Literature DB >> 26852208

Where does the toxicity of metal oxide nanoparticles come from: The nanoparticles, the ions, or a combination of both?

Dali Wang1, Zhifen Lin2, Ting Wang1, Zhifeng Yao1, Mengnan Qin1, Shourong Zheng3, Wei Lu4.   

Abstract

The toxicity of metal oxide nanoparticles (NPs) has aroused great concern over the past few years. However, there still remains the question whether the toxicity of the metal oxide NPs originates from the released ions or the NPs themselves. In this study, the metal ion release of CuO, Fe2O3, ZnO, Co3O4, Cr2O3, and NiO NPs in aqueous media was investigated, and their contributions to the metal oxide NPs' inhibition on the bioluminescence of Photobacterium phosphoreum were studied. It was found that the ions release of the metal oxide NPs in aqueous media was complex, depending on both the dissolution and adsorption processes of the metal oxide NPs. The relationships between the metal oxide NPs' antibacterial effects and their released metal ions could be divided into three categories: (1) the ZnO NPs' antibacterial effect was due solely to the released Zn(2+); (2) the CuO NPs' antibacterial effect originated from both the released Cu(2+),and the CuO particles; and (3) the antibacterial effects of Fe2O3, Co3O4, Cr2O3, and NiO NPs were caused by the NPs themselves. Our findings suggest that the ions release and their contributions to the NPs' toxicity should be considered in the toxicity evaluations of the metal oxide NPs.
Copyright © 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Adsorption; Dissolution; Metal oxide nanoparticles; Toxicity

Mesh:

Substances:

Year:  2016        PMID: 26852208     DOI: 10.1016/j.jhazmat.2016.01.066

Source DB:  PubMed          Journal:  J Hazard Mater        ISSN: 0304-3894            Impact factor:   10.588


  27 in total

1.  Uptake of Intact Copper Oxide Nanoparticles Causes Acute Toxicity in Cultured Glial Cells.

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2.  Accumulation of copper in the cell compartments of charophyte Nitellopsis obtusa after its exposure to copper oxide nanoparticle suspension.

Authors:  Levonas Manusadžianas; Brigita Gylytė; Reda Grigutytė; Rolandas Karitonas; Kazys Sadauskas; Rimantas Vitkus; Laurynas Šiliauskas; Jūratė Vaičiūnienė
Journal:  Environ Sci Pollut Res Int       Date:  2016-11-09       Impact factor: 4.223

3.  Antibacterial effects of graphene- and carbon-nanotube-based nanohybrids on Escherichia coli: Implications for treating multidrug-resistant bacteria.

Authors:  Soyoung Baek; Sung Hee Joo; Chunming Su; Michal Toborek
Journal:  J Environ Manage       Date:  2019-06-24       Impact factor: 6.789

Review 4.  Current approaches for safer design of engineered nanomaterials.

Authors:  Ruth Hwang; Vahid Mirshafiee; Yifang Zhu; Tian Xia
Journal:  Ecotoxicol Environ Saf       Date:  2018-09-28       Impact factor: 6.291

5.  Evaluating the cytotoxicity of a large pool of metal oxide nanoparticles to Escherichia coli: Mechanistic understanding through In Vitro and In Silico studies.

Authors:  Supratik Kar; Kavitha Pathakoti; Paul B Tchounwou; Danuta Leszczynska; Jerzy Leszczynski
Journal:  Chemosphere       Date:  2020-09-25       Impact factor: 7.086

6.  Prevention of Hepatic Ischemia-Reperfusion Injury by Carbohydrate-Derived Nanoantioxidants.

Authors:  Yin Long; Hao Wei; Jun Li; Mengting Li; Yizhan Wang; Ziyi Zhang; Tianye Cao; Corey Carlos; Lazarus G German; Dawei Jiang; Tuanwei Sun; Jonathan W Engle; Xiaoli Lan; Yadong Jiang; Weibo Cai; Xudong Wang
Journal:  Nano Lett       Date:  2020-08-14       Impact factor: 11.189

Review 7.  Toxicity of copper oxide nanoparticles: a review study.

Authors:  Sania Naz; Ayesha Gul; Muhammad Zia
Journal:  IET Nanobiotechnol       Date:  2020-02       Impact factor: 1.847

8.  The effects of manganese oxide octahedral molecular sieve chitosan microspheres on sludge bacterial community structures during sewage biological treatment.

Authors:  Fei Pan; Wen Liu; Yang Yu; Xianze Yin; Qingrong Wang; Ziyan Zheng; Min Wu; Dongye Zhao; Qiu Zhang; Xiaoman Lei; Dongsheng Xia
Journal:  Sci Rep       Date:  2016-11-21       Impact factor: 4.379

9.  Aerosol-synthesized siliceous nanoparticles: impact of morphology and functionalization on biodistribution.

Authors:  Philipp Diebolder; Miguel Vazquez-Pufleau; Nilantha Bandara; Cedric Mpoy; Ramesh Raliya; Elijah Thimsen; Pratim Biswas; Buck E Rogers
Journal:  Int J Nanomedicine       Date:  2018-11-12

10.  Biostimulation and toxicity: The magnitude of the impact of nanomaterials in microorganisms and plants.

Authors:  Antonio Juárez-Maldonado; Gonzalo Tortella; Olga Rubilar; Paola Fincheira; Adalberto Benavides-Mendoza
Journal:  J Adv Res       Date:  2021-01-05       Impact factor: 10.479

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