Potential health risks via consumption of six edible shellfish species collected from Piura – Peru

Ecotoxicology and Environmental Safety - Tập 159 - Trang 249-260 - 2018
I. Loaiza1,2,3, M. De Troch1, G. De Boeck2
1Ghent University, Department of Biology, Marine Biology, Krijgslaan 281/S8, B-9000 Ghent, Belgium
2University of Antwerp, SPHERE - Systematic Physiological and Ecotoxicological Research, Groenenborgerlaan 171, 2020 Antwerp, Belgium
3Carrera de Biología Marina, Universidad Científica del Sur. Av. Antigua Carretera Panamericana Sur km 19 Villa El Salvador, Lima 42, Peru

Tài liệu tham khảo

Adams, 1993. Shellfish and Public Health: Lead, Cadmium, Chromium, Arsenic, and Nickel in Shellfish. Ahmed, 2015, Human health risk assessment of heavy metals in tropical fish and shellfish collected from the river Buriganga, Bangladesh, Environ. Sci. Pollut. Res., 22, 15880, 10.1007/s11356-015-4813-z Bach, 2014, A simple method to reduce the risk of cadmium exposure from consumption of Iceland scallops (Chlamys islandica) fished in Greenland, Environ. Int., 69, 100, 10.1016/j.envint.2014.04.008 Bilandžić, 2015, Metal content in four shellfish species from the Istrian Coast of Croatia, Bull. Environ. Contam. Toxicol., 95, 611, 10.1007/s00128-015-1619-0 Blanchard, 2005, Effects of salinity on copper accumulation in the common killifish (Fundulus heteroclitus), Environ. Toxicol. Chem. / SETAC, 24, 1403, 10.1897/04-373R.1 Bogdanović, 2014, As, Cd, Hg and Pb in four edible shellfish species from breeding and harvesting areas along the eastern Adriatic Coast, Croatia, Food Chem., 146, 197, 10.1016/j.foodchem.2013.09.045 Bustamante, 2004, Interspecific and geographical variations of trace element concentrations in Pectinidae from European waters, Chemosphere, 57, 1355, 10.1016/j.chemosphere.2004.08.077 Bustamante, 2005, Evaluation of the variegated scallop Chlamys varia as a biomonitor of temporal trends of Cd, Cu, and Zn in the field, Environ. Pollut., 138 Bustamante, 2005, Subcellular and body distributions of 17 trace elements in the variegated scallop Chlamys varia from the French coast of the Bay of Biscay, Sci. Total Environ., 337, 59, 10.1016/j.scitotenv.2004.07.004 Cooper, 1991, Risks of consumption of contaminated seafood: the Quincy Bay case study, Environ. Health Perspect., 90, 133 CFS-Hong Kong, 2016. Center for Food Safety. (2016). Food Adulteration (Metallic Contamination) Regulation: 〈http://www.cfs.gov.hk/english/food_leg/food_leg_mc.html〉. Diop, 2016, Assessment of trace element contamination and bioaccumulation in algae (Ulva lactuca), mussels (Perna perna), shrimp (Penaeus kerathurus), and fish (Mugil cephalus, Saratherondon melanotheron) along the Senegalese coast, Mar. Pollut. Bull., 103, 339, 10.1016/j.marpolbul.2015.12.038 EC, 2018. European Comission. Environment. Good environmental status. Available at 〈http://ec.europa.eu/environment/marine/good-environmental-status/descriptor-3/index_en.htm〉. EFSA, 2010, European food safety Authority, 2010. Scientific opinion of the panel on contaminants in the food chain on a request from the European Commission on lead in food, EFSA J., 8, 1570 EFSA, 2011, European food safety Authority, 2011. Scientific opinion of the panel on contaminants in the food chain on a request from the European Commission on cadmium in food, EFSA J., 9, 1975 EU, 2006. Official Journal of the European Union, 2006. Commission Regulation (EC) no 1881/2006. Setting maximum levels for certain contaminants in foodstuffs. FAO, 2016. Food Administration Organization, 2016. FAOSTAT, Food Balance Sheets: 〈http://faostat3.fao.org/download/FB/FBS/E〉. FDA, 2007. US Food and Drug Administration, 2007. National Shellfish Sanitation Program. Guide for the Control of Molluscan Shellfish. Forrest, 2007, Multiple indicators reveal river plume influence on sediments and benthos in a New Zealand coastal embayment, N.Z. J. Mar. Freshw. Res., 41, 13, 10.1080/00288330709509892 Gao, 2016, Metal concentrations in sediment and biota of the Huludao Coast in Liaodong Bay and associated human and ecological health risks, Arch. Environ. Contam. Toxicol., 71, 87, 10.1007/s00244-016-0274-8 Grosell, 2007, Physiology is pivotal for interactions between salinity and acute copper toxicity to fish and invertebrates, Aquat. Toxicol. (Amst. Neth.), 84, 162, 10.1016/j.aquatox.2007.03.026 Han, 1998, Estimation of target hazard quotients and potential health risks for metals by consumption of seafood in Taiwan, Arch. Environ. Contam. Toxicol., 35, 711, 10.1007/s002449900535 Hargitai, 2016, Effects of breeding habitat (woodland versus urban) and metal pollution on the egg characteristics of great tits (Parus major), Sci. Total Environ., 544, 31, 10.1016/j.scitotenv.2015.11.116 IMARPE, 2007. Instituto del Mar del Perú, 2007. Estudio de línea base del ámbito marino de la Bahía de Sechura. INRENA, 2005. Instituto Nacional de Recursos Naturales. Subproyecto VA-04: Evaluación de la vulnerabilidad física natural futura y medidas de adaptación en áreas de interés en la cuenca del río Piura. Capitulo III. Jakimska, 2011, Bioaccumulation of metals in tissues of marine animals, Part II: metal concentrations in animal tissues, Pol. J. Environ. Stud., 20, 1127 JECFA, 2010. Joint FAO/WHO Expert Committee on Food Additives, 2010. Summary and Conclusions by the JECFA. JECFA, 2011. Joint FAO/WHO Expert Committee on Food Additives, 2011. Summary of Evaluations by the JECFA. JECFA, 2016. Joint FAO/WHO Expert Committee on Food Additives, 2016. Summary of Evaluations by the JECFA: 〈http://www.fao.org/food/food-safety-quality/scientific-advice/jecfa/en/〉. Julshamn, 2008, Organ distribution and food safety aspects of cadmium and lead in great scallops, Pecten maximus L., and horse mussels, Modiolus modiolus L., from Norwegian waters, Bull. Environ. Contam. Toxicol., 80, 385, 10.1007/s00128-008-9377-x Kehrig, 2013, Mercury and selenium biomagnification in a Brazilian coastal food web using nitrogen stable isotope analysis: a case study in an area under the influence of the Paraiba do Sul River plume, Mar. Pollut. Bull., 75, 283, 10.1016/j.marpolbul.2013.06.046 Kluger, 2016, Carrying capacity simulations as a tool for ecosystem-based management of a scallop aquaculture system, Ecol. Model., 331, 44, 10.1016/j.ecolmodel.2015.09.002 Lino, 2016, Metal bioaccumulation in consumed marine bivalves in Southeast Brazilian coast, J. Trace Elem. Med. Biol., 34, 50, 10.1016/j.jtemb.2015.12.004 Liu, 2009, Risk to humans of consuming metals in anchovy (Coilia sp.) from the Yangtze River Delta, Environ. Geochem. Health, 31, 727, 10.1007/s10653-009-9258-1 Loaiza, 2015, Tissue-specific Cd and Pb accumulation in Peruvian scallop (Argopecten purpuratus) transplanted to a suspended and bottom culture at Sechura Bay, Peru, Mar. Pollut. Bull., 91, 429, 10.1016/j.marpolbul.2014.09.058 Loaiza, I., Miglio, M., Mendo, J., 2009. Informe de ensayo: Determinación de plomo y cadmio en talo y gónada de Argopecten purpurtatus. Mendo, 2016, Scallop fishery and culture in Peru, Dev. Aquac. Fish. Sci., 40, 1089, 10.1016/B978-0-444-62710-0.00028-6 Marín, 2016, Contaminación por cadmio en alimentos marinos, Lima–2015, Cienc. Invest., 19, 24 Metian, 2008, Investigation of Ag in the king scallop Pecten maximus using field and laboratory approaches, J. Exp. Mar. Biol. Ecol., 367, 53, 10.1016/j.jembe.2008.08.019 Metian, 2008, Accumulation of nine metals and one metalloid in the tropical scallop Comptopallium radula from coral reefs in New Caledonia, Environ. Pollut., 152, 543, 10.1016/j.envpol.2007.07.009 MINAM, 2010. Ministerio del Ambiente. Resolución Ministerial N°251. MINAM: 〈http://www.minam.gob.pe/disposiciones/resolucion-ministerial-n-251-2010-minam/〉. Miramand, 2002, Rev. Méd. Vét., 11, 741 Nkpaa, 2017, Heavy metals levels in shellfish from Bodo City and B-Dere, Ogoniland, Rivers State, Nigeria, and evaluation of possible health risks to consumers, Sustain. Water Resour. Manag., 3, 83, 10.1007/s40899-017-0096-5 Peña, 1999, A delicate balance: homeostatic control of copper uptake and distribution, J. Nutr., 129, 1251, 10.1093/jn/129.7.1251 Rjeibi, 2015, Seasonal survey of contaminants (Cd and Hg) and micronutrients (Cu and Zn) in edible tissues of cephalopods from Tunisia: assessment of risk and nutritional benefits, J. Food Sci., 80, T199, 10.1111/1750-3841.12711 Saavedra, 2017, Anatomical distribution of heavy metals in the scallop Pecten maximus, Food Addit. Contam., 25, 1339, 10.1080/02652030802163398 SANIPES, 2017. Organismo Nacional de Sanidad Pesquera, 2017: 〈http://www.sanipes.gob.pe/〉. Tu, 2010, Concentrations of trace elements in Meretrix spp. (Mollusca: bivalva) along the coasts of Vietnam, Fish. Sci., 76, 677, 10.1007/s12562-010-0251-5 US EPA, 2000. Guidance for assessing chemical contamination data for use in fish advisories. Volume 2: Risk assessment and fish consumption limits. EPA/823-B-00-008. United States Environmental Protection Agency, Washington, DC. US EPA, 2004. US Environmental Protection Agency, 2004. Integrated Risk Information System (IRIS) on Lead and Compounds (Inorganic) (CASRN7439-92-1): 〈http://www.epa.gov/iris/subst/0277.htm〉. US EPA, 2012. Arsenic compounds: 〈https://www3.epa.gov/airtoxics/hlthef/arsenic.html〉. US EPA, 2016a. Integration Risk Information System IRIS, 2016.: 〈https://www.epa.gov/iris〉. US EPA, 2016b. Regional screening level (RSL) table, 2016: 〈https://www.epa.gov/risk/regional-screening-levels-rsls-generic-tables-may-2016〉. WHO/FAO, 1995. Codex Alimentarius, 1995. Codex general standard for contaminants and toxins in food and feed. WWF Chile, 2003. Programa Ecoregión Valdiviana. Caracterización Preliminar De Los Predios Chaihuín-Venecia, Cordillera De La Costa Décima Región. Yap, 2016, Health risk assessments of heavy metal exposure via consumption of marine mussels collected from anthropogenic sites, Sci. Total Environ., 553, 285, 10.1016/j.scitotenv.2016.02.092 Zhao, 2016, Seafood consumption among Chinese coastal residents and health risk assessment of heavy metals in seafood, Environ. Sci. Pollut. Res., 23, 16834, 10.1007/s11356-016-6817-8