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不同功能化碲化镉量子点对斑马鱼不同发育阶段金属积累、发育毒性和呼吸的影响

Influence of different functionalized CdTe quantum dots on the accumulation of metals, developmental toxicity and respiration in different development stages of the zebrafish ().

作者信息

Bosch Suanne, Botha Tarryn Lee, Wepener Victor

机构信息

Water Research Group, School of Biological Sciences, North-West University, Potchefstroom, South Africa.

Department of Zoology, University of Johannesburg, Johannesburg, South Africa.

出版信息

Front Toxicol. 2023 May 2;5:1176172. doi: 10.3389/ftox.2023.1176172. eCollection 2023.

Abstract

The bioaccumulation and differential effects of cadmium tellurium quantum dot (CdTe QDs) nanomaterials with different functional groups are poorly understood in aquatic organisms. This study aimed to investigate the metal uptake, developmental effects, and respiratory effects of CdTe QDs with different functional groups (COOH, NH3, and PEG) on zebrafish embryos. Zebrafish embryos were exposed to carboxylate (COOH), ammonia (NH3), and polyethylene glycol (PEG) functionalized CdTe QDs at nominal concentrations of 0.5, 2, 4, 6, and 20 mg QDs/L. The materials were characterized in E3 exposure media and the metal uptake, developmental effects, and respiratory effects of zebrafish embryos were recorded. The total Cd or Te concentrations in the larvae could not be explained by the metal concentrations or dissolution of the materials in the exposure media. The metal uptake in the larvae was not dose-dependent, except for the QD-PEG treatment. The QD-NH3 treatment caused respiration inhibition at the highest exposure concentration and hatching delays and severe malformations at low concentrations. The toxicities observed at low concentrations were attributed to particles crossing the pores in the chorion, and toxicities at higher concentrations were linked to the aggregation of particle agglomerates to the surface of the chorion impairing respiration. Developmental defects were recorded following exposure to all three functional groups, but the QD-NH3 group had the most severe response. The LC50 values for embryo development of QD-COOH and QD-PEG groups were higher than 20 mg/L, and the LC50 of the QD-NH3 group was 20 mg/L. The results of this study suggest that CdTe QDs with different functional groups have differential effects on zebrafish embryos. The QD-NH3 treatment caused the most severe effects, including respiration inhibition and developmental defects. These findings provide valuable information for understanding the effects of CdTe QDs on aquatic organisms and highlight the need for further investigation.

摘要

不同官能团的碲化镉量子点(CdTe QDs)纳米材料在水生生物中的生物累积和差异效应目前了解甚少。本研究旨在探究不同官能团(COOH、NH₃和PEG)的CdTe QDs对斑马鱼胚胎的金属摄取、发育效应和呼吸效应。斑马鱼胚胎暴露于标称浓度为0.5、2、4、6和20 mg QDs/L的羧酸盐(COOH)、氨(NH₃)和聚乙二醇(PEG)功能化的CdTe QDs中。在E3暴露介质中对材料进行表征,并记录斑马鱼胚胎的金属摄取、发育效应和呼吸效应。幼虫体内的总Cd或Te浓度无法用暴露介质中材料的金属浓度或溶解情况来解释。除QD - PEG处理外,幼虫的金属摄取不呈剂量依赖性。QD - NH₃处理在最高暴露浓度下导致呼吸抑制,在低浓度下导致孵化延迟和严重畸形。低浓度下观察到的毒性归因于颗粒穿过绒毛膜的孔隙,而高浓度下的毒性与颗粒团聚物聚集到绒毛膜表面损害呼吸有关。暴露于所有三个官能团后均记录到发育缺陷,但QD - NH₃组的反应最为严重。QD - COOH和QD - PEG组胚胎发育的半数致死浓度(LC50)值高于20 mg/L,QD - NH₃组的LC50为20 mg/L。本研究结果表明,不同官能团的CdTe QDs对斑马鱼胚胎有不同的影响。QD - NH₃处理造成的影响最为严重,包括呼吸抑制和发育缺陷。这些发现为理解CdTe QDs对水生生物的影响提供了有价值的信息,并强调了进一步研究的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c26/10185758/2878adbc2ded/ftox-05-1176172-g001.jpg

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