Puligilla Ramya Deepthi, Roos Noëmi Johanna, Bolten Jan Stephan, Hopf Nancy B, Zurich Marie-Gabrielle, Barulin Nikolai, Huwyler Jörg
Division of Pharmaceutical Technology, University of Basel, Klingelbergstrasse 50, Basel 4056, Switzerland; Swiss Centre for Applied Human Toxicology, Basel, Missionsstrasse 64, Basel 4055, Switzerland.
Division of Pharmaceutical Technology, University of Basel, Klingelbergstrasse 50, Basel 4056, Switzerland.
Environ Toxicol Pharmacol. 2025 Jun;116:104678. doi: 10.1016/j.etap.2025.104678. Epub 2025 Mar 23.
Propylene glycol ethers are increasingly used as organic solvents of choice in domestic products and industrial manufacturing. However, little is known about their potential neurotoxic effects. In the present study, we therefore evaluated the acute toxic and behavioral effects of propylene glycol ethers using zebrafish larvae as a vertebrate model. Studied endpoints included viability, motor behavior, larval photo and locomotor response, and blood-brain barrier permeability (BBB). We observed hyperactivity at lower concentrations and hypoactivity at higher concentrations. Impaired behavioral patterns in exposed larvae suggested an interaction with the nervous system. Mechanistic studies revealed an impact on BBB permeability since a significant increase in extracellular fluorescent tracer permeability into brain parenchyma was observed following exposure. We conclude that the zebrafish model is a predictive screening model to rank organic solvents with respect to their toxic potential. Experiments with ethanol as a reference correlate with literature findings in humans.
丙二醇醚越来越多地被用作家庭用品和工业制造中首选的有机溶剂。然而,人们对其潜在的神经毒性作用知之甚少。因此,在本研究中,我们以斑马鱼幼体作为脊椎动物模型,评估了丙二醇醚的急性毒性和行为影响。研究的终点包括活力、运动行为、幼体光反应和运动反应以及血脑屏障通透性(BBB)。我们观察到在较低浓度下出现多动,在较高浓度下出现少动。暴露幼体的行为模式受损表明其与神经系统存在相互作用。机制研究揭示了对血脑屏障通透性的影响,因为在暴露后观察到细胞外荧光示踪剂进入脑实质的通透性显著增加。我们得出结论,斑马鱼模型是一种预测性筛选模型,可根据有机溶剂的潜在毒性对其进行排名。以乙醇作为参考的实验结果与人类文献研究结果相关。