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纳米颗粒:从生态遗传毒理学角度权衡利弊

Nanoparticles: Weighing the Pros and Cons from an Eco-genotoxicological Perspective.

作者信息

Koedrith Preeyaporn, Rahman Md Mujibur, Jang Yu Jin, Shin Dong Yeop, Seo Young Rok

机构信息

Institute of Environmental Medicine for Green Chemistry, Dongguk University Biomedi Campus, Goyang, Korea.

Faculty of Environment and Resource Studies, Mahidol University, Nakhon Pathom, Thailand.

出版信息

J Cancer Prev. 2021 Jun 30;26(2):83-97. doi: 10.15430/JCP.2021.26.2.83.

Abstract

The exponential growth of nanotechnology and the industrial production have raised concerns over its impact on human and environmental health and safety (EHS). Although there has been substantial progress in the assessment of pristine nanoparticle toxicities, their EHS impacts require greater clarification. In this review, we discuss studies that have assessed nanoparticle eco-genotoxicity in different test systems and their fate in the environment as well as the considerable confounding factors that may complicate the results. We highlight key mechanisms of nanoparticle-mediated genotoxicity. Then we discuss the reliability of endpoint assays, such as the comet assay, the most favored assessment technique because of its versatility to measure low levels of DNA strand breakage, and the micronucleus assay, which is complementary to the former because of its greater ability to detect chromosomal DNA fragmentation. We also address the current recommendations on experimental design, including environmentally relevant concentrations and suitable exposure duration to avoid false-positive or -negative results. The genotoxicity of nanoparticles depends on their physicochemical features and the presence of co-pollutants. Thus, the effect of environmental processes (e.g., aggregation and agglomeration, adsorption, and transformation of nanoparticles) would account for when determining the actual genotoxicity relevant to environmental systems, and assay procedures must be standardized. Indeed, the engineered nanoparticles offer potential applications in different fields including biomedicine, environment, agriculture, and industry. Toxicological pathways and the potential risk factors related to genotoxic responses in biological organisms and environments need to be clarified before appropriate and sustainable applications of nanoparticles can be established.

摘要

纳米技术和工业生产的指数级增长引发了人们对其对人类及环境健康与安全(EHS)影响的担忧。尽管在评估原始纳米颗粒毒性方面已取得重大进展,但其对环境健康与安全的影响仍需进一步阐明。在本综述中,我们讨论了在不同测试系统中评估纳米颗粒生态遗传毒性及其在环境中归宿的研究,以及可能使结果复杂化的诸多混杂因素。我们强调了纳米颗粒介导的遗传毒性的关键机制。然后我们讨论了终点检测方法的可靠性,例如彗星试验,因其在测量低水平DNA链断裂方面的通用性而成为最受青睐的评估技术,以及微核试验,因其在检测染色体DNA片段化方面能力更强而与前者互补。我们还阐述了当前关于实验设计的建议,包括环境相关浓度和合适的暴露持续时间,以避免出现假阳性或假阴性结果。纳米颗粒的遗传毒性取决于其物理化学特性和共污染物的存在。因此,在确定与环境系统相关的实际遗传毒性时,必须考虑环境过程(例如纳米颗粒的聚集和团聚、吸附以及转化)的影响,并且检测程序必须标准化。事实上,工程纳米颗粒在生物医学、环境、农业和工业等不同领域都有潜在应用。在建立纳米颗粒的适当且可持续应用之前,需要阐明生物机体和环境中与遗传毒性反应相关的毒理学途径及潜在风险因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cff/8249203/528ebf754283/jcp-26-2-83-f1.jpg

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