Post-Graduation Program in Cerrado Natural Resources Conservation, Goiano Federal University, Urutaí Campus, Urutaí, Brazil.
Biological Research Laboratory, Goiano Federal Institute, Urutaí Campus, Urutaí, Brazil.
Chemosphere. 2021 Aug;277:130279. doi: 10.1016/j.chemosphere.2021.130279. Epub 2021 Mar 22.
Although the toxicity of conventional microplastic types (i.e., petroleum derivatives) in different organisms is already known, knowledge about the effects of alternative biopolymers on aquatic vertebrates remains incipient. Thus, the aim of the present study is to test the hypothesis that the exposure of adult Danio rerio individuals to this pollutant for 30 days is enough to cause polylactic acid biomicroplastics (BioMPs of PLA) accumulation in their bodies, which leads to behavioral/neurotoxic, biochemical, and morphological changes. Based on our results, PLA BioMPs at concentrations of 2.5 and 5 mg/L accumulated in the liver, brain, gills and carcass of the assessed animals. However, such an accumulation was not able to cause locomotor damages or to trigger anxiety-like behavior in them. On the other hand, it was enough to cause behavioral changes (in shoal) predictive of co-specific social interaction and anti-predatory defensive response deficit likely related to cholinergic changes inferred by increased acetylcholinesterase activity and REDOX imbalance. This imbalance was featured by increased production of reactive species. We observed that the treatments have affected animals' pigmentation pattern. Therefore, our study highlights the toxicological potential of the herein assessed biopolymer, and this finding puts in check the innocuousness of this material, as well as expands our knowledge about how PLA BioMPs can affect the ichthyofauna in freshwater environments.
尽管已经了解了不同生物体中常规微塑料类型(即石油衍生物)的毒性,但对于替代生物聚合物对水生脊椎动物的影响的了解仍处于初始阶段。因此,本研究的目的是检验以下假设,即暴露于这种污染物 30 天的成年斑马鱼个体足以导致其体内聚乳酸生物微塑料(PLA BioMPs)的积累,从而导致行为/神经毒性、生化和形态变化。根据我们的结果,在 2.5 和 5 mg/L 的浓度下,PLA BioMPs 在评估动物的肝脏、大脑、鳃和胴体中积累。然而,这种积累并不能导致它们的运动损伤或引发类似焦虑的行为。另一方面,它足以导致行为变化(在群体中),这预示着同种社会互动和抗捕食防御反应的缺陷,可能与乙酰胆碱酯酶活性增加和氧化还原失衡所推断的胆碱能变化有关。这种失衡的特点是活性物质的产生增加。我们观察到,这些处理影响了动物的色素沉着模式。因此,我们的研究强调了所评估生物聚合物的毒理学潜力,这一发现检验了这种材料的无害性,并扩展了我们对 PLA BioMPs 如何影响淡水环境中鱼类的认识。