Literature DB >> 25139028

Bioaccumulation and toxicity of silver nanoparticles and silver nitrate to the soil arthropod Folsomia candida.

Pauline L Waalewijn-Kool1, Kim Klein, Rebeca Mallenco Forniés, Cornelis A M van Gestel.   

Abstract

The growing use of silver nanoparticles (Ag-NP) triggered an increasing interest in their environmental fate and possible ecotoxicological impacts. To investigate the potential risk of Ag-NP to soil organisms, the springtail Folsomia candida was exposed to Ag-NP (reported diameter size 3-8 nm) and AgNO3 in Lufa 2.2 natural soil for 28 days to determine effects on survival and reproduction. Also, the kinetics of uptake and elimination of Ag were studied for F. candida exposed in Lufa 2.2 soil to Ag-NP (at 168 mg Ag/kg dry soil) and AgNO3 (at 30 and 60 mg Ag/kg dry soil). AgNO3 was toxic with an LC50 was 284 mg Ag/kg dry soil for effects on survival and EC10 and EC50 values of 47.6 and 99.5 mg Ag/kg dry soil, respectively for the effect on reproduction. These values did correspond with porewater concentrations of 0.801, 0.042 and 0.082 mg Ag/l, respectively. No effects on survival and reproduction of Ag-NP were observed up to 673 mg Ag/kg dry soil, although porewater concentration was similar to the EC50 for AgNO3. Exposure to both Ag forms caused a fast uptake of Ag, but the Ag elimination rate was significantly higher for Ag-NP than for AgNO3. Bioaccumulation factor was higher for AgNO3 (on average 5.64) than for Ag-NP (1.12). These findings indicate that silver ions are more toxic than Ag-NP and have a higher potential to accumulate in F. candida.

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Year:  2014        PMID: 25139028     DOI: 10.1007/s10646-014-1302-y

Source DB:  PubMed          Journal:  Ecotoxicology        ISSN: 0963-9292            Impact factor:   2.823


  28 in total

1.  Interaction of silver nanoparticles with biological surfaces of Caenorhabditis elegans.

Authors:  Shin Woong Kim; Sun-Hwa Nam; Youn-Joo An
Journal:  Ecotoxicol Environ Saf       Date:  2011-11-09       Impact factor: 6.291

2.  Risk assessment of heavy metal pollution for detritivores in floodplain soils in the Biesbosch, The Netherlands, taking bioavailability into account.

Authors:  P H F Hobbelen; J E Koolhaas; C A M Van Gestel
Journal:  Environ Pollut       Date:  2004-06       Impact factor: 8.071

3.  Aging and soil organic matter content affect the fate of silver nanoparticles in soil.

Authors:  Claire Coutris; Erik Jautris Joner; Deborah Helen Oughton
Journal:  Sci Total Environ       Date:  2012-02-10       Impact factor: 7.963

4.  The inhibitory effects of silver nanoparticles, silver ions, and silver chloride colloids on microbial growth.

Authors:  Okkyoung Choi; Kathy Kanjun Deng; Nam-Jung Kim; Louis Ross; Rao Y Surampalli; Zhiqiang Hu
Journal:  Water Res       Date:  2008-03-04       Impact factor: 11.236

5.  Bioavailability of cobalt and silver nanoparticles to the earthworm Eisenia fetida.

Authors:  Claire Coutris; Turid Hertel-Aas; Emmanuel Lapied; Erik J Joner; Deborah H Oughton
Journal:  Nanotoxicology       Date:  2011-04-13       Impact factor: 5.913

6.  Evidence for avoidance of Ag nanoparticles by earthworms (Eisenia fetida).

Authors:  W A Shoults-Wilson; Oksana I Zhurbich; David H McNear; Olga V Tsyusko; Paul M Bertsch; Jason M Unrine
Journal:  Ecotoxicology       Date:  2011-01-13       Impact factor: 2.823

7.  Chronic toxicity of ZnO nanoparticles, non-nano ZnO and ZnCl2 to Folsomia candida (Collembola) in relation to bioavailability in soil.

Authors:  Pauline L Kool; Maria Diez Ortiz; Cornelis A M van Gestel
Journal:  Environ Pollut       Date:  2011-07-02       Impact factor: 8.071

Review 8.  Folsomia candida (Collembola): a "standard" soil arthropod.

Authors:  Michelle T Fountain; Steve P Hopkin
Journal:  Annu Rev Entomol       Date:  2005       Impact factor: 19.686

9.  Silver nanoparticles and silver nitrate cause respiratory stress in Eurasian perch (Perca fluviatilis).

Authors:  Katrine Bilberg; Hans Malte; Tobias Wang; Erik Baatrup
Journal:  Aquat Toxicol       Date:  2009-10-23       Impact factor: 4.964

10.  The effects of silver nanoparticles on fathead minnow (Pimephales promelas) embryos.

Authors:  Geoff Laban; Loring F Nies; Ronald F Turco; John W Bickham; Maria S Sepúlveda
Journal:  Ecotoxicology       Date:  2010-01       Impact factor: 2.823

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  11 in total

1.  Toxicokinetics of Ag in the terrestrial isopod Porcellionides pruinosus exposed to Ag NPs and AgNO₃ via soil and food.

Authors:  Paula S Tourinho; Cornelis A M van Gestel; A John Morgan; Peter Kille; Claus Svendsen; Kerstin Jurkschat; J Fred W Mosselmans; Amadeu M V M Soares; Susana Loureiro
Journal:  Ecotoxicology       Date:  2015-11-18       Impact factor: 2.823

2.  Strategies for robust and accurate experimental approaches to quantify nanomaterial bioaccumulation across a broad range of organisms.

Authors:  Elijah J Petersen; Monika Mortimer; Robert M Burgess; Richard Handy; Shannon Hanna; Kay T Ho; Monique Johnson; Susana Loureiro; Henriette Selck; Janeck J Scott-Fordsmand; David Spurgeon; Jason Unrine; Nico van den Brink; Ying Wang; Jason White; Patricia Holden
Journal:  Environ Sci Nano       Date:  2019

3.  Ratiometric fluorometric determination of silver(I) by using blue-emitting silicon- and nitrogen-doped carbon quantum dots and red-emitting N-acetyl-L-cysteine-capped CdTe quantum dots.

Authors:  Huifang Wu; Changlun Tong
Journal:  Mikrochim Acta       Date:  2019-10-26       Impact factor: 5.833

Review 4.  Promising opportunities and potential risk of nanoparticle on the society.

Authors:  Somya Ranjan Dash; Chanakya Nath Kundu
Journal:  IET Nanobiotechnol       Date:  2020-06       Impact factor: 1.847

5.  Ag Nanoparticles (Ag NM300K) in the Terrestrial Environment: Effects at Population and Cellular Level in Folsomia candida (Collembola).

Authors:  Luís André Mendes; Vera L Maria; Janeck J Scott-Fordsmand; Mónica J B Amorim
Journal:  Int J Environ Res Public Health       Date:  2015-10-09       Impact factor: 3.390

6.  Quantification of silver nanoparticle toxicity to algae in soil via photosynthetic and flow-cytometric analyses.

Authors:  Sun-Hwa Nam; Jin Il Kwak; Youn-Joo An
Journal:  Sci Rep       Date:  2018-01-10       Impact factor: 4.379

Review 7.  Silver Nanoparticles: Technological Advances, Societal Impacts, and Metrological Challenges.

Authors:  Bryan Calderón-Jiménez; Monique E Johnson; Antonio R Montoro Bustos; Karen E Murphy; Michael R Winchester; José R Vega Baudrit
Journal:  Front Chem       Date:  2017-02-21       Impact factor: 5.221

8.  Extrapolation of imidacloprid toxicity between soils by exposing Folsomia candida in soil pore water.

Authors:  Afolarin O Ogungbemi; Cornelis A M van Gestel
Journal:  Ecotoxicology       Date:  2018-07-30       Impact factor: 2.823

9.  Evaluation of the Effects of Particle Sizes of Silver Nanoparticles on Various Biological Systems.

Authors:  In Chul Kong; Kyung-Seok Ko; Dong-Chan Koh
Journal:  Int J Mol Sci       Date:  2020-11-11       Impact factor: 5.923

10.  Is a Water Content of 60% Maximum Water Holding Capacity Suitable for Folsomia candida Reproduction Tests? A Study with Silver Nanoparticles and AgNO₃.

Authors:  Moira S McKee; Amelia Megía Guerrero; Juliane Filser
Journal:  Int J Environ Res Public Health       Date:  2018-04-01       Impact factor: 3.390

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