Jinxian Lin, Kun Luo, Haiyan Yu, Zhulin Du, Jiayi Li, Zhengwei Liang, Qixue Zheng, Sicheng Liu, Jinping Yu, Xionghua Yang, Lingling Yang, Ping Deng, Huifeng Pi, Zhengping Yu, Yong Cheng, Wei Yuan, Huihui Hong, Zhou Zhou
Aflatoxin B 1 (AFB 1 ) is a ubiquitous food contaminant with established hepatorenal toxicity, but its contribution to Parkinsonism remains unclear. We investigated whether AFB 1 exposure promotes Parkinsonism pathology through lipid disturbance and lysophosphatidylserine (Lyso-PS)-driven neuroinflammation. Quantification of serum AFB 1 -albumin adducts and targeted lipidomic analysis were conducted on serum samples from 12 patients with Parkinsonism and 12 controls subjects. Parallel experiments in C57BL/6J mice exposed to AFB 1 (1.5 mg/L in drinking water for 6 weeks) included motor behavioral testing, midbrain histopathology, untargeted lipidomics, and cytokine profiling. Mechanism validation was conducted in MN9D dopaminergic neurons by modulating Lyso-PS metabolism and signaling. Patients with Parkinsonism exhibited elevated serum AFB 1 -albumin levels. Meanwhile, Lyso-PS was identified as the only subclass that increased significantly in human serum lipidomic analysis compared to the control group. Chronic AFB 1 exposure in mice induced motor deficits, dopaminergic neuron loss, α-synuclein accumulation, and robust systemic and midbrain inflammation, accompanied by midbrain Lyso-PS enrichment and upregulation of Abhd16a and Gpr34. In MN9D cells, AFB 1 increased Lyso-PS, P65 mRNA levels, α-synuclein, and pro-inflammatory cytokines, whereas Abhd16a knockdown or inhibition and Gpr34 blockade attenuated these effects. In line with observation in serum samples from patients with Parkinsonism, Lyso-PS (15:0) and Lyso-PS (16:0) levels were increased in the midbrain of mice after AFB 1 exposure. Collectively, these findings suggest that AFB 1 disrupts Lyso-PS metabolism and induces neuroinflammation in the midbrain, potentially through the Lyso-PS/Gpr34/NF-κB axis, thereby contributing to Parkinsonism-like motor deficits. Lyso-PS (15:0) and Lyso-PS (16:0) emerge as promising metabolic biomarkers of the risk of AFB 1 -associated neurotoxicity. Further validation in larger clinical cohorts and additional in vivo causal studies are warranted.