Rocha Thiago Lopes, Sabóia-Morais Simone Maria Teixeira, Bebianno Maria João
CIMA, Faculty of Science and Technology, University of Algarve, Campus de Gambelas, 8005-139 Faro, Portugal; Laboratory of Cellular Behavior, Biological Sciences Institute, Federal University of Goiás, Goiânia, Goiás, Brazil.
Laboratory of Cellular Behavior, Biological Sciences Institute, Federal University of Goiás, Goiânia, Goiás, Brazil.
Aquat Toxicol. 2016 Aug;177:306-15. doi: 10.1016/j.aquatox.2016.06.003. Epub 2016 Jun 8.
Although tissue-level biomarkers have been widely applied in environmental toxicology studies, the knowledge using this approach in marine invertebrates exposed to engineered nanomaterials (ENMs) remains limited. This study investigated histopathological alterations and inflammatory responses induced by Cd-based quantum dots (QDs), in comparison with their dissolved counterparts, in the marine mussel Mytilus galloprovincialis. Mussels were exposed to CdTe QDs and dissolved Cd at the same concentration (10μg Cd L(-1)) for 14days and a total of 15 histopathological alterations and 17 histomorphometric parameters were analysed in the digestive gland along with the determination of histopathological condition indices (Ih). A multivariate analysis showed that the mussel response to QDs was more related to exposure time, inflammatory conditions (frequency of haemocytic infiltration and granulocytomas) and changes of cell-type composition (especially the rate between basophilic and digestive cells) when compared to dissolved Cd, while the response to dissolved Cd was associated with histomorphometric parameters of the epithelium and lumen of digestive tubules and increase of the atrophic tubule frequency. Both Cd forms induced higher Ih compared to unexposed mussels indicating a significant decrease in the health status of digestive gland in a Cd form and time-dependent pattern. Results indicate that the multiparametric tissue-level biomarkers in the digestive gland provide a suitable approach to assess the ecotoxicity and mode of action of metal-based ENMs in marine bivalves.
尽管组织水平的生物标志物已广泛应用于环境毒理学研究,但在暴露于工程纳米材料(ENM)的海洋无脊椎动物中使用这种方法的相关知识仍然有限。本研究调查了与溶解态镉相对比,基于镉的量子点(QD)在海洋贻贝Mytilus galloprovincialis中诱导的组织病理学改变和炎症反应。贻贝暴露于相同浓度(10μg Cd L(-1))的碲化镉量子点和溶解态镉中14天,并对消化腺中的15种组织病理学改变和17种组织形态计量学参数进行了分析,同时测定了组织病理学状况指数(Ih)。多变量分析表明,与溶解态镉相比,贻贝对量子点的反应与暴露时间、炎症状况(血细胞浸润和粒细胞瘤的频率)以及细胞类型组成的变化(特别是嗜碱性细胞与消化细胞之间的比例)更相关,而对溶解态镉的反应与消化小管上皮和管腔的组织形态计量学参数以及萎缩小管频率的增加有关。与未暴露的贻贝相比,两种镉形态均诱导了更高的Ih,表明消化腺的健康状况以镉形态和时间依赖的模式显著下降。结果表明,消化腺中的多参数组织水平生物标志物为评估海洋双壳贝类中金属基ENM的生态毒性和作用模式提供了一种合适的方法。