Jambeck, J. R. et al. Plastic waste inputs from land into the ocean. Science 347, 768–771 (2015).
Google Scholar
Andrady, A. L. Microplastics in the marine environment. Mar. Pollut. Bull. 62, 1596–1605 (2011).
Google Scholar
Avio, C. G., Gorbi, S. & Regoli, F. Plastics and microplastics in the oceans: From emerging pollutants to emerged threat. Mar. Environ. Res. 128, 2–11 (2017).
Google Scholar
Barboza, L. G. A., Dick Vethaak, A., Lavorante, B. R. B. O., Lundebye, A.-K. & Guilhermino, L. Marine microplastic debris: An emerging issue for food security, food safety and human health. Mar. Pollut. Bull. 133, 336–348 (2018).
Google Scholar
Van Cauwenberghe, L. & Janssen, C. R. Microplastics in bivalves cultured for human consumption. Environ. Pollut. 193, 65–70 (2014).
Google Scholar
Bucci, K., Tulio, M. & Rochman, C. M. What is known and unknown about the effects of plastic pollution: A meta-analysis and systematic review. Ecol. Appl. 30, e02044 (2020).
Google Scholar
Worm, B., Lotze, H. K., Jubinville, I., Wilcox, C. & Jambeck, J. Plastic as a Persistent Marine Pollutant. Annu. Rev. Environ. Resour. 42, 1–26 (2017).
Google Scholar
GESAMP. Sources, Fate and Effects of Microplastics in the Marine Environment (Part 2) (2016). http://www.gesamp.org/publications/microplastics-in-the-marine-environment-part-2.
Donohue, M. J. et al. Evaluating exposure of northern fur seals, Callorhinus ursinus, to microplastic pollution through fecal analysis. Mar. Pollut. Bull. 138, 213–221 (2019).
Google Scholar
Duncan, E. M. et al. Microplastic ingestion ubiquitous in marine turtles. Glob. Change Biol. 25, 744–752 (2019).
Google Scholar
Moore, R. C. et al. Microplastics in beluga whales (Delphinapterus leucas) from the Eastern Beaufort Sea. Mar. Pollut. Bull. 150, 110723 (2020).
Google Scholar
Bessa, F. et al. Microplastics in gentoo penguins from the Antarctic region. Sci. Rep. 9, 14191 (2019).
Google Scholar
Provencher, J. F., Ammendolia, J., Rochman, C. M. & Mallory, M. L. Assessing plastic debris in aquatic food webs: what we know and don’t know about uptake and trophic transfer. Environ. Rev. 27, 304–317 (2019).
Google Scholar
Bucci, K., Bikker, J., Stevack, K., Watson-Leung, T. & Rochman, C. Impacts to larval fathead minnows vary between preconsumer and environmental microplastics. Environ. Toxicol. Chem. 41, 4 (2021).
Nelms, S. E., Galloway, T. S., Godley, B. J., Jarvis, D. S. & Lindeque, P. K. Investigating microplastic trophic transfer in marine top predators. Environ. Pollut. 238, 999–1007 (2018).
Google Scholar
De-la-Torre, G. E. Microplastics: an emerging threat to food security and human health. J. Food Sci. Technol. 57, 1601–1608 (2020).
Google Scholar
Teuten, E. L. et al. Transport and release of chemicals from plastics to the environment and to wildlife. Philos. Trans. R. Soc. B 364, 2027–2045 (2009).
Google Scholar
Zettler, E. R., Mincer, T. J. & Amaral-Zettler, L. A. Life in the “plastisphere”: Microbial communities on plastic marine debris. Environ. Sci. Technol. 47, 7137–7146 (2013).
Google Scholar
He, S. et al. Biofilm on microplastics in aqueous environment: Physicochemical properties and environmental implications. J. Hazard. Mater. 1, 127286. https://doi.org/10.1016/j.jhazmat.2021.127286 (2021).
Google Scholar
Kirstein, I. V. et al. Dangerous hitchhikers? Evidence for potentially pathogenic Vibrio spp. on microplastic particles. Mar. Environ. Res. 120, 1–8 (2016).
Google Scholar
World Health Organization. Safe Management of Shellfish and Harvest Waters (WHO, 2010).
Lindsay, D. S. & Dubey, J. P. Long-term survival of Toxoplasma gondii sporulated oocysts in seawater. J. Parasitol. 95, 1019–1020 (2009).
Google Scholar
Tamburrini, A. & Pozio, E. Long-term survival of Cryptosporidium parvum oocysts in seawater and in experimentally infected mussels (Mytilus galloprovincialis). Int. J. Parasitol. 29, 711–715 (1999).
Google Scholar
Jones, J. L. et al. Risk factors for Toxoplasma gondii infection in the United States. Clin. Infect. Dis. 49, 878–884 (2009).
Google Scholar
Robertson, L. J. The potential for marine bivalve shellfish to act as transmission vehicles for outbreaks of protozoan infections in humans: A review. Int. J. Food Microbiol. 120, 201–216 (2007).
Google Scholar
Shapiro, K. et al. Environmental transmission of Toxoplasma gondii: Oocysts in water, soil and food. Food Waterb. Parasitol. 15, e00049 (2019).
Google Scholar
Miller, M. A., Shapiro, K., Murray, M. J., Haulena, M. J. & Raverty, S. Protozoan parasites of marine mammals. in CRC Handbook of Marine Mammal Medicine (2018).
Ward, J. E. & Kach, D. J. Marine aggregates facilitate ingestion of nanoparticles by suspension-feeding bivalves. Mar. Environ. Res. 68, 137–142 (2009).
Google Scholar
Rose, J. B. Environmental ecology of cryptosporidium and public health implications. Annu. Rev. Public Health 18, 135–161 (1997).
Google Scholar
Robert-Gangneux, F. & Dardé, M.-L. Epidemiology of and diagnostic strategies for toxoplasmosis. Clin. Microbiol. Rev. 25, 264–296 (2012).
Google Scholar
Bahia-Oliveira, L., Gomez-Marin, J. & Shapiro, K. Toxoplasma gondii. Global Water Pathogen Project. https://www.waterpathogens.org/book/toxoplasma-gondii (2015).
Kreuder, C. et al. Patterns of mortality in southern sea otters (Enhydra lutris nereis) from 1998–2001. J. Wildl. Dis. 39, 495–509 (2003).
Google Scholar
Shapiro, K. et al. Dual congenital transmission of Toxoplasma gondii and Sarcocystis neurona in a late-term aborted pup from a chronically infected southern sea otter (Enhydra lutris nereis). Parasitology 143, 276–288 (2016).
Google Scholar
Barbieri, M. M. et al. Protozoal-related mortalities in endangered Hawaiian monk seals Neomonachus schauinslandi. Dis. Aquat. Org. 121, 85–95 (2016).
Google Scholar
Roe, W. D., Howe, L., Baker, E. J., Burrows, L. & Hunter, S. A. An atypical genotype of Toxoplasma gondii as a cause of mortality in Hector’s dolphins (Cephalorhynchus hectori). Vet. Parasitol. 192, 67–74 (2013).
Google Scholar
Hernandez, E., Nowack, B. & Mitrano, D. M. Polyester textiles as a source of microplastics from households: A mechanistic study to understand microfiber release during washing. Environ. Sci. Technol. 51, 7036–7046 (2017).
Google Scholar
Mason, S. A. et al. Microplastic pollution is widely detected in US municipal wastewater treatment plant effluent. Environ. Pollut. 218, 1045–1054 (2016).
Google Scholar
Sutton, R. et al. Microplastic contamination in the San Francisco Bay, California, USA. Mar. Pollut. Bull. 109, 230–235 (2016).
Google Scholar
Desforges, J.-P.W., Galbraith, M., Dangerfield, N. & Ross, P. S. Widespread distribution of microplastics in subsurface seawater in the NE Pacific Ocean. Mar. Pollut. Bull. 79, 94–99 (2014).
Google Scholar
Horn, D., Miller, M., Anderson, S. & Steele, C. Microplastics are ubiquitous on California beaches and enter the coastal food web through consumption by Pacific mole crabs. Mar. Pollut. Bull. 139, 231–237 (2019).
Google Scholar
Yu, X. et al. Occurrence and distribution of microplastics at selected coastal sites along the southeastern United States. Sci. Total Environ. 613–614, 298–305 (2018).
Google Scholar
Collicutt, B., Juanes, F. & Dudas, S. E. Microplastics in juvenile Chinook salmon and their nearshore environments on the east coast of Vancouver Island. Environ. Pollut. 244, 135–142 (2019).
Google Scholar
Davidson, K. & Dudas, S. E. Microplastic ingestion by wild and cultured manila clams (Venerupis philippinarum) from Baynes Sound, British Columbia. Arch. Environ. Contam. Toxicol. 71, 147–156 (2016).
Google Scholar
Waite, H. R., Donnelly, M. J. & Walters, L. J. Quantity and types of microplastics in the organic tissues of the eastern oyster Crassostrea virginica and Atlantic mud crab Panopeus herbstii from a Florida estuary. Mar. Pollut. Bull. 129, 179–185 (2018).
Google Scholar
Wootton, N., Reis-Santos, P. & Gillanders, B. M. Microplastic in fish: A global synthesis. Rev. Fish. Biol. Fish. 31, 753–771 (2021).
Google Scholar
De-la-Pinta, I. et al. Effect of biomaterials hydrophobicity and roughness on biofilm development. J. Mater. Sci. 30, 77 (2019).
Rochman, C. M., Hoh, E., Hentschel, B. T. & Kaye, S. Long-term field measurement of sorption of organic contaminants to five types of plastic pellets: implications for plastic marine debris. Environ. Sci. Technol. 47, 1646–1654 (2013).
Google Scholar
Lindquist, H. D. A. et al. Autofluorescence of Toxoplasma gondii and related coccidian oocysts. J. Parasitol. 89, 865–867 (2003).
Google Scholar
Alldredge, A. L., Passow, U. & Logan, B. E. The abundance and significance of a class of large, transparent organic particles in the ocean. Deep Sea Res. Part I 40, 1131–1140 (1993).
Google Scholar
Shapiro, K. et al. Aquatic polymers can drive pathogen transmission in coastal ecosystems. Proc. R. Soc. B 281, 20141287 (2014).
Google Scholar
Bowley, J., Baker-Austin, C., Porter, A., Hartnell, R. & Lewis, C. Oceanic hitchhikers: Assessing pathogen risks from marine microplastic. Trends Microbiol. 29, 107–116 (2021).
Google Scholar
Nasser, F. & Lynch, I. Secreted protein eco-corona mediates uptake and impacts of polystyrene nanoparticles on Daphnia magna. J. Proteom. 137, 45–51 (2016).
Google Scholar
Savoca, M. S., Wohlfeil, M. E., Ebeler, S. E. & Nevitt, G. A. Marine plastic debris emits a keystone infochemical for olfactory foraging seabirds. Sci. Adv. 2, e1600395 (2016).
Google Scholar
Ramsperger, A. F. R. M. et al. Environmental exposure enhances the internalization of microplastic particles into cells. Sci. Adv. 6, 1211 (2020).
Google Scholar
Lusher, A., Hollman, P. C. H. & Mendoza-Hill, J. Microplastics in fisheries and aquaculture: status of knowledge on their occurrence and implications for aquatic organisms and food safety (Food and Agriculture Organization of the United Nations, 2017).
Tamburri, M. N. & Zimmer-Faust, R. K. Suspension feeding: Basic mechanisms controlling recognition and ingestion of larvae. Limnol. Oceanogr. 41, 1188–1197 (1996).
Google Scholar
Shapiro, K. et al. Simultaneous detection of four protozoan parasites on leafy greens using a novel multiplex PCR assay. Food Microbiol. 84, 103252 (2019).
Google Scholar
Choy, C. A. et al. The vertical distribution and biological transport of marine microplastics across the epipelagic and mesopelagic water column. Sci. Rep. 9, 7843 (2019).
Google Scholar
Saley, A. M. et al. Microplastic accumulation and biomagnification in a coastal marine reserve situated in a sparsely populated area. Mar. Pollut. Bull. 146, 54–59 (2019).
Google Scholar
Shapiro, K. et al. Detection of Toxoplasma gondii oocysts and surrogate microspheres in water using ultrafiltration and capsule filtration. Water Res. 44, 893–903 (2010).
Google Scholar
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