Literature DB >> 31706775

Effect of silver nanoparticles on gill membranes of common carp: Modification of fatty acid profile, lipid peroxidation and membrane fluidity.

Qian-Qian Xiang1, Di Wang2, Ji-Lai Zhang2, Cheng-Zhi Ding1, Xia Luo1, Juan Tao1, Jian Ling3, Damian Shea4, Li-Qiang Chen5.   

Abstract

Although the toxicity of silver nanoparticles (AgNPs) in aquatic organisms has been extensively investigated, the mechanism by which AgNPs damage membranes remains unclear. This study investigated the toxic effects of a series of sub-lethal concentrations of AgNPs on the membranes of freshwater carp (Cyprinus carpio) gills, based on changes in membrane fatty acid (FA) profile, membrane fluidity, membrane lipid peroxidation, and histopathology. Most of the FAs in fish gill membrane was not significantly affected by exposure to multiple AgNPs concentrations, only few significant changes occurred in some specific FAs species at a high concentration of AgNPs exposure. In particular, high concentrations of AgNPs significantly decreased the proportions of two important long-chain n-3 series polyunsaturated FAs (C20: 5n3, and C22: 6n3), resulting in a decreased ratio of n-3 polyunsaturated FAs to n-6 polyunsaturated FAs (Σn-3UFA/Σn-6UFA). The AgNPs also caused a dose-dependent decrease in fish gill membrane fluidity, increased the level of lipid peroxidation, and inhibited Na+/K+-ATPase enzyme activity. Further histopathological examination revealed that exposure to AgNPs can cause toxic responses in the lamellae, including the thinning of the basement membrane, malformation, and inflammation. Together, the results suggest that the mechanism of AgNPs membrane toxicity involves the oxidization of long-chain omega-3 unsaturated FAs to saturated FAs via lipid peroxidation, resulting in, decreased membrane fluidity and ultimately the destruction of the normal physiological function of the fish gill membrane. The findings contribute significantly to our understanding of nanoparticle-induced membrane toxicity and potential risks in aquatic environments.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Fatty acid; Gill; Membrane; Silver nanoparticles; Toxicity

Mesh:

Substances:

Year:  2019        PMID: 31706775     DOI: 10.1016/j.envpol.2019.113504

Source DB:  PubMed          Journal:  Environ Pollut        ISSN: 0269-7491            Impact factor:   8.071


  7 in total

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2.  Low Doses of Silver Nanoparticles Selectively Induce Lipid Peroxidation and Proteotoxic Stress in Mesenchymal Subtypes of Triple-Negative Breast Cancer.

Authors:  Christina M Snyder; Monica M Rohde; Cale D Fahrenholtz; Jessica Swanner; John Sloop; George L Donati; Cristina M Furdui; Ravi Singh
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Review 4.  Environmental Impact of Nanoparticles' Application as an Emerging Technology: A Review.

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Journal:  Materials (Basel)       Date:  2020-12-31       Impact factor: 3.623

5.  The mechanism of cell death induced by silver nanoparticles is distinct from silver cations.

Authors:  Monica M Rohde; Christina M Snyder; John Sloop; Shane R Solst; George L Donati; Douglas R Spitz; Cristina M Furdui; Ravi Singh
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6.  Evaluation of a new Argovit as an antiviral agent included in feed to protect the shrimp Litopenaeus vannamei against White Spot Syndrome Virus infection.

Authors:  Carlos R Romo-Quiñonez; Ana R Álvarez-Sánchez; Pindaro Álvarez-Ruiz; Maria C Chávez-Sánchez; Nina Bogdanchikova; Alexey Pestryakov; Claudio H Mejia-Ruiz
Journal:  PeerJ       Date:  2020-02-27       Impact factor: 2.984

7.  Impact of Ag Nanoparticles (AgNPs) and Multimicrobial Preparation (EM) on the Carcass, Mineral, and Fatty Acid Composition of Cornu aspersum aspersum Snails.

Authors:  Tomasz Niemiec; Andrzej Łozicki; Robert Pietrasik; Sylwester Pawęta; Anna Rygało-Galewska; Magdalena Matusiewicz; Klara Zglińska
Journal:  Animals (Basel)       Date:  2021-06-28       Impact factor: 2.752

  7 in total

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