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Cytotoxic Effects of the Synthetic Cannabinoid, 5F-MDMB-PICA on Human Glioblastoma U87-MG Cells.

Mohammed Mufadhe Alanazi, Fawaz Alasmari, Mohammad M Algahtani, Abdullah S Alhamed, Khaled A Alhosaini, Mohammed M Almutairi, Faleh Alqahtani, Wael A Alanazi, Faisal N Alharbi, Raghad Alsanie, Mohammed Alshehri, Youssef Sari

International journal of medical sciences January 1, 2026 DOI: 10.7150/ijms.125987 via PubMed

Summary

AI-generated from the abstract

5F-MDMB-PICA, a synthetic cannabinoid with roughly 380 times the binding affinity to the CB1 receptor as Δ9-THC, causes concentration-dependent cytotoxicity and oxidative stress in U87-MG astrocyte-like cells. Exposure for 24 hours reduced mitochondrial membrane potential, increased apoptosis and necrosis, and impaired cell migration. Gene expression analysis showed upregulation of pro-apoptotic and inflammatory genes including P53, Bax, TNF-α, and COX-2. Docking studies identified key CB1 binding pocket residues Phe200 and Ser383 as crucial for interaction. These results indicate neurotoxic effects of 5F-MDMB-PICA, highlighting public health risks from synthetic cannabinoid abuse.

Study at a glance

Characteristics In vitro study Peer reviewed
Population U87-MG astrocyte-like cells
Intervention 5F-MDMB-PICA
Dose 1-200 μM
Duration 24 hours
Keywords 5f-mdmb-pica U87-mg Inflammation Mitochondrial dysfunction Neurotoxicity
Key finding 5F-MDMB-PICA induces concentration-dependent cytotoxicity, oxidative stress, apoptosis, necrosis, and impaired migration in U87-MG cells, with upregulation of pro-apoptotic and inflammatory genes.

Abstract

Synthetic cannabinoids, particularly 5F-MDMB-PICA, have emerged as potent psychoactive substances, exhibiting a binding affinity to the CB1 receptor approximately 380 times greater than that of Δ9-THC, the principal psychoactive compound in cannabis. Their widespread abuse has been associated with severe intoxication and fatalities globally. This study aimed to investigate the cytotoxic effects and mechanisms of 5F-MDMB-PICA in U87-MG astrocyte-like cells, a common model in neurobiological research. U87-MG cells (passages 7-15) were treated with increasing concentrations of 5F-MDMB-PICA (1-200 μM) for 24 hours. We employed several assays to evaluate cytotoxicity (MTT assay), oxidative stress, mitochondrial membrane potential, cellular migration (wound healing), and cell death (flow cytometry). Additionally, gene expression analysis via qRT-PCR focused on apoptotic and inflammatory markers. A receptor docking study was performed to verify similarities in binding sites between 5F-MDMB-PICA and Δ9-THC. Our results showed that exposure to 5F-MDMB-PICA led to a concentration-dependent increase in cytotoxicity and oxidative stress, alongside a significant decrease in mitochondrial membrane potential. There was a marked elevation in apoptosis and necrosis, coupled with impaired cellular migration. Gene expression analysis revealed significant upregulation of pro-apoptotic and inflammatory genes, such as P53, Bax, TNF-α, and COX-2, indicating a robust pro-apoptotic and pro-inflammatory response. Notably, key residues (Phe200 and Ser383) in the CB1 binding pocket were identified as crucial for the interaction of both compounds, which might provide insight into the shared patterns of cytotoxic effects. These findings highlight the neurotoxic effects of 5F-MDMB-PICA, underscoring the serious public health risks associated with synthetic cannabinoids.

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