Roy Nicole M, Zambrzycka Ewelina, Santangelo Jenna
Department of Biology, Sacred Heart University, 5151 Park Ave, Fairfield, CT, 06825, United States.
Department of Biology, Sacred Heart University, 5151 Park Ave, Fairfield, CT, 06825, United States.
Environ Toxicol Pharmacol. 2017 Dec;56:129-135. doi: 10.1016/j.etap.2017.09.009. Epub 2017 Sep 18.
Butyl benzyl phthalate (BBP) is commonly added during the manufacturing of plastics to increase flexibility and elasticity. However, BBP leaches off of plastic and environment presence has been detected in soil, groundwater and sediment potentially effecting organisms in the environment. Given the widespread uses of BBP in household, consumer goods and the presence of BBP in the environment, studies on developmental toxicity are needed. Here, we use a zebrafish model to investigate the early developmental toxicity of BBP. We treated gastrula staged embryos with increasing concentrations of BBP and noted concentration-dependent defects in caudal tail development, but the effect was caudal specific with no other developmental defects noted. In situ hybridization studies using muscle and notochord markers show alterations in muscle development and non-linear, kinked notochord staining. A more detailed antibody staining using a myosin specific marker shows disorganized myofibrils and a loss of chevron shaped somites. Furthermore, vascular development in the tail was also disrupted in a concentration dependent manner. We conclude that BBP is toxic to caudal development in zebrafish. The sensitivity of zebrafish during development to environmental toxins and chemicals has been useful in assessing the health of the aquatic environment. The results presented here are a useful early warning system for contamination that could affect human health.
邻苯二甲酸丁苄酯(BBP)在塑料制造过程中通常被添加以增加柔韧性和弹性。然而,BBP会从塑料中渗出,并且已在土壤、地下水和沉积物中检测到其在环境中的存在,这可能会影响环境中的生物。鉴于BBP在家庭用品和消费品中的广泛使用以及其在环境中的存在,需要开展关于发育毒性的研究。在此,我们使用斑马鱼模型来研究BBP的早期发育毒性。我们用浓度递增的BBP处理原肠胚期胚胎,并注意到在尾鳍发育中存在浓度依赖性缺陷,但这种影响具有尾部特异性,未观察到其他发育缺陷。使用肌肉和脊索标记物的原位杂交研究显示肌肉发育改变以及脊索染色呈非线性、扭结状。使用肌球蛋白特异性标记物进行的更详细的抗体染色显示肌原纤维紊乱且V形体节缺失。此外,尾部的血管发育也以浓度依赖性方式受到破坏。我们得出结论,BBP对斑马鱼的尾部发育有毒性。斑马鱼在发育过程中对环境毒素和化学物质的敏感性有助于评估水生环境的健康状况。此处呈现的结果是一个有用的早期污染预警系统,可能会影响人类健康。