Literature DB >> 26389846

Toxicity of bare and surfaced functionalized iron oxide nanoparticles towards microalgae.

Pey Yi Toh1, Wan Yii Tai1, Abdul Latif Ahmad1, Jit Kang Lim1,2, Derek Juinn Chieh Chan1.   

Abstract

This study investigates the toxicity of bare iron oxide nanoparticles (IONPs) and surface functionalization iron oxide nanoparticles (SF-IONPs) to the growth of freshwater microalgae Chlorella sp. This study is important due to the increased interest on the application of the magnetic responsive IONPs in various fields, such as biomedical, wastewater treatment, and microalgae harvesting. This study demonstrated that the toxicity of IONPs was mainly contributed by the indirect light shading effect from the suspending nanoparticles which is nanoparticles concentration-dependent, direct light shading effect caused by the attachment of IONPs on cell and the cell aggregation, and the oxidative stress from the internalization of IONPs into the cells. The results showed that the layer of poly(diallyldimethylammonium chloride) (PDDA) tended to mask the IONPs and hence eliminated oxidative stress toward the protein yield but it in turn tended to enhance the toxicity of IONPs by enabling the IONPs to attach on cell surfaces and cause cell aggregation. Therefore, the choice of the polymer that used for surface functionalize the IONPs is the key factor to determine the toxicity of the IONPs.

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Keywords:  iron oxide nanoparticles; microalgae; polymer layer; toxicity

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Year:  2016        PMID: 26389846     DOI: 10.1080/15226514.2015.1086300

Source DB:  PubMed          Journal:  Int J Phytoremediation        ISSN: 1522-6514            Impact factor:   3.212


  1 in total

1.  Impact of magnetic immobilization on the cell physiology of green unicellular algae Chlorella vulgaris.

Authors:  Seyedeh-Masoumeh Taghizadeh; Aydin Berenjian; Kit Wayne Chew; Pau Loke Show; Hayyiratul Fatimah Mohd Zaid; Hamidreza Ramezani; Younes Ghasemi; Mohammad Javad Raee; Alireza Ebrahiminezhad
Journal:  Bioengineered       Date:  2020-12       Impact factor: 3.269

  1 in total

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