Departamento de Biofísica e Radiobiologia, UFPE, Recife, Pernambuco, Brazil.
Serviço de Monitoração Ambiental, CRCN-NE, Recife, Pernambuco, Brazil.
Environ Toxicol Chem. 2019 Oct;38(10):2128-2136. doi: 10.1002/etc.4525. Epub 2019 Aug 8.
Quantum dots have generated great interest because of their optical properties, both to life sciences and electronics applications. However, possible risks to the environment associated with these nanoparticles are still under investigation. The present study aimed to evaluate the toxicity of suspensions of cadmium telluride (CdTe) quantum dots to Biomphalaria glabrata mollusks, a very sensitive aquatic environmental bioindicator for physical and chemical agents. Toxicity was examined by using embryos and adult mollusks as well as hemocytes. The distribution of cadmium in the organs of adults was also assessed. Effects of the stabilizing agent of the quantum dots were also evaluated. Animals were exposed to suspensions of quantum dots for 24 h, at concentrations varying from 1.2 to 20 nM for embryos and from 50 to 400 nM for adult mollusks. Results showed that suspensions of quantum dots induced malformations and mortality in embryos and mortality in adults, depending on the concentration applied. In the cytotoxicity study, hemocyte apoptosis was observed in adults exposed to the highest concentration of quantum dots applied as well as to the stabilizing agent. Cell binucleation and micronucleus frequencies were not significative. Bioaccumulation evaluation revealed that quantum dots targeted the digestive gland (hepatopancreas). Taken together, outcomes suggested that specific nano-effects related directly not only to composition but also to the aggregation of quantum dots may be mediating the observed toxicity. Thus B. glabrata was determined to be a very sensitive species for interpreting possible nano-effects in aquatic environments. Environ Toxicol Chem 2019;38:2128-2136. © 2019 SETAC.
量子点因其光学性质而引起了极大的兴趣,既应用于生命科学又应用于电子学。然而,与这些纳米颗粒相关的对环境的潜在风险仍在调查中。本研究旨在评估碲化镉(CdTe)量子点悬浮液对水生环境生物指示剂生物光滑滨螺的毒性,该生物对物理和化学因子非常敏感。通过使用胚胎和成年软体动物以及血细胞来检查毒性。还评估了量子点稳定剂对成年生物体内镉分布的影响。还评估了量子点稳定剂的毒性。动物在浓度从 1.2 到 20 nM 的量子点悬浮液中暴露 24 小时,胚胎的浓度范围为 50 到 400 nM。结果表明,量子点悬浮液可诱导胚胎畸形和死亡,以及成年动物死亡,具体取决于所应用的浓度。在细胞毒性研究中,在暴露于最高浓度的量子点和稳定剂的成年动物中观察到了血细胞凋亡。双核细胞和微核频率没有显著变化。生物累积评估表明,量子点靶向消化腺(肝胰腺)。综上所述,研究结果表明,与组成直接相关的特定纳米效应,以及与量子点的聚集直接相关的纳米效应,可能介导了观察到的毒性。因此,光滑滨螺被确定为水生环境中解释可能的纳米效应的非常敏感的物种。Environ Toxicol Chem 2019;38:2128-2136。©2019 SETAC。