Department of Science and Technology, University of Sannio, Via de Sanctis, 82100 Benevento, Italy.
Biogem Scarl, Institute of Molecular Biology and Genetics Research, Via Camporeale, 83031 Ariano Irpino, Italy.
Int J Mol Sci. 2023 May 31;24(11):9582. doi: 10.3390/ijms24119582.
Early life exposure to Endocrine Disruptor Chemicals (EDCs), such as the organophosphate pesticide Chlorpyrifos (CPF), affects the thyroid activity and dependent process, including the glucose metabolism. The damage of thyroid hormones (THs) as a mechanism of action of CPF is underestimated because the studies rarely consider that TH levels and signaling are customized peripherally. Here, we investigated the impairment of metabolism/signaling of THs and lipid/glucose metabolism in the livers of 6-month-old mice, developmentally and lifelong exposed to 0.1, 1, and 10 mg/kg/die CPF (F1) and their offspring similarly exposed (F2), analyzing the levels of transcripts of the enzymes involved in the metabolism of T3 (), lipids (, ), and glucose (, ). Both processes were altered only in F2 males, affected by hypothyroidism and by a systemic hyperglycemia linked to the activation of gluconeogenesis in mice exposed to 1 and 10 mg/kg/die CPF. Interestingly, we observed an increase in active FOXO1 protein due to a decrease in AKT phosphorylation, despite insulin signaling activation. Experiments in vitro revealed that chronic exposure to CPF affected glucose metabolism via the direct modulation of FOXO1 activity and T3 levels in hepatic cells. In conclusion, we described different sex and intergenerational effects of CPF exposure on the hepatic homeostasis of THs, their signaling, and, finally, glucose metabolism. The data points to FOXO1-T3-glucose signaling as a target of CPF in liver.
早期生活中接触内分泌干扰化学物质(EDCs),如有机磷杀虫剂毒死蜱(CPF),会影响甲状腺活动和依赖于甲状腺的过程,包括葡萄糖代谢。由于研究很少考虑到甲状腺激素(THs)水平和信号在外周是定制化的,因此 CPF 的作用机制中对 THs 的损伤被低估了。在这里,我们研究了代谢/THs 信号和脂质/葡萄糖代谢在 6 个月大的老鼠肝脏中的损伤,这些老鼠在发育过程中和一生中分别暴露于 0.1、1 和 10mg/kg/die CPF(F1)及其类似暴露的后代(F2)中,分析了参与 T3()代谢的酶的转录物水平,脂质(,)和葡萄糖(,)。这两个过程仅在 F2 雄性中受到影响,受甲状腺功能减退症和系统性高血糖的影响,这与暴露于 1 和 10mg/kg/die CPF 的小鼠中糖异生的激活有关。有趣的是,我们观察到由于 AKT 磷酸化减少导致活性 FOXO1 蛋白增加,尽管胰岛素信号激活。体外实验表明,CPF 的慢性暴露通过直接调节肝细胞中的 FOXO1 活性和 T3 水平来影响葡萄糖代谢。总之,我们描述了 CPF 暴露对 THs 及其信号在肝脏中的肝内稳态以及最终葡萄糖代谢的不同性别和代际影响。这些数据表明 FOXO1-T3-葡萄糖信号是 CPF 在肝脏中的作用靶点。