BEHAVIORAL AND TRANSCRIPTOMIC EFFECTS OF A NOVEL CANNABINOID ON A RAT VALPROIC ACID MODEL OF AUTISM
- PMID: 40187640
- DOI: 10.1016/j.neuropharm.2025.110450
Abstract
Autism spectrum disorder (ASD) is a complex neurodevelopmental condition characterized by impaired social communication, restricted interests, repetitive behavior and irritability. Exposure to valproic acid (VPA) during pregnancy has been shown to increase the risk of autism in children and has led to the development of the in-utero VPA rat model that elicits neurodevelopmental autistic-like features. Offspring exhibit behavioral and neurobiological alterations modelling ASD symptoms. We performed a behavioral and molecular assessment in a rat in-utero VPA model treated with a novel botanical cannabinoid, JZP541. Male offspring from dams treated with VPA were tested acutely and sub-chronically with JZP541 (10, 30, or 100 mg/kg, intraperitoneally). A behavioral testing battery was performed, and brain frontal cortex and hippocampus used for RNA sequencing.
In utero exposure to VPA resulted in progeny showing behavioral phenotypes characteristic of ASD. JZP541 attenuated these deficits in social, stereotypic, hyperactivity and irritability behavior in a dose-dependent fashion. VPA exposure was associated with a substantial transcriptional dysregulation impacting multiple key biological processes in a tissue-dependent manner. The expression profiles were integrated with publicly available datasets of autism-associated genes to support the validity of the model used and to focus on the effects of treatment on known autism-relevant transcriptional targets. This approach indicated a strong and dose-dependent reduction of the autism-associated gene expression signature in brain samples from animals dosed with JZP541. Our findings demonstrate JZP541 was able to ameliorate ASD associated behavioral deficits, and this was supported by improvements in putative transcriptional biomarkers of ASD.
Keywords: ASD, Cannabinoids, Rat, Transcriptomics, Valproic Acid
Copyright © 2025. Published by Elsevier Ltd.
Conflict of interest statement
Declaration of Competing Interest ☒ The authors declare the following financial interests/personal relationships which may be considered as potential competing interests: Sally Loomis reports financial support was provided by Jazz Pharmaceuticals UK Limited. Diogo Silva reports financial support was provided by Jazz Pharmaceuticals UK Limited. Ranjev Savopoulos reports financial support was provided by Jazz Pharmaceuticals UK Limited. Jackie Cilia reports financial support was provided by Jazz Pharmaceuticals UK Limited. Jennifer Li reports financial support was provided by Jazz Pharmaceuticals UK Limited.
Mat D. Davis reports financial support was provided by Jazz Pharmaceuticals Inc. David Virley reports financial support was provided by Jazz Pharmaceuticals UK Limited. Andrew Foley reports financial support was provided by Berand Neuropharmacology Ltd. Andrew McCreary reports financial support was provided by Jazz Pharmaceuticals UK Limited. Emanuele Loro reports financial support was provided by Jazz Pharmaceuticals UK Limited. Sally Loomis, Andrew McCreary, David Virley, Jennifer Li has patent issued to GW Research Ltd GB. If there are other authors, they declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
JZP541 is a synthetic cannabinoid designed for therapeutic purposes, specifically targeting conditions like autism spectrum disorder. While it is not a naturally occurring compound, it is modeled to have effects similar to natural cannabinoids, particularly cannabidiol (CBD). Like CBD, JZP541 interacts with the endocannabinoid system, but it is engineered in a laboratory to optimize specific therapeutic outcomes. This makes JZP541 a synthetic alternative with properties that may resemble those of CBD, offering potential benefits for conditions where CBD has shown promise, such as neurodevelopmental disorders. It is in our opinion that natural cannabinoids are the best choice in all cases.

