treatment

BackgroundSAPAP3-knockout (KO) mice develop excessive self-grooming behavior at 4-6 months of age, serving as a model for obsessive-compulsive disorder (OCD). Given that anxiety often precedes OCD diagnosis in humans, this study investigated whether juvenile SAPAP3-KO mice exhibit anxiety-like behaviors before developing the self-grooming phenotype, and whether such behaviors respond to psilocybin treatment. The study also examined four key neuroplasticity-related synaptic proteins--GAP43, PSD95, synaptophysin, and SV2A -- as SAPAP3 is a postsynaptic scaffold protein that interacts with PSD95 and may affect synaptic function. MethodsTwo studies were conducted using male and female juvenile (10-13 weeks) SAPAP3- KO mice. Study 1 compared behavioral phenotypes between homozygous (HOM), heterozygous (HET), and wild-type (WT) mice. Study 2 evaluated a different sample of HOM and WT mice and assessed the effect of psilocybin (4.4 mg/kg) on identified behavioral differences. Both studies included comprehensive behavioral testing focused on anxiety, social interaction, and cognitive function. Additionally, levels of four synaptic proteins were measured by western blots in the frontal cortex, hippocampus, amygdala, and striatum of juvenile and adult SAPAP3-KO mice. ResultsIn both studies, juvenile HOM SAPAP3-KO mice showed significant anxiety-like behaviors compared to WT mice, spending less time in open field center, and elevated plus maze open arms. They also buried fewer marbles and found fewer buried Oreos than WT mice. Psilocybin treatment did not improve these behavioral manifestations. Analysis of synaptic proteins revealed significant increases in GAP43, synaptophysin, and SV2A across multiple brain regions in adult male HOM mice and of SV2A in the frontal cortex of HOM females compared to WT, but not in juvenile mice of either sex. ConclusionsJuvenile SAPAP3-KO mice exhibit anxiety-like behaviors before developing the characteristic excessive self-grooming phenotype, paralleling the prodromal anxiety often seen in human OCD. Unlike in adult SAPAP3-KO mice, these early manifestations were not responsive to psilocybin treatment. The age-dependent increases in synaptic proteins observed in adult but not juvenile male SAPAP3-KO mice and to a lesser extent in females, may represent compensatory plasticity changes in response to the phenotype. These results provide insights into the developmental trajectory of OCD-like behaviors and associated neuroplastic adaptations. Significance StatementObsessive-compulsive disorder (OCD) frequently emerges during adolescence, with anxiety as a common prodromal symptom. This study investigated behavioral and molecular characteristics of juvenile SAPAP3 knockout (KO) mice, an established preclinical model of OCD, prior to manifestation of their characteristic excessive grooming phenotype. Juvenile SAPAP3 KO mice exhibited significant anxiety-like behaviors on multiple behavioral measures. While psilocybin treatment reduces OCD-like behaviors in adult SAPAP3 knockout mice, it did not ameliorate anxiety-like behaviors in juvenile mice, indicating age-dependent therapeutic effects. Notably, adult male SAPAP3 KO mice showed elevated levels of synaptic plasticity-related proteins in emotion-regulatory brain regions, whereas juvenile KO showed no such alterations. These findings demonstrate that anxiety precedes compulsive behaviors in this model and reveal age- dependent neuroplasticity changes. This developmental trajectory parallels clinical observations in OCD and provides a framework for investigating early intervention strategies.

neuroscience↗

Role of 5-HT2A, 5-HT2C, 5-HT1A and TAAR1 receptors in the head twitch response induced by 5-hydroxytryptophan and psilocybin: Translational implications.

There is increasing interest in the therapeutic potential of psilocybin in psychiatric disorders. In common with other serotonergic psychedelics, psilocybin is thought to act via the 5-HT2A receptor (5-HT2AR). Serotonin is the endogenous ligand of 5-HTR. In rodents, the serotonin precursor, 5-hydroxytryptophan (5-HTP), and psilocybin, induce a characteristic head twitch response (HTR), which is correlated with the human psychedelic trip in intensity and duration. We examined the role of other serotonergic receptors and the trace amine associated receptor 1 (TAAR1) in modulating HTR induced by 5-HTP and psilocybin. Male C57BL/6J mice (11 weeks old, ~30g) were administered 5-HTP, 50-250 mg/kg intraperitoneally (i.p.) or 200 mg/kg i.p. after pretreatment with 5-HT/TAAR1 receptor modulators. Psilocybin was administered at 0.1-51.2 mg/kg i.p. or at 4.4 mg/kg i.p. preceded by 5-HT/TAAR1 receptor modulators. HTR was assessed in a custom-built magnetometer. 5-HTP and psilocybin induced a dose dependent increase in the frequency of HTR over 20 minutes with attenuation by the 5-HT2AR antagonist, M100907 (volanserin), and the 5-HT1AR agonist, 8-OH-DPAT. The 5-HT2CR antagonist, RS102221, enhanced HTR at lower doses but reduced it at higher doses for 5-HTP and psilocybin. The TAAR1 antagonist, EPPTB, reduced 5-HTP-but not psilocybin-induced HTR. We have confirmed the key role of 5-HT2AR in HTR and have demonstrated an effect of 5-HT1AR and a bimodal contribution of 5-HT2CR as well as a role of TAAR1 in modulating HTR induced by 5-HTP. Compounds that modulate HTR induced by psychedelics have a potentially important role in the emerging therapeutic use of these compounds. Significance StatementWe have confirmed the key role of 5-HT2AR in in the induction of HTR by 5-HTP and psilocybin, have demonstrated the effect of a 5-HT1AR agonist to attenuate HTR and a bimodal contribution of 5-HT2CR as well as a role of TAAR1 in modulating HTR induced by 5-HTP. Compounds that modulate HTR induced by psychedelics have a potentially important role in the emerging therapeutic use of these compounds. Visual Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=166 SRC="FIGDIR/small/501026v1_ufig1.gif" ALT="Figure 1"> View larger version (44K): org.highwire.dtl.DTLVardef@1812b88org.highwire.dtl.DTLVardef@1511eb4org.highwire.dtl.DTLVardef@b6c868org.highwire.dtl.DTLVardef@1f3292_HPS_FORMAT_FIGEXP M_FIG C_FIG

neuroscience↗

Effect of psilocybin on marble-burying in ICR mice: Role of 5-HT1A receptors and implications for the treatment of obsessive-compulsive disorder

BackgroundPreliminary clinical findings, supported by preclinical studies employing behavioral paradigms such as marble-burying, suggest that psilocybin may be effective in treating obsessive-compulsive disorder. AimsTo explore 1) the role of 5-HT2A and 5-HT1A receptors in the effect of psilocybin on marble-burying; 2) the effect of staggered versus bolus psilocybin administration and persistence of the effect; 3) the effect of the 5-HT1A partial agonist, buspirone, on marble-burying and the head-twitch response (HTR) induced by psilocybin, a rodent correlate of psychedelic effects. MethodsMale ICR mice were administered psilocybin 4.4 mg/kg, escitalopram 5 mg/kg, 8-OH-DPAT 2 mg/kg, M100907 2 mg/kg, buspirone 5 mg/kg, WAY100635 2 mg/kg or combinations, intraperitoneally, and were tested on the MBT. HTR was examined in a magnetometer-based assay. Results1) Psilocybin and escitalopram significantly reduced marble-burying. The effect of psilocybin was not attenuated by the 5-HT2A antagonist, M100907. The 5-HT1A agonist, 8-OH-DPAT reduced marble-burying as did the 5-HT1A partial agonist, buspirone. The effect of 8-OH-DPAT was additive to that of psilocybin but that of buspirone was not. The 5-HT1A antagonist, WAY100635, attenuated the effect of 8-OH-DPAT and buspirone but not the effect of psilocybin. 2) Psilocybin injections over 3.5 hours had no effect on marble-burying and the effect of bolus injection was not persistent. 3) Co-administration of buspirone with psilocybin blocked its effect on HTR ConclusionsNeither 5-HT2A nor 5-HT1A receptors are pivotally implicated in the effect of psilocybin on marble-burying. Co-administration with buspirone may block the psychedelic effects of psilocybin without impeding its anti-obsessional effects.

pharmacology and toxicology↗