Related Experiment Video
Updated: Sep 10, 2025

Adaptation of Microelectrode Array Technology for the Study of Anesthesia-induced Neurotoxicity in the Intact Piglet Brain
Published on: May 12, 2018
Xylazine-Adulterated Fentanyl-Induced Brain Toxicity: Mechanism Elucidation via Network Toxicology and Molecular
Ning Wang1,2, Yangchang Ou1,2, Yihan Wang1,2
1Faculty of Forensic Medicine, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China.
Abstract:
Xylazine-adulterated fentanyl (FAAX) is emerging as a public health concern, causing life-threatening brain injuries that account for overdose deaths; however, the underlying mechanisms are far from illustrated. The present study aimed to explore and analyze the molecular mechanisms of FAAX-induced brain toxicity through network toxicology approaches and in vitro validation. 294 potential targets were identified, and protein-protein interaction (PPI) analysis ranked six proteins as core targets, among which JAK2 and PI3K were emphasized. Molecular docking revealed that both fentanyl and xylazine bind JAK2 and PI3K with high affinity. In SH-SY5Y cells treated with FAAX (fentanyl 40 μM, xylazine 160 μM, 24 h), RT-qPCR and Western blotting confirmed marked upregulation of JAK2 and PI3K. Collectively, we determined JAK2 and PI3K as the key targets in FAAX-induced brain toxicity. Our findings not only offer a novel perspective for future research but also provide a foundation for future translational studies aimed at mitigating the neurological consequences of FAAX exposure.
More Related Videos
08:15Network Pharmacology and Validation of the Antidepressant Mechanisms of Qiangzhifang in a Chronic Restraint Stress-induced Depression Rat Model
Published on: June 6, 2025
08:23Real-Time Impedance-based Cell Analyzer as a Tool to Delineate Molecular Pathways Involved in Neurotoxicity and Neuroprotection in a Neuronal Cell Line
Published on: August 9, 2014