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
生物化学
超氧化物歧化酶
遗传学
基因
胎儿
有机化学
怀孕
作者
Emma Ivantsova,Victoria Lopez‐Scarim,Amany Sultan,Cole D. English,Angel 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.
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