Li Jing, Li Haotian, Lin Dongdong, Li Muyi, Wang Quansheng, Xie Song, Zhang Yuming, Liu Fengsong
The International Centre for Precision Environmental Health and Governance, College of Life Sciences, Hebei University, Baoding 071002, China; Key Laboratory of zoological Systematics and Application of Hebei Province, College of Life Sciences, Hebei University, Baoding 071002, China.
Key Laboratory of zoological Systematics and Application of Hebei Province, College of Life Sciences, Hebei University, Baoding 071002, China.
J Hazard Mater. 2021 Feb 15;404(Pt B):124030. doi: 10.1016/j.jhazmat.2020.124030. Epub 2020 Oct 3.
Butyl benzyl phthalate (BBP) is widely used as a plasticizer to increase the plasticity and flexibility of plastic products. Although the potential health hazards of BBP have recently received extensive attention, its toxicological properties and mechanisms remain largely undefined. In the present work, growth, reproductive and developmental toxicity of BBP to Daphnia magna were evaluated, and the transcriptomic alteration of early embryos upon BBP exposure was analyzed. In a 21-day chronic toxicity test, reduced survival ratio, decreased body length, increased abnormal ratio, advanced time to first brood, and reduced offspring of D. magna were observed. BBP exposure inhibited expression of the vitellogenin gene. In addition, embryotoxicity of BBP was observed, which showed not only in the induction of abnormal neonates, but also in the shortened embryonic development cycle. RNA-Seq of early embryo treated with 0.1 mg/L BBP indicated that the pathways involved in signal transduction, cell communication, and embryonic development were significantly down-regulated, while those of biosynthesis, metabolism, cell homeostasis, redox homeostasis were remarkably up-regulated upon BBP exposure, which was consistent with the above phenotypic results. Taken together, our results highlight the toxic effects of BBP on the embryonic development and larval growth of D. magna.
邻苯二甲酸丁苄酯(BBP)作为增塑剂被广泛用于提高塑料制品的可塑性和柔韧性。尽管BBP对健康的潜在危害最近受到了广泛关注,但其毒理学特性和作用机制仍 largely undefined。在本研究中,评估了BBP对大型溞的生长、生殖和发育毒性,并分析了BBP暴露后早期胚胎的转录组变化。在一项为期21天的慢性毒性试验中,观察到大型溞的存活率降低、体长减小、异常率增加、首次繁殖时间提前以及后代数量减少。BBP暴露抑制了卵黄蛋白原基因的表达。此外,还观察到BBP的胚胎毒性,这不仅表现为诱导异常幼体,还表现为缩短胚胎发育周期。用0.1mg/L BBP处理早期胚胎的RNA测序表明,参与信号转导、细胞通讯和胚胎发育的途径显著下调,而生物合成、代谢、细胞内稳态、氧化还原稳态的途径在BBP暴露后显著上调,这与上述表型结果一致。综上所述,我们的结果突出了BBP对大型溞胚胎发育和幼体生长的毒性作用。