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量子点对模式生物——斑马鱼的毒性研究进展

Progress on the toxicity of quantum dots to model organism-zebrafish.

作者信息

Bai Changcun, Tang Meng

机构信息

Key Laboratory of Environmental Medicine and Engineering, Ministry of Education, School of Public Health, Southeast University, Nanjing, China.

出版信息

J Appl Toxicol. 2023 Jan;43(1):89-106. doi: 10.1002/jat.4333. Epub 2022 May 5.

Abstract

In vivo toxicological studies are currently necessary to analyze the probable dangers of quantum dots (QDs) to the environment and human safety, due to the fast expansion of QDs in a range of applications. Because of its high fecundity, cost-effectiveness, well-defined developmental phases, and optical transparency, zebrafish has long been considered the "gold standard" for biosafety assessment of chemical substances and pollutants. In this review, the advantages of using zebrafish in QD toxicity assessment were explored. Then, the target organ toxicities such as developmental toxicity, immunotoxicity, cardiovascular toxicity, neurotoxicity, and hepatotoxicity were summarized. The hazardous effects of different QDs, including cadmium-containing QDs like CdTe, CdSe, and CdSe/ZnS, as well as cadmium-free QDs like graphene QDs (GQDs), graphene oxide QDs (GOQDs), and others, were emphasized and described in detail, as well as the underlying mechanisms of QDs generating these effects. Furthermore, general physicochemical parameters determining QD-induced toxicity in zebrafish were introduced, such as chemical composition and surface coating/modification. The limitations and special concerns of using zebrafish in QD toxicity studies were also mentioned. Finally, we predicted that the utilization of high-throughput screening assays and omics, such as transcriptome sequencing, proteomics, and metabolomics will be popular topic in nanotoxicology.

摘要

由于量子点(QDs)在一系列应用中的快速扩展,目前进行体内毒理学研究对于分析其对环境和人类安全的潜在危害很有必要。斑马鱼因其高繁殖力、成本效益、明确的发育阶段和光学透明度,长期以来一直被视为化学物质和污染物生物安全性评估的“金标准”。在这篇综述中,探讨了使用斑马鱼进行量子点毒性评估的优势。然后,总结了发育毒性、免疫毒性、心血管毒性、神经毒性和肝毒性等靶器官毒性。详细强调并描述了不同量子点的有害影响,包括含镉量子点如碲化镉(CdTe)、硒化镉(CdSe)和硒化镉/硫化锌(CdSe/ZnS),以及无镉量子点如石墨烯量子点(GQDs)、氧化石墨烯量子点(GOQDs)等,以及量子点产生这些影响的潜在机制。此外,还介绍了决定量子点对斑马鱼毒性的一般物理化学参数,如化学成分和表面涂层/修饰。还提到了在量子点毒性研究中使用斑马鱼的局限性和特殊关注点。最后,我们预测高通量筛选分析和组学技术(如转录组测序、蛋白质组学和代谢组学)的应用将成为纳米毒理学中的热门话题。

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