Shaw Andrew A, Steketee Jeffery D, Bukiya Anna N, Dopico Alex M
Department of Pharmacology, Addiction Science, and Toxicology, College of Medicine, The University of Tennessee Health Science Center, Memphis, Tennessee, USA; email:
Annu Rev Pharmacol Toxicol. 2025 Jan;65(1):487-506. doi: 10.1146/annurev-pharmtox-012924-010532.
Toluene intoxication constitutes a persistent public health problem worldwide. While most organs can be damaged, the brain is a primary target whether exposure is accidental, occupational, or recreational. Interventions to prevent/revert brain damage by toluene are curtailed by the scarce information on the molecular targets and mechanisms mediating toluene's brain toxicity and the common exposure to other neurotoxins and/or coexistence of neurological/psychiatric disorders. We examine () the physicochemical properties of toluene that allow this inhalant to primarily target the lipid-rich brain; () the cell types targeted by toluene (neurons, different types of glia), while considering a cerebrovascular component; and () putative molecular mechanisms by which toluene may modify receptor function while analyzing structural features that allow toluene to directly interact with membrane lipids or specific proteins. This information constitutes a stepping stone to design pharmacotherapies that counteract toluene brain intoxication.
甲苯中毒是一个全球性的持续性公共卫生问题。虽然大多数器官都可能受损,但无论接触是意外、职业性还是娱乐性的,大脑都是主要靶点。由于关于介导甲苯脑毒性的分子靶点和机制的信息匮乏,以及与其他神经毒素的共同暴露和/或神经/精神疾病的共存,预防/逆转甲苯所致脑损伤的干预措施受到了限制。我们研究:(1)使这种吸入剂主要靶向富含脂质的大脑的甲苯的物理化学性质;(2)甲苯靶向的细胞类型(神经元、不同类型的神经胶质细胞),同时考虑脑血管成分;(3)甲苯可能改变受体功能的推定分子机制,同时分析使甲苯能够直接与膜脂质或特定蛋白质相互作用的结构特征。这些信息是设计对抗甲苯脑中毒的药物疗法的垫脚石。