Absence of microplastic bioaccumulation in cod fillets from plastic-polluted western Norwegian waters

Marte Haave , Emilie Hæggernes , Alessio Gomiero

Emerging Contaminants and Environmental Health ›› 2024, Vol. 3 ›› Issue (3) : 16

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Emerging Contaminants and Environmental Health ›› 2024, Vol. 3 ›› Issue (3) :16 DOI: 10.20517/wecn.2024.07
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Absence of microplastic bioaccumulation in cod fillets from plastic-polluted western Norwegian waters

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Abstract

Plastics are synthetic, persistent materials that are distributed worldwide. An important concern is whether microplastics (MP) can bioaccumulate in the food chain and pose a threat to human consumers. We studied MP in the fillet of resident coastal cod from a plastic-polluted area in Western Norway, where long-range transported marine litter accumulates and MP are generated on shore. We dissected the fish and processed the samples in an MP-free lab using gentle enzymatic treatment. Micro Fourier transform infrared spectroscopy (µFTIR) was used for identification of particles down to 10 µm. The fish were 40 to 74 cm, corresponding to 2-6 years old. 29 particles were observed in fillets from eight of the 23 individuals. The mean particle count was 1.55 ± 2.75 nMP/100 g, and the mean concentration was 2.81 ± 8.33 µg/kg wet weight. Six polymer groups were identified, where polypropylene (33%) and polyethylene (30%) were the most frequent. The majority (86%) of the particles were fragments ranging from 32-100 µm. Fibers and fragments over 200 µm were observed. The largest particle was a PP particle of 258.2 µm. Controls showed minimal contamination and the procedural blanks were negative. There was no significant correlation between age, body condition, time of capture, and MP concentrations, and no evidence of bioaccumulation of MP in the fillet of older fish after in situ exposure. MP in food is of concern for human consumption and emphasizes the importance of understanding MP distribution and fate as well as reducing and controlling plastic release into the environment.

Keywords

Microplastics / bioaccumulation / fish fillet / plastic pollution

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Marte Haave, Emilie Hæggernes, Alessio Gomiero. Absence of microplastic bioaccumulation in cod fillets from plastic-polluted western Norwegian waters. Emerging Contaminants and Environmental Health, 2024, 3(3): 16 DOI:10.20517/wecn.2024.07

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References

[1]

Bergmann M,Krumpen T.High quantities of microplastic in Arctic deep-sea sediments from the HAUSGARTEN observatory.Environ Sci Technol2017;51:11000-10

[2]

Bergmann M,Primpke S,Trachsel J.White and wonderful? Microplastics prevail in snow from the Alps to the Arctic.Sci Adv2019;5:eaax1157 PMCID:PMC6693909

[3]

Dris R,Rocher V,Renault N.Microplastic contamination in an urban area: a case study in Greater Paris.Environ Chem2015;12:592-9

[4]

Gasperi J,Dris R.Microplastics in air: are we breathing it in?.Curr Opin Environ Sci Health2018;1:1-5

[5]

Munari C,Scoponi M,Corinaldesi C.Microplastics in the sediments of Terra Nova Bay (Ross Sea, Antarctica).Mar Pollut Bull2017;122:161-5

[6]

Aves AR,Gaw S.First evidence of microplastics in Antarctic snow.Cryosphere2022;16:2127-45

[7]

Cabrera M,Valencia BG.Microplastics in a tropical Andean Glacier: a transportation process across the Amazon basin?.Sci Total Environ2022;805:150334

[8]

Lusher A,Mendoza-Hill J. Microplastics in fisheries and aquaculture - status of knowledge on their occurrence and implications for aquatic organisms and food safety. FAO Fisheries and Aquaculture Technical Paper. 2017;615. Available from: https://oursharedseas.com/wp-content/uploads/2019/11/FAO_Microplastics_in_fisheries_aquaculture.pdf. [Last accessed on 25 Jun 2024]

[9]

Ragusa A,Santacroce C.Plasticenta: first evidence of microplastics in human placenta.Environ Int2021;146:106274

[10]

Haave M,Schönheit J,Olsen AB.Documentation of microplastics in tissues of wild coastal animals.Front Environ Sci2021;9:575058

[11]

Zhu L,Zuo R,Qian Y.Identification of microplastics in human placenta using laser direct infrared spectroscopy.Sci Total Environ2023;856:159060

[12]

Leslie HA,Brandsma SH,Garcia-Vallejo JJ.Discovery and quantification of plastic particle pollution in human blood.Environ Int2022;163:107199

[13]

Kutralam-Muniasamy G,Pérez-Guevara F.Microplastic diagnostics in humans: “the 3Ps” progress, problems, and prospects.Sci Total Environ2023;856:159164

[14]

Hu CJ,Nihart A.Microplastic presence in dog and human testis and its potential association with sperm count and weights of testis and epididymis.Toxicol Sci2024;200:235-40

[15]

Kopatz V,Kovács T.Micro- and nanoplastics breach the blood-brain barrier (BBB): biomolecular Corona’s role revealed.Nanomaterials2023;13:1404 PMCID:PMC10141840

[16]

Volkheimer G.Hematogenous dissemination of ingested polyvinyl chloride particles.Ann N Y Acad Sci1975;246:164-71

[17]

Clark NJ,Mitrano DM,Thompson RC.Demonstrating the translocation of nanoplastics across the fish intestine using palladium-doped polystyrene in a salmon gut-sac.Environ Int2022;159:106994

[18]

Al-Sid-Cheikh M,Stevenson K,Henry TB.Uptake, whole-body distribution, and depuration of nanoplastics by the scallop pecten maximus at environmentally realistic concentrations.Environ Sci Technol2018;52:14480-6

[19]

Mattsson K,Hansson LA,Malmendal A.Altered behavior, physiology, and metabolism in fish exposed to polystyrene nanoparticles.Environ Sci Technol2015;49:553-61

[20]

Mattsson K,Malmendal A,Hansson LA.Brain damage and behavioural disorders in fish induced by plastic nanoparticles delivered through the food chain.Sci Rep2017;7:11452 PMCID:PMC5597631

[21]

Chae Y.Effects of micro- and nanoplastics on aquatic ecosystems: current research trends and perspectives.Mar Pollut Bull2017;124:624-32

[22]

Clark NJ,Crowther C,Thompson RC.Uptake, distribution and elimination of palladium-doped polystyrene nanoplastics in rainbow trout (Oncorhynchus mykiss) following dietary exposure.Sci Total Environ2023;854:158765

[23]

WHO. Dietary and inhalation exposure to nano- and microplastic particles and potential implications for human health. 2022. Available from: https://www.who.int/publications/i/item/9789240054608. [Last accessed on 25 Jun 2024]

[24]

Cox KD,Davies HL,Juanes F.Human consumption of microplastics.Environ Sci Technol2019;53:7068-74

[25]

Collard F,Compère P.Microplastics in livers of European anchovies (Engraulis encrasicolus, L.).Environ Pollut2017;229:1000-5

[26]

Wootton N,Varea R,Gillanders BM.Microplastic in oysters: a review of global trends and comparison to southern Australia.Chemosphere2022;307:136065

[27]

Daniel DB,Thomas SN.Microplastics in the edible and inedible tissues of pelagic fishes sold for human consumption in Kerala, India.Environ Pollut2020;266:115365

[28]

Dawson AL,Kroon FJ.Plastics for dinner: Store-bought seafood, but not wild-caught from the Great Barrier Reef, as a source of microplastics to human consumers.Environ Adv2022;8:100249

[29]

Habib RZ,Salem FA.Microplastic contamination of chicken meat and fish through plastic cutting boards.Int J Environ Res Public Health2022;19:13442 PMCID:PMC9602623

[30]

Karami A,Ho YB,Salamatinia B.Microplastics in eviscerated flesh and excised organs of dried fish.Sci Rep2017;7:5473 PMCID:PMC5511207

[31]

Catarino AI,Sanderson WG,Henry TB.Low levels of microplastics (MP) in wild mussels indicate that MP ingestion by humans is minimal compared to exposure via household fibres fallout during a meal.Environ Pollut2018;237:675-84

[32]

Lusher AL,Arp HPH.Moving forward in microplastic research: a Norwegian perspective.Environ Int2021;157:106794

[33]

Miller ME,Kroon FJ.Bioaccumulation and biomagnification of microplastics in marine organisms: a review and meta-analysis of current data.PLoS One2020;15:e0240792 PMCID:PMC7567360

[34]

Shruti V.Blanks and bias in microplastic research: Implications for future quality assurance.Trends Environ Anal Chem2023;38:e00203

[35]

Bastesen E,Andersen GL,Bødtker G.Rapid Landscape changes in plastic bays along the Norwegian coastline.Front Mar Sci2021;8:579913

[36]

Delandmeter P.The Parcels v2.0 Lagrangian framework: new field interpolation schemes.Geosci Model Dev2019;12:3571-84

[37]

Godø OR.Growth and Maturation of Norwegian coastal cod and Northeast Arctic cod under different conditions.Fish Res1987;5:235-42

[38]

Cote D,Frampton PCB,Mckinley RS.Habitat use and early winter movements by juvenile Atlantic cod in a coastal area of Newfoundland.J Fish Biol2004;64:665-79

[39]

Mattson S.Food and feeding habits of fish species over a soft sublittoral bottom in the northeast atlantic: 1. COD (GADUS MORHUA L.) (GADIDAE).Sarsia1990;75:247-67

[40]

Bråte ILN,Steindal CC.Plastic ingestion by Atlantic cod (Gadus morhua) from the Norwegian coast.Mar Pollut Bull2016;112:105-10

[41]

Bai R,Xie C.Microplastics are overestimated due to poor quality control of reagents.J Hazard Mater2023;459:132068

[42]

Haave M,Primpke S.Different stories told by small and large microplastics in sediment - first report of microplastic concentrations in an urban recipient in Norway.Mar Pollut Bull2019;141:501-13

[43]

Lorenz C.Detection of microplastics in marine sediments of the German Coast via FT-IR spectroscopy. 2014.

[44]

Löder MGJ,Ladehoff M.Enzymatic purification of microplastics in environmental samples.Environ Sci Technol2017;51:14283-92

[45]

Gomiero A,Øysæd KB.First occurrence and composition assessment of microplastics in native mussels collected from coastal and offshore areas of the northern and central Adriatic Sea.Environ Sci Pollut Res Int2019;26:24407-16

[46]

Martinelli M,Guicciardi S.Preliminary results on the occurrence and anatomical distribution of microplastics in wild populations of Nephrops norvegicus from the Adriatic Sea.Environ Pollut2021;278:116872

[47]

Gomiero A,Kögel T. Tracking of plastic emissions from aquaculture industry (TrackPlast). 2020. Available from: https://hdl.handle.net/11250/2649891. [Last accessed on 25 Jun 2024]

[48]

Primpke S,Lorenz C.Reference database design for the automated analysis of microplastic samples based on Fourier transform infrared (FTIR) spectroscopy.Anal Bioanal Chem2018;410:5131-41 PMCID:PMC6113679

[49]

Nash R,Geffen AJ. The origin of fulton’s condition factor - setting the record straight. Fisheriies 2006;31:236-8. Available from:https://api.semanticscholar.org/CorpusID:6908259. [Last accessed on 25 Jun 2024]

[50]

Gomiero A,Bjorøy Ø. Quantification of microplastic in fillet and organs of farmed and wild salmonids-a comparison of methods for detection and quantification. 2020. Available from:https://hdl.handle.net/11250/2687619. [Last accessed on 25 Jun 2024]

[51]

Abbasi S,Keshavarzi B,Turner A.Microplastics in different tissues of fish and prawn from the Musa Estuary, Persian Gulf.Chemosphere2018;205:80-7

[52]

Akhbarizadeh R,Keshavarzi B.Investigating a probable relationship between microplastics and potentially toxic elements in fish muscles from northeast of Persian Gulf.Environ Pollut2018;232:154-63

[53]

Barboza LGA,Oliveira P.Microplastics in wild fish from North East Atlantic Ocean and its potential for causing neurotoxic effects, lipid oxidative damage, and human health risks associated with ingestion exposure.Sci Total Environ2020;717:134625

[54]

Garcia AG,Li J.A comparison of microplastic contamination in freshwater fish from natural and farmed sources.Environ Sci Pollut Res Int2021;28:14488-97

[55]

Gouin T.Toward an improved understanding of the ingestion and trophic transfer of microplastic particles: critical review and implications for future research.Environ Toxicol Chem2020;39:1119-37 PMCID:PMC7383496

[56]

Karami A,Choo CK,Karbalaei S.Microplastic and mesoplastic contamination in canned sardines and sprats.Sci Total Environ2018;612:1380-6

[57]

Wootton N,Dowsett N,Gillanders BM.Low abundance of microplastics in commercially caught fish across southern Australia.Environ Pollut2021;290:118030

[58]

Lorenz C,Meyer MS.Spatial distribution of microplastics in sediments and surface waters of the southern North Sea.Environ Pollut2019;252:1719-29

[59]

Zeytin S,Mackay-Roberts N.Quantifying microplastic translocation from feed to the fillet in European sea bass Dicentrarchus labrax.Mar Pollut Bull2020;156:111210

[60]

Browne MA,Galloway TS,Thompson RC.Ingested microscopic plastic translocates to the circulatory system of the mussel, Mytilus edulis (L).Environ Sci Technol2008;42:5026-31

[61]

Deng Y,Lemos B.Tissue accumulation of microplastics in mice and biomarker responses suggest widespread health risks of exposure.Sci Rep2017;7:46687 PMCID:PMC5402289

[62]

Neira M.The Minderoo-Monaco Commission on plastics and human health: editorial to accompany the Minderoo-Monaco Commission on plastics and human health in the journal, Annals of Global Health.Ann Glob Health2023;89:22 PMCID:PMC10038109

[63]

Covernton GA,Fleming WL.Large size (>100-μm) microplastics are not biomagnifying in coastal marine food webs of British Columbia, Canada.Ecol Appl2022;32:e2654 PMCID:PMC9786919

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