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金属(类)氧化物纳米粒子的有害效应。

Harmful effects of metal(loid) oxide nanoparticles.

机构信息

Bioengineering Laboratory-CIETI, ISEP-School of Engineering, Polytechnic Institute of Porto, rua Dr António Bernardino de Almeida, 431, 4249-015, Porto, Portugal.

CEB-Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057, Braga, Portugal.

出版信息

Appl Microbiol Biotechnol. 2021 Feb;105(4):1379-1394. doi: 10.1007/s00253-021-11124-1. Epub 2021 Feb 1.

Abstract

The incorporation of nanomaterials (NMs), including metal(loid) oxide (MOx) nanoparticles (NPs), in the most diversified consumer products, has grown enormously in recent decades. Consequently, the contact between humans and these materials increased, as well as their presence in the environment. This fact has raised concerns and uncertainties about the possible risks of NMs to human health and the adverse effects on the environment. These concerns underline the need and importance of assessing its nanosecurity. The present review focuses on the main mechanisms underlying the MOx NPs toxicity, illustrated with different biological models: release of toxic ions, cellular uptake of NPs, oxidative stress, shading effect on photosynthetic microorganisms, physical restrain and damage of cell wall. Additionally, the biological models used to evaluate the potential hazardous of nanomaterials are briefly presented, with particular emphasis on the yeast Saccharomyces cerevisiae, as an alternative model in nanotoxicology. An overview containing recent scientific advances on cellular responses (toxic symptoms exhibited by yeasts) resulting from the interaction with MOx NPs (inhibition of cell proliferation, cell wall damage, alteration of function and morphology of organelles, presence of oxidative stress bio-indicators, gene expression changes, genotoxicity and cell dead) is critically presented. The elucidation of the toxic modes of action of MOx NPs in yeast cells can be very useful in providing additional clues about the impact of NPs on the physiology and metabolism of the eukaryotic cell. Current and future trends of MOx NPs toxicity, regarding their possible impacts on the environment and human health, are discussed. KEY POINTS: • The potential hazardous effects of MOx NPs are critically reviewed. • An overview of the main mechanisms associated with MOx NPs toxicity is presented. • Scientific advances about yeast cell responses to MOx NPs are updated and discussed.

摘要

纳米材料(NMs)的应用,包括金属(类)氧化物(MOx)纳米粒子(NPs),在最近几十年中在最具多样性的消费品中得到了极大的发展。因此,人类与这些材料的接触增加了,它们在环境中的存在也增加了。这一事实引起了人们对纳米材料可能对人类健康造成的风险以及对环境的不利影响的关注和不确定性。这些关注强调了评估其纳米安全性的必要性和重要性。本综述重点介绍了 MOx NPs 毒性的主要机制,并通过不同的生物模型加以说明:有毒离子的释放、NPs 的细胞摄取、氧化应激、对光合微生物的遮光效应、对细胞壁的物理限制和损伤。此外,还简要介绍了用于评估纳米材料潜在危害性的生物模型,特别强调了酵母酿酒酵母作为纳米毒理学替代模型的应用。本文批判性地综述了近年来关于 MOx NPs 与细胞相互作用所产生的细胞反应(酵母表现出的毒性症状)的科学进展(细胞增殖抑制、细胞壁损伤、细胞器功能和形态改变、氧化应激生物标志物的存在、基因表达变化、遗传毒性和细胞死亡)。阐明 MOx NPs 在酵母细胞中的毒性作用模式对于提供关于 NPs 对真核细胞生理和代谢影响的额外线索非常有用。本文还讨论了 MOx NPs 毒性的当前和未来趋势,以及它们对环境和人类健康的潜在影响。要点:

  • 批判性地审查了 MOx NPs 的潜在危害性影响。

  • 介绍了与 MOx NPs 毒性相关的主要机制概述。

  • 更新并讨论了关于酵母细胞对 MOx NPs 反应的科学进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81a2/7847763/5dbe3d44f774/253_2021_11124_Fig1_HTML.jpg

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