Phillips Jessica, Haimbaugh Alex S, Akemann Camille, Shields Jeremiah N, Wu Chia-Chen, Meyer Danielle N, Baker Bridget B, Siddiqua Zoha, Pitts David K, Baker Tracie R
Institute of Environmental Health Sciences, Wayne State University, Detroit, MI 48202, USA.
Department of Pharmacology, Wayne State University, Detroit, MI 28201, USA.
Toxics. 2022 Jan 24;10(2):53. doi: 10.3390/toxics10020053.
Triclosan, triclocarban and 4-nonylphenol are all chemicals of emerging concern found in a wide variety of consumer products that have exhibited a wide range of endocrine-disrupting effects and are present in increasing amounts in groundwater worldwide. Results of the present study indicate that exposure to these chemicals at critical developmental periods, whether long-term or short-term in duration, leads to significant mortality, morphologic, behavioral and transcriptomic effects in zebrafish (. These effects range from total mortality with either long- or short-term exposure at 100 and 1000 nM of triclosan, to abnormalities in uninflated swim bladder seen with long-term exposure to triclocarban and short-term exposure to 4-nonylphenol, and cardiac edema seen with short-term 4-nonylphenol exposure. Additionally, a significant number of genes involved in neurological and cardiovascular development were differentially expressed after the exposures, as well as lipid metabolism genes and metabolic pathways after exposure to each chemical. Such changes in behavior, gene expression, and pathway abnormalities caused by these three known endocrine disruptors have the potential to impact not only the local ecosystem, but human health as well.
三氯生、三氯卡班和4-壬基酚都是新兴关注的化学物质,它们存在于各种各样的消费品中,已表现出广泛的内分泌干扰效应,且在全球地下水中的含量不断增加。本研究结果表明,在关键发育时期接触这些化学物质,无论接触时间是长期还是短期,都会导致斑马鱼出现显著的死亡率、形态学、行为和转录组学效应。这些效应包括:三氯生在100和1000 nM浓度下长期或短期接触都会导致全部死亡;长期接触三氯卡班和短期接触4-壬基酚会出现未充气鳔异常;短期接触4-壬基酚会出现心脏水肿。此外,接触后,大量参与神经和心血管发育的基因以及接触每种化学物质后的脂质代谢基因和代谢途径都有差异表达。这三种已知内分泌干扰物引起的行为、基因表达和途径异常变化不仅有可能影响当地生态系统,也可能影响人类健康。