氧化应激
神经毒性
斑马鱼
毒性
抗氧化剂
胚胎
SOD2
发育毒性
化学
生物
毒理
细胞生物学
男科
生物化学
超氧化物歧化酶
遗传学
基因
胎儿
医学
有机化学
怀孕
作者
Emma Ivantsova,Victoria Lopez-Scarim,Amany Sultan,Cole English,A. Biju,Christopher L. Souders,Natalia E. Padillo-Anthemides,Isaac Filipe Moreira Konig,Christopher J. Martyniuk
标识
DOI:10.1016/j.etap.2023.104315
摘要
"GenX" [ammonium perfluoro (2-methyl-3-oxahexanoate] was developed as a replacement chemical for toxic perfluorinated compounds to be used in product manufacturing. Here, we assessed developmental, mitochondrial, and behavioral toxicity endpoints in zebrafish embryos/larvae exposed to GenX. GenX exerted low toxicity to zebrafish embryos/larvae up to 20 mg/L. GenX did not affect mitochondrial oxidative phosphorylation nor ATP levels. ROS levels were reduced in larvae fish exposed to 10 and 100 µg/L, indicative of an antioxidant defense; however, ROS levels were elevated in fish exposed to 1000 µg/L. Increased expression of cox1 and sod2 in GenX exposed 7-day larvae was noted. GenX (0.1 or 1 µg/L) altered transcripts associated with neurotoxicity (elavl3, gfap, gap43, manf, and tubb). Locomotor activity of larvae was reduced by 100 µg/L GenX, but only in light periods. Perturbations of anxiety-related behaviors in larvae were not observed with GenX exposure. These data inform risk assessments for long-lived perfluorinated chemicals of concern.
科研通智能强力驱动
Strongly Powered by AbleSci AI