Bureau of Chemical Safety, Food Directorate, Health Products and Food Branch, Health Canada, Ottawa, Ontario, K1A 0K9, Canada.
Bureau of Chemical Safety, Food Directorate, Health Products and Food Branch, Health Canada, Ottawa, Ontario, K1A 0K9, Canada.
Food Chem Toxicol. 2024 Feb;184:114426. doi: 10.1016/j.fct.2023.114426. Epub 2023 Dec 29.
Furan is a naturally forming compound found in heat-processed foods such as coffee, canned meats, and jarred baby food. It is concurrently found with analogues including 2-methylfuran (2-MF) and 3-methylfuran (3-MF), and toxicity studies demonstrate all are potent liver toxins. Toxicity studies found 3-MF is more toxic than either furan, or 2-MF. The present analysis assesses the transcriptional response in liver samples taken from male Fischer (F344) rats exposed to furan or 3-MF from 0 to 2.0 and 0-1.0 mg/kg bw/day, respectively, for 90 days. Transcriptional analyses found decreased liver function and fatty acid metabolism are common responses to both furan and 3-MF exposure. Furan liver injury promotes a ductular reaction through Hippo and TGFB signalling, which combined with increased immune response results in ameliorating perturbed bile acid homeostasis in treated rats. Failure to activate these pathways in 3-MF exposed rats and decreased p53 activity leads to cholestasis, and increased toxicity. Finally, BMD analysis indicate many of the most sensitive pathways affected by furan and 3-MF exposure relate to metabolism - malate dehydrogenase and glucose metabolism with BMDLs of 0.03 and 0.01 mg/kg bw/day for furan and 3-MF exposure, respectively, which agrees with BMDLs previously reported for apical and microarray data.
呋喃是一种天然形成的化合物,存在于热加工食品中,如咖啡、罐装肉类和罐装婴儿食品。它与类似物 2-甲基呋喃(2-MF)和 3-甲基呋喃(3-MF)同时存在,毒性研究表明它们都是强有力的肝脏毒素。毒性研究发现,3-MF 的毒性比呋喃或 2-MF 都大。本分析评估了雄性 Fischer(F344)大鼠暴露于呋喃或 3-MF 0-2.0 和 0-1.0 mg/kg bw/day 分别 90 天后肝脏样本中的转录反应。转录分析发现,肝功能下降和脂肪酸代谢异常是呋喃和 3-MF 暴露的共同反应。呋喃引起的肝损伤通过 Hippo 和 TGFB 信号通路促进胆管反应,与增强的免疫反应相结合,导致治疗大鼠胆汁酸稳态失调得到改善。在 3-MF 暴露的大鼠中未能激活这些途径以及 p53 活性的降低导致胆汁淤积和毒性增加。最后,BMD 分析表明,呋喃和 3-MF 暴露最敏感的途径与代谢有关——苹果酸脱氢酶和葡萄糖代谢,呋喃和 3-MF 暴露的 BMDLs 分别为 0.03 和 0.01 mg/kg bw/day,这与先前报道的顶端和微阵列数据的 BMDLs 一致。