358
Views
30
CrossRef citations to date
0
Altmetric
Review Article

Introducing a new standardized nanomaterial environmental toxicity screening testing procedure, ISO/TS 20787: aquatic toxicity assessment of manufactured nanomaterials in saltwater Lakes using Artemia sp. nauplii

, , , , , , , & show all
Pages 95-109 | Received 28 Jun 2018, Accepted 13 Aug 2018, Published online: 27 Sep 2018

References

  • APAT & IRSA-CNR. 2003. Metodi analitici per le acque. Manuali e linee guida 29. Volume I. Sezione 8060: Metodo di valutazione della tossicità acuta con. Artemia Sp. 1:983–1110.
  • Arulvasu C, Jennifer S, Prabhu D, Chandhirasekar D. 2014. Toxicity effect of silver nanoparticles in brine shrimp Artemia. Int J Curr Biotechnol. 2014:1–34.
  • Ashtari K, Khajeh K, Fasihi J, Ashtari P, Ramazani A, Vali H. 2012. Silica-encapsulated magnetic nanoparticles: enzyme immobilization and cytotoxic study. Int J Biol Macromol. 50:1063–1069.
  • Ates M, Daniels J, Arslan Z, Farah IO, Rivera HF. 2013. Comparative evaluation of impact of Zn and ZnO nanoparticles on brine shrimp (Artemia salina) larvae: effects of particle size and solubility on toxicity. Environ Sci Process Impacts. 15:225–233.
  • Ates M, Daniels J, Arslan Z, Farah IO. 2013. Effects of aqueous suspensions of titanium dioxide nanoparticles on Artemia salina: assessment of nanoparticle aggregation, accumulation, and toxicity. Environ Monit Assess. 185:3339–3348.
  • Ates M, Demir V, Arslan Z, Camas M, Celik F. 2016. Toxicity of Engineered Nickel Oxide and Cobalt Oxide Nanoparticles to Artemia salina in seawater. Water Air Soil Pollut. 227:70.
  • Ates M, Demir V, Arslan Z, Daniels J, Farah IO, Bogatu C. 2015. Evaluation of alpha and gamma aluminum oxide nanoparticle accumulation, toxicity, and depuration in Artemia salina larvae. Environ Toxicol. 30:109–118.
  • Balalakshmi C, Gopinath K, Govindarajan M, Lokesh R, Arumugam A, Alharbi NS, Kadaikunnan S, Khaled JM, Benelli G. 2017. Green synthesis of gold nanoparticles using a cheap Sphaeranthus indicus extract: Impact on plant cells and the aquatic crustacean Artemia nauplii. J Photochem Photobiol B Biol. 173:598–605.
  • Becaro AA, Jonsson CM, Puti FC, Siqueira MC, Mattoso LHC, Correa DS, Ferreira MD. 2015. Toxicity of PVA-stabilized silver nanoparticles to algae and microcrustaceans. Environ Nanotechnol Monit Manage. 3:22–29.
  • Bergami E, Bocci E, Vannuccini ML, Monopoli M, Salvati A, Dawson KA, Corsi I. 2016. Nanosized polystyrene affects feeding, behavior and physiology of brine shrimp Artemia franciscana larvae. Ecotoxicol Environ Saf. 123:18–25.
  • Bergami E, Pugnalini S, Vannuccini ML, Manfra L, Faleri C, Savorelli F, Dawson KA, Corsi I. 2017. Long-term toxicity of surface-charged polystyrene nanoplastics to marine planktonic species Dunaliella tertiolecta and Artemia franciscana. Aquat Toxicol. 189:159–169.
  • Bhuvaneshwari M, Sagar B, Doshi S, Chandrasekaran N, Mukherjee A. 2017. Comparative study on toxicity of ZnO and TiO2 nanoparticles on Artemia salina: effect of pre-UV-A and visible light irradiation. Environ Sci Pollut Res Int. 24:5633–5646.
  • Bhuvaneshwari M, Thiagarajan V, Nemade P, Chandrasekaran N, Mukherjee A. 2018. Toxicity and trophic transfer of P25 TiO2 NPs from Dunaliella salina to Artemia salina: Effect of dietary and waterborne exposure. Environ Res. 160:39–46.
  • Callegaro S, Minetto D, Pojana G, Bilanicová D, Libralato G, Volpi Ghirardini A, Hassellöv M, Marcomini A. 2015. Effects of alginate on stability and ecotoxicity of nano-TiO2 in artificial seawater. Ecotoxicol Environ Saf. 117:107–114.
  • Clemente Z, Castro VL, Jonsson CM, Fraceto LF. 2014. Minimal levels of ultraviolet light enhance the toxicity of TiO2 nanoparticles to two representative organisms of aquatic systems. J Nanopart Res. 16:2559.
  • Cornejo-Garrido H, Kibanova D, Nieto-Camacho A, Guzmán J, Ramírez-Apan T, Fernández-Lomelín P, Garduño ML, Cervini-Silva J. 2011. Oxidative stress, cytoxicity, and cell mortality induced by nano-sized lead in aqueous suspensions. Chemosphere. 84:1329–1335.
  • Daglioglu Y, Altinok I, İlhan H, Sokmen M. 2016. Determination of the acute toxic effect of ZnO-TiO2 nanoparticles in brine shrimp (Artemia salina). Acta Biol Turcica. 29:6–13.
  • Darwesh OM, Sultan YY, Seif MM, Marrez DA. 2018. Bio-evaluation of crustacean and fungal nano-chitosan for applying as food ingredient. Toxicol Rep. 5:348–356.
  • Falugi C, Aluigi MG, Faimali M, Ferrando S, Gambardella C, Gatti AM, Ramoino P. 2012. Dose dependent effects of silver nanoparticles on reproduction and development of different biological models. Environ Qual. 8:61–65.
  • Fatouros DG, Power K, Kadir O, Dékány I, Yannopoulos SN, Bouropoulos N, Bakandritsos A, Antonijevic MD, Zouganelis GD, Roldo M. 2011. Stabilisation of SWNTs by alkyl-sulfate chitosan derivatives of different molecular weight: towards the preparation of hybrids with anticoagulant properties. Nanoscale. 3:1218–1224.
  • Gambardella C, Costa C, Piazza C, Fabbrocini A, Magi E, Faimali M, Garaventa F. 2015. Effect of silver nanoparticles on marine organisms belonging to different trophic levels. Mar Environ Res. 111:41–49.
  • Gambardella C, Mesarič T, Milivojević T, Sepčić K, Gallus L, Carbone S, Ferrando S, Faimali M. 2014. Effects of selected metal oxide nanoparticles on Artemia salina larvae: evaluation of mortality and behavioural and biochemical responses. Environ Monit Assess. 186:4249–4259.
  • Hartmann NB, Jensen KA, Baun A, Rasmussen K, Rauscher H, Tantra R, Cupi D, Gilliland D, Pianella F, Riego Sintes JM. 2015. Techniques and protocols for dispersing nanoparticle powders in aqueous media – is there a rationale for harmonization? J Toxicol Environ Health Part B. 18:299–326.
  • ISO 6107-3. 1993. Water quality — Vocabulary — Part 3.
  • ISO/TR 13014. 2012. Nanotechnologies — Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment. Geneva: ISO.
  • ISO 22412. 2017. Particle size analysis — Dynamic light scattering (DLS). Geneva: ISO.
  • ISO/TS 20787. 2017. Nanotechnologies - Aquatic toxicity assessment of manufactured nanomaterials in saltwater lakes using Artemia sp. Geneva: nauplii, ISO.
  • ISO 20998-1. 2006. Measurement and characterization of particles by acoustic methods — Part 1: Concepts and procedures in ultrasonic attenuation spectroscopy. Geneva: ISO.
  • Jemec A, Kahru A, Potthoff A, Drobne D, Heinlaan M, Böhme S, Geppert M, Novak S, Schirmer K, Rekulapally R, et al. 2016. An interlaboratory comparison of nanosilver characterisation and hazard identification: Harmonising techniques for high quality data. Environ Int. 87:20–32.
  • Jeong YK, Lee BW, Park CI, Choi KS, Kim MC. 2009. Effect of nano particles on the hatching rate of Artemia sp. Cyst Zooplankton. J Korean Soc Mar Environ Eng. 12:302–306.
  • Johari SA, Nemati T, Dekani L. 2016. Study on accumulation potential of zinc oxide nanoparticles in Artemia and its trophic transfer to Zebrafish (Danio rerio). Iranian Sci Fish J. 25:21–28.
  • Karthik L, Kumar G, Keswani T, Bhattacharyya A, Reddy BP, Rao KV. 2013. Marine actinobacterial mediated gold nanoparticles synthesis and their antimalarial activity. Nanomedicine. 9:951–960.
  • Kim TH, Sirdaarta JP, Zhang Q, Eftekhari E, St. John J, Kennedy D, Cock IE, Li Q. 2018. Selective toxicity of hydroxyl-rich carbon nanodots for cancer research. Nano Res. 11:2204–2216.
  • Kos M, Kahru A, Drobne D, Singh S, Kalčíková G, Kühnel D, Rohit R, Gotvajn AŽ, Jemec A. 2016. A case study to optimise and validate the brine shrimp Artemia franciscana immobilization assay with silver nanoparticles: The role of harmonisation. Environ Pollut. 213:173–183.
  • Kowalska-Goralska M, Lawa P, Senze M. 2011. Impact of silver contained in the nano silver preparation of the survival of Brine shrimp (Artemia salina Leach 1819) larvae. Ecol Chem Eng A, Soc Ecol. Chem. Eng. A, Waclawek W. Ed. Opole, Warszawa. 18:371–376.
  • Lacave JM, Fanjul Á, Bilbao E, Gutierrez N, Barrio I, Arostegui I, Cajaraville MP, Orbea A. 2017. Acute toxicity, bioaccumulation and effects of dietary transfer of silver from brine shrimp exposed to PVP/PEI-coated silver nanoparticles to zebrafish. Comp Biochem Physiol C Toxicol Pharmacol. 199:69–80.
  • Lavens P, Sorgeloos P. 1996. Manual on the Production and Use of Live Food for Aquaculture. Fao Fisheries Technical PAPER 361:90–100. Accessible at: https://www.astm.org/DIGITAL_LIBRARY/STP/SOURCE_PAGES/STP634.htm.
  • Leng KM, Vijayarathna S, Jothy SL, Sasidharan S, Kanwar JR. 2018. In vitro and in vivo toxicity assessment of alginate/eudragit S 100-enclosed chitosan-calcium phosphate-loaded iron saturated bovine lactoferrin nanocapsules (Fe-bLf NCs). Biomed Pharmacother. 97:26–37.
  • Libralato G. 2014. The case of Artemia spp. in nanoecotoxicology. Mar Environ Res. 101:38–43.
  • Lu J, Tian S, Lv X, Chen Z, Chen B, Zhu X, Cai Z. 2018. TiO2 nanoparticles in the marine environment: Impact on the toxicity of phenanthrene and Cd2+ to marine zooplankton Artemia salina. Sci Total Environ. 615:375–380.
  • Madhav MR, David SEM, Kumar RSS, Swathy JS, Bhuvaneshwari M, Mukherjee A, Chandrasekaran N. 2017. Toxicity and accumulation of Copper oxide (CuO) nanoparticles in different life stages of Artemia salina. Environ Toxicol Pharmacol. 52:227–238.
  • Mesarič T, Gambardella C, Milivojević T, Faimali M, Drobne D, Falugi C, Makovec D, Jemec A, Sepčić K. 2015. High surface adsorption properties of carbon-based nanomaterials are responsible for mortality, swimming inhibition, and biochemical responses in Artemia salina larvae. Aquat Toxicol. 163:121–129.
  • Murugesan B, Sonamuthu J, Pandiyan N, Pandi B, Samayanan S, Mahalingam S. 2018. Photoluminescent reduced graphene oxide quantum dots from latex of Calotropis gigantea for metal sensing, radical scavenging, cytotoxicity, and bioimaging in Artemia salina: a greener route. J Photochem Photobiol B. 178:371–379.
  • Muthukrishnan S, Senthil Kumar T, Rao MV. 2017. Anticancer activity of biogenic nanosilver and its toxicity assessment on Artemia salina evaluation of mortality, accumulation and elimination: an experimental report. J Environ Chem Eng. 5:1685–1695.
  • Nogueira V, Lopes I, Rocha-Santos TA, Rasteiro MG, Abrantes N, Gonçalves F, Soares AM, Duarte AC, Pereira R. 2015. Assessing the ecotoxicity of metal nano-oxides with potential for wastewater treatment. Environ Sci Pollut Res Int. 22:13212–13224.
  • Nunes BS, Carvalho FD, Guilhermino LM, Van Stappen G. 2006. Use of the genus Artemia in ecotoxicity testing. Environ Pollut. 144:453–462.
  • OECD 2000. OECD Environmental Health and Safety Publications. Series on Testing and Assessment No. 23. Guidance Document on Aquatic Toxicity Testing of Difficult Test Chemicals and Mixtures. ENV/JM/MONO(2000)6.
  • OECD 2009. Preliminary Review of OECD Test Guidelines for their Applicability to Manufactured Nanomaterials. Paris: OECD.
  • OECD 2012. Guidance on Sample Preparation and Dosimetry for the Safety testing of Manufactured Nanomaterials. Paris: OECD.
  • OECD 2017. Test No. 318: Dispersion Stability of Nanomaterials in Simulated Environmental Media, OECD Guidelines for the Testing of Chemicals, Section 3. Paris: OECD Publishing.
  • Ozkan Y, Altinok I, Ilhan H, Sokmen M. 2016. Determination of TiO2 and AgTiO2 nanoparticles in Artemia salina: toxicity, morphological changes, uptake and depuration. Bull Environ Contam Toxicol. 96:36–42.
  • Persoone G, Blaise C, Snell T, Janssen C, van Steertegem M. 1993. Cyst-based toxicity test: II-report on an international intercalibration exercise with three cost-effective toxkits. Angew Zool. 1:17–34.
  • Persoone G, Wells PG. 1987. Artemia research and application, Volume 12. Morphology, genetics, strain characterization, toxicology. In: Sorgeloos P, Bengston DA, Decleir W, Jaspers editors. Artemin in aquatic toxicology, a review. Wettern, Belgium: University Press.
  • Pretti C, Oliva M, Pietro RD, Monni G, Cevasco G, Chiellini F, Pomelli C, Chiappe C. 2014. Ecotoxicity of pristine graphene to marine organisms. Ecotoxicol Environ Saf. 101:138–145.
  • Radhika SR, Kumar VG, Abraham LS, Manoharan N. 2011. Assessment on the toxicity of engineered nanoparticles on the life stages of marine aquatic invertebrate Artemia salina. Int J Nanosci.10:1153–1159.
  • Rahmani R, Mansouri B, Johari SA, Azadi N, Davari B, Asghari S, Dekani L. 2016. Trophic transfer potential of silver nanoparticles from Artemia salina to Danio rerio. AACL Bioflux 9:100–104.
  • Rajabi S, Ramazani A, Hamidi M, Naji T. 2015. Artemia salina as a model organism in toxicity assessment of nanoparticles. Daru. 23:20.
  • Rasmussen K, Rauscher H, Mech A, Riego Sintes J, Gilliland D, González M, Kearns P, Moss K, Visser M, Groenewold M, Bleeker EAJ. 2018. Physico-chemical properties of manufactured nanomaterials - Characterisation and relevant methods: an outlook based on the OECD testing programme. Regul Toxicol Pharmacol. 92:8–28.
  • Rodd AL, Creighton MA, Vaslet CA, Rangel-Mendez JR, Hurt RH, Kane AB. 2014. Effects of surface-engineered nanoparticle-based dispersants for marine oil spills on the model organism Artemia franciscana. Environ Sci Technol. 48:6419–6427.
  • Rotini A, Gallo A, Parlapiano I, Berducci MT, Boni R, Tosti E, Prato E, Maggi C, Cicero AM, Migliore L, Manfra L. 2018. Insights into the CuO nanoparticle ecotoxicity with suitable marine model species. Ecotoxicol Environ Saf. 147:852–860.
  • Sarkheil M, Johari SA, An HJ, Asghari S, Park HS, Sohn EK, Yu IJ. 2018. Acute toxicity, uptake, and elimination of zinc oxide nanoparticles (ZnO NPs) using saltwater microcrustacean, Artemia franciscana. Environ Toxicol Pharmacol. 57:181–188.
  • Schiavo S, Oliviero M, Li J, Manzo S. 2018. Testing ZnO nanoparticle ecotoxicity: linking time variable exposure to effects on different marine model organisms. Environ Sci Pollut Res Int. 25:4871–4880.
  • Sorgeloos P, Remiche-Van Der Wielen C, Persoone G. 1978. The use of Artemia nauplii for toxicity tests - A critical analysis. Ecotoxicol Environ Saf. 2:249–255.
  • Sugantharaj David EMD, Madurantakam Royam M, Rajamani Sekar SK, Manivannan B, Jalaja Soman S, Mukherjee A, Natarajan C. 2017. Toxicity, uptake, and accumulation of nano and bulk cerium oxide particles in Artemia salina. Environ Sci Pollut Res Int. 24:24187–24200.
  • Tantra R, Jing S, Pichaimuthu SK, Walker N, Noble J, Hackley VA. 2011. Dispersion stability of nanoparticles in ecotoxicological investigations: the need for adequate measurement tools. J Nanopart Res. 13:3765.
  • Tavana M, Kalbassi MR, Abedian Kenari A, Johari SA. 2014. Assessment of assimilation and elimination of silver and TiO2 nanoparticles in Artemia franciscana in different salinities. Oceanography 5:91–103.
  • US EPA (Environmental Protection Agency), 1973. Standard dispersant effectiveness and toxicity tests, EPA-R2-73-201. Cincinnati, Ohio: National Environmental Research Center, Office of Research and Monitoring, US EPA.
  • Van Steertegem M, Personne G. 1993. Cyst-based toxicity test: V Development and critical evaluation of standardized toxicity tests with the brine shrimp Artemia (Anostraca, Crustacea). In: Soares MMVM and Calow P editors. Progress in Standardization of Aquatic Toxicity Tests. Boca Raton, FL: Lewis Publishers.
  • Vijayan SR, Santhiyagu P, Singamuthu M, Ahila NK, Jayaraman R, Ethiraj K. 2014. Synthesis and characterization of silver and gold nanoparticles using aqueous extract of seaweed, Turbinaria conoides, and their antimicrofouling activity. Sci World J. 2014:1.
  • Wang C, Jia H, Zhu L, Zhang H, Wang Y. 2017. Toxicity of α-Fe2O3 nanoparticles to Artemia salina cysts and three stages of larvae. Sci Total Environ. 598:847–855.
  • Yang F, Zeng L, Luo Z, Wang Z, Huang F, Wang Q, Drobne D, Yan C. 2018. Complex role of titanium dioxide nanoparticles in the trophic transfer of arsenic from Nannochloropsis maritima to Artemia salina nauplii. Aquat Toxicol. 198:231–239.
  • Zhu S, Luo F, Tu X, Chen WC, Zhu B, Wang GX. 2017b. Developmental toxicity of oxidized multi-walled carbon nanotubes on Artemia salina cysts and larvae: uptake, accumulation, excretion and toxic responses. Environmental Pollution. 229:679–687.
  • Zhu S, Luo F, Chen W, Zhu B, Wang G. 2017c. Toxicity evaluation of graphene oxide on cysts and three larval stages of Artemia salina. Sci Total Environ. 595:101–109.
  • Zhu S, Xue MY, Luo F, Chen WC, Zhu B, Wang GX. 2017a. Developmental toxicity of Fe3O4 nanoparticles on cysts and three larval stages of Artemia salina. Environ Pollut. 230:683–691.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.