Research Centre on Animal Cognition (CRCA), Centre for Integrative Biology (CBI), UMR5169 CNRS, Toulouse University, Toulouse, France.
CIRIMAT, CNRS, INPT, UPS, UMR5085 CNRS-UPS-INPT, Toulouse University, Toulouse, France.
Nanotoxicology. 2021 May;15(4):511-526. doi: 10.1080/17435390.2021.1894615. Epub 2021 Mar 11.
Carbon nanotubes (CNTs) offer attractive opportunities due to their physical, electrical, mechanical, optical, and thermal properties. They are used in a wide range of applications and are found in numerous consumer products. On the downside, their increasing presence in the environment poses potential threats to living organisms and ecosystems. The aim of this study was to evaluate the toxicity of double-walled carbon nanotubes (DWCNTs) on a new model system: the acellular slime mold Despite its ecological significance, its simplicity of organization, and its behavioral complexity, exposure of such organisms to nanoparticles has been poorly investigated. Slime molds were exposed to DWCNTs using three routes of exposure (topical, food, environment). We first demonstrated that DWCNTs were rapidly internalized by slime molds especially when DWCNTs were mixed with the food or spread out in the environment. Secondly, we showed that a 6-week exposure to DWCNTs did not lead to bioaccumulation nor did it lead to persistence in the slime molds when they entered a resting stage. Thirdly, we revealed that 2 days following exposure, DWCNTs were almost entirely excreted from the slime molds. Lastly, we uncovered that DWCNTs exposure altered the migration speed, the pseudopods formation, and the expansion rate of the slime molds. Our results extend our current knowledge of CNTs cytotoxicity and introduce as an ideal organism for nanotoxicology.
碳纳米管 (CNTs) 由于其物理、电气、机械、光学和热性能而具有吸引力。它们被广泛应用于各种产品中。但不利的一面是,它们在环境中的日益增多对生物和生态系统构成了潜在威胁。本研究的目的是评估双壁碳纳米管 (DWCNTs) 对新型模型系统的毒性:非细胞黏菌。尽管黏菌在生态上具有重要意义,其组织简单,行为复杂,但对这些生物的纳米颗粒暴露研究甚少。黏菌通过三种暴露途径(局部、食物、环境)接触 DWCNTs。我们首先证明 DWCNTs 可被黏菌迅速内化,尤其是当 DWCNTs 与食物混合或散布在环境中时。其次,我们表明黏菌暴露于 DWCNTs 6 周不会导致生物积累,也不会在进入休眠阶段时在黏菌中持续存在。第三,我们揭示出暴露后 2 天,DWCNTs 几乎全部从黏菌中排出。最后,我们发现 DWCNTs 暴露会改变黏菌的迁移速度、伪足形成和扩展速度。我们的研究结果扩展了我们对 CNTs 细胞毒性的认识,并将黏菌引入为纳米毒理学的理想生物。