Seasonal variation in the concentration of potentially toxic elements in fish from El Tunal river, Durango, Mexico: Possible implications for human health

Contenido principal del artículo

Leticia de Jesús Velázquez-Chávez
Jorge Armando Chávez-Simental
Ixchel Abby Ortiz-Sánchez
Gerardo Antonio Pámanes-Carrasco
Artemio Carrillo-Parra
Martín Emilio Pereda-Solís

Resumen

Environmental pollution is a major problem worldwide. One of the major health issues is the consumption of potentially toxic elements through fish intake, particularly in urban areas. Therefore, it is necessary to assess the human health risks of fish consumers. This study aims to determine concentrations of As, Cd, Cr, Cu, Hg, Pb, and Zn in the liver and muscle of freshwater carp (Cyprinus carpio) caught in El Tunal River, Durango, Mexico. Carps were collected in dry (n = 7) and rainy (n = 10) seasons. The highest concentrations of all elements were found in the liver, where As and Zn (4.83 and 6.51 µg/g w/w, respectively) were predominant. Meanwhile, As, Cr, and Zn (1.00, 1.12, and 1.09 µg/g w/w, respectively) were predominant in muscle. The concentrations of As, Cd, Cr, Pb, and Zn had significant differences between seasons (p < 0.05), showing that during the rainy season the concentration of elements in the river, and hence in fish tissues, was reduced. Elements in edible tissue were below the levels allowed in Mexico and by international agencies. The mean and total target hazard quotients were below 1, indicating a minor risk to human health. Based on this study, fish consumption does not represent a risk to human health; however, it is necessary to continue monitoring pollutants since their accumulation can increase over time.

Descargas

Los datos de descargas todavía no están disponibles.

Detalles del artículo

Compartir en:

PLUMX metrics

Citas

ATSDR. (2019). Priority List of Hazardous Substances. Agency for Toxic Substances and Disease Registry, Division of Toxicology and Human Health Sciences. Atlanta.

Abarshi, M. M., Dantala, E. O., & Mada, S. B. (2017). Bioaccumulation of heavy metals in some tissues of croaker fish from oil spilled rivers of Niger Delta region, Nigeria. Asian Pacific Journal of Tropical Biomedicine, 7(6), 563–568. https://doi.org/10.1016/j.apjtb.2017.05.008

Alarcón-Herrera, M. T., Martin-Alarcon, D. A., Gutiérrez, M., Reynoso-Cuevas, L., Martín-Domínguez, A., Olmos-Márquez, M. A., & Bundschuh, J. (2020). Co-occurrence, possible origin, and health-risk assessment of arsenic and fluoride in drinking water sources in Mexico: Geographical data visualization. Science of the Total Environment, 698, 134168. https://doi.org/10.1016/j.scitotenv.2019.134168

Albuquerque, F. E. A., Herrero-Latorre, C., Miranda, M., Barrêto, R. A., Oliveira, F. L., Araripe, M.C., Ortolani, E.L., Hamad, A.H., & López-Alonso, M. (2021). Fish tissues for biomonitoring toxic and essential trace elements in the Lower Amazon. Environmental Pollution, 283. https://doi.org/10.1016/j.envpol.2021.117024

Ali, H., & Khan, E. (2018). Bioaccumulation of non-essential hazardous heavy metals and metalloids in freshwater fish. Risk to human health. Environmental Chemistry Letters, 16(3), 903–917. https://doi.org/10.1007/s10311-018-0734-7

Ali, Z., Yousafzai, A. M., Sher, N., Muhammad, I., Nayab, G. E., Aqeel, S. A. M., Shah, S.T., Aschner, M., & Khan, I. (2021). Toxicity and bioaccumulation of manganese and chromium in different organs of common carp (Cyprinus carpio) fish. Toxicology Reports, 8(October 2020), 343–348. https://doi.org/10.1016/j.toxrep.2021.02.003

Arlinghaus, R., & Mehner, T. (2003). Socio-economic characterisation of specialised common carp (Cyprinus carpio L.) anglers in Germany, and implications for inland fisheries management and eutrophication control. Fisheries Research, 61(1–3), 19–33. https://doi.org/10.1016/S0165-7836(02)00243-6

Barragán, R., López-Barrera, E. A., & Diaz-Cano, M. (2020). Potencial de riesgo humano por el consumo de metales presentes en alimentos, en el mercado de productos pesqueros de Bogotá. En Metales pesados en nuestra mesa. Contaminación de peces de consumo humano en Colombia (pp. 93–110). Bogotá, Colombia: Instituto de Estudios y Servicios Ambientales - IDEASA.

Bat, L., Şahin, F., Öztekin, A., Arici, E., & Yardim, Ö. (2019). Assessment of Cd, Hg, Pb, Cu and Zn Amounts in Muscles of Cyprinus Carpio from Karasu Stream, Sinop. Current Agriculture Research Journal, 7(2), 171–180. https://doi.org/10.12944/carj.7.2.05

Castaldo, G., Pillet, M., Slootmaekers, B., Bervoets, L., Town, R. M., Blust, R., & De Boeck, G. (2020). Investigating the effects of a sub-lethal metal mixture of Cu, Zn and Cd on bioaccumulation and ionoregulation in common carp, Cyprinus carpio. Aquatic Toxicology, 218(November 2019), 105363. https://doi.org/10.1016/j.aquatox.2019.105363

CONABIO. (2017). Evaluación rápida de invasividad de Cyprinus carpio. Sistema de información sobre especies invasoras en México. Comisión Nacional para el Conocimiento y Uso de la Biodiversidad, Ed.. México, D.F. [Online]. https://enciclovida.mx/pdfs/exoticas_invasoras/Cyprinus%20carpio.pdf

CONAGUA. (2009). Programa Hídrico Visión 2030 del Estado de Durango. Comisión Nacional del Agua, Ed.). Coyoacán, México. [Online]. https://www.cmic.org.mx/comisiones/Sectoriales/infraestructurahidraulica/estadisticas/estadisticas%202008/PHV2030EDURANGO2009,%20feb%2009.pdf

CONAGUA. (2020). Actualización de la disponibilidad media anual de agua en el acuífero Valle del Mezquital (1017) Estado de Durango. (Gerencia de Aguas Subterráneas, Ed.). México. [Online]. https://sigagis.conagua.gob.mx/gas1/Edos_Acuiferos_18/durango/DR_1017.pdf

CONAPESCA. (2018). Anuario estadístico de acuacultura y pesca 2018. (Comisión Nacional deAcuacultura y Pesca, Ed.). Mazatlán, Sinaloa. [Online]. https://nube.conapesca.gob.mx/sites/cona/dgppe/2018/ANUARIO_2018.pdf

da Silva, C. A., Garcia, C. A. B., de Santana, H. L. P., de Pontes, G. C., Wasserman, J. C., & da Costa, S. S. L. (2021). Metal and metalloid concentrations in marine fish marketed in Salvador, BA, northeastern Brazil, and associated human health risks. Regional Studies in Marine Science, 43, 101716. https://doi.org/10.1016/j.rsma.2021.101716

DOF. (2013, 27 agosto). Acuerdo por el que se actualiza la disponibilidad media anual de las aguas superficiales en las cuencas hidrológicas Laguna de Santiaguillo, La Tapona, Río La Sauceda, Río El Tunal, Río Santiago Bayacora, Río Durango, Río Poanas, Río Súchil, Río Graseros, Río San Pedro-Mezquital y Río San Pedro-Desembocadura, mismas que forman parte de la Subregión Hidrológica Río San Pedro de la Región Hidrológica número 11 Presidio-San Pedro. [Online] http://dof.gob.mx/nota_detalle.php?codigo=5311750&fecha=27/08/2013

Fernández-Trujillo, S., López-Perea, J. J., Jiménez-Moreno, M., Martín-Doimeadios, R. C. R., & Mateo, R. (2021). Metals and metalloids in freshwater fish from the floodplain of Tablas de Daimiel National Park, Spain. Ecotoxicology and Environmental Safety, 208(November 2020). https://doi.org/10.1016/j.ecoenv.2020.111602

Georgieva, E., Yancheva, V., Velcheva, I., Iliev, I., Vasileva, T., Bivolarski, V., Bivolarski, V., Becheva, M., & Stoyanova, S. (2016). Histological and biochemical changes in liver of common carp (Cyprinus carpio L.) under metal exposure. North-Western Journal of Zoology, 12(2), 261–270.

Góngora-Gómez, A. M., Domínguez-Orozco, A. L., Villanueva-Fonseca, B. P., Muñoz-Sevilla, N. P., & García-Ulloa, M. (2018). Seasonal levels of heavy metals in soft tissue and muscle of the pen shell Atrina maura (sowerby, 1835) (bivalvia: Pinnidae) from a farm in the southeastern coast of the gulf of California, Mexico. Revista Internacional de Contaminacion Ambiental, 34(1), 57–68. https://doi.org/10.20937/RICA.2018.34.01.05

Gwimbi, P., Kotelo, T., & Selimo, M. J. (2020). Heavy metal concentrations in sediments and Cyprinus carpio from Maqalika Reservoir –Maseru, Lesotho: An analysis of potential health risks to Fish consumers. Toxicology Reports, 7(March), 475–479. https://doi.org/10.1016/j.toxrep.2020.03.005

Hao, Y., Miao, X., Song, M., & Zhang, H. (2022). The Bioaccumulation and Health Risk Assessment of Metals among Two Most Consumed Species of Angling Fish ( Cyprinus carpio and Pseudohemiculter dispar ) in Liuzhou ( China ): Winter Should Be Treated as a Suitable Season for Fish Angling. International Journal of Environmental Research and Public Health, 19(1519), 1–15. https://doi.org/10.3390/ijerph19031519

Has-Schön, E., Bogut, I., Vuković, R., Galović, D., Bogut, A., & Horvatić, J. (2015). Distribution and age-related bioaccumulation of lead (Pb), mercury (Hg), cadmium (Cd), and arsenic (As) in tissues of common carp (Cyprinus carpio) and European catfish (Sylurus glanis) from the Buško Blato reservoir (Bosnia and Herzegovina). Chemosphere, 135, 289–296. https://doi.org/10.1016/j.chemosphere.2015.04.015

Jabeen, F. & Chaudhry, A. S. (2010). Monitoring trace metals in different tissues of Cyprinus carpio from the Indus River in Pakistan. Environmental Monitoring and Assessment, 170, 645–656. https://doi.org/10.1007/s10661-009-1263-4

Lemus, M., Castañeda, J., & Chung, K. (2014). Heavy metals in fish and invertebrates from the Gulf of Paria, Venezuela. Revista Internacional de Contaminación Ambiental, 30(2), 137–142.

Liu, M., Xu, Y., Nawab, J., Rahman, Z., Khan, S., Idress, M., Ud din, Z., Ali, A., Ahmad, R.,Khan, S., Khan, A., Khan, M., Tang, Y.T., & Li, G. (2020). Contamination features, geo-accumulation, enrichments and human health risks of toxic heavy metal(loids) from fish consumption collected along Swat River, Pakistan. Environmental Technology and Innovation, 17(In Press). https://doi.org/10.1016/j.eti.2019.100554

López-Barrera, E. A., & Barragán-Gonzalez, R. G. (2016). Metals and metalloid in eight fish species consumed by citizens of Bogota D.C., Colombia, and potential risk to humans. Journal of Toxicology and Environmental Health - Part A: Current Issues, 79(5), 232–243. https://doi.org/10.1080/15287394.2016.1149130

Maurya, P. K., Malik, D. S., Yadav, K. K., Kumar, A., Kumar, S., & Kamyab, H. (2019). Bioaccumulation and potential sources of heavy metal contamination in fish species in River Ganga basin: Possible human health risks evaluation. Toxicology Reports, 6(May), 472–481. https://doi.org/10.1016/j.toxrep.2019.05.012

Miao, X., Hao, Y., Liu, H., Xie, Z., Miao, D., & He, X. (2021). Effects of heavy metals speciations in sediments on their bioaccumulation in wild fish in rivers in Liuzhou—A typical karst catchment in southwest China. Ecotoxicology and Environmental Safety, 214, 112099. https://doi.org/10.1016/j.ecoenv.2021.112099

Miao, X., Hao, Y., Tang, X., Xie, Z., Liu, L., Luo, S., Huang, Q., Zou, S., Zhang, C., & Li, J. (2020). Analysis and health risk assessment of toxic and essential elements of the wild fish caught by anglers in Liuzhou as a large industrial city of China. Chemosphere, 243, 125337. https://doi.org/10.1016/j.chemosphere.2019.125337

Milanov, D. R., Krstić, P. M., Marković, V. R., Jovanović, A. D., Baltić, M. B., Ivanović, S. J., Jovetić, M., & Baltić, M. (2016). Analysis of heavy metals concentration in tissues of three different fish species included in human diet from Danube River, in the Belgrade Region, Serbia. Acta Veterinaria, 66(1), 89–102. https://doi.org/10.1515/acve-2016-0007

Monferrán, M. V., Garnero, P., De Los Angeles Bistoni, M., Anbar, A. A., Gordon, G. W., & Wunderlin, D. A. (2016). From water to edible fish. Transfer of metals and metalloids in the San Roque Reservoir (Córdoba, Argentina). Implications associated with fish consumption. Ecological Indicators, 63(2016), 48–60. https://doi.org/10.1016/j.ecolind.2015.11.048

Mziray, P., & Kimirei, I. A. (2016). Bioaccumulation of heavy metals in marine fishes (Siganus sutor, Lethrinus harak, and Rastrelliger kanagurta) from Dar es Salaam Tanzania. Regional Studies in Marine Science, 7, 72–80. https://doi.org/10.1016/j.rsma.2016.05.014

Osuna-Martínez, C. C., Armienta, M. A., Bergés-Tiznado, M. E., & Páez-Osuna, F. (2021). Arsenic in waters, soils, sediments, and biota from Mexico: An environmental review. Science of the Total Environment, 752, 142062. https://doi.org/10.1016/j.scitotenv.2020.142062

R Development Core Team (2007). R: A language and environment for statistical computing. Vienna, Austria: R Foundation for Statistical Computing.

Rajeshkumar, S., & Li, X. (2018). Bioaccumulation of heavy metals in fish species from the Meiliang Bay, Taihu Lake, China. Toxicology Reports, 5(January), 288–295. https://doi.org/10.1016/j.toxrep.2018.01.007

Rubalingeswari, N., Thulasimala, D., Giridharan, L., Gopal, V., Magesh, N. S., & Jayaprakash, M. (2021). Bioaccumulation of heavy metals in water, sediment, and tissues of major fisheries from Adyar estuary, southeast coast of India: An ecotoxicological impact of a metropolitan city. Marine Pollution Bulletin, 163(December 2020), 111964. https://doi.org/10.1016/j.marpolbul.2020.111964

Schwantes, D., Gonçalves Junior, A. C., Manfrin, J., Campagnolo, M. A., Zimmermann, J., Conradi Junior, E., & Bertoldo, D. C. (2021). Distribution of heavy metals in sediments and their bioaccumulation on benthic macroinvertebrates in a tropical Brazilian watershed.Ecological Engineering, 163, 106194. https://doi.org/10.1016/j.ecoleng.2021.106194

SECRETARÍA DE SALUD. NOM-242-SSA1-2009. Productos y servicios. Productos de la pesca frescos, refrigerados, congelados y procesados. Especificaciones sanitarias y métodos de prueba. Diario Oficial de la Federación, México, 10 de febrero de 2011.

Servicio Geológico Mexicano. (2020). Panorama Minero de los Estados. En Panorma Minero de los Estados (pp. 1–62). México. [Online]. http://www.sgm.gob.mx/pdfs/DURANGO.pdf

Subotić, S., Spasić, S., Višnjić-Jeftić, Ž., Hegediš, A., Krpo-Ćetković, J., Mićković, B., Skoriç, S., Lenhardt, M. (2013). Heavy metal and trace element bioaccumulation in target tissues of four edible fish species from the Danube River (Serbia). Ecotoxicology and Environmental Safety, 98(In press), 196–202. https://doi.org/10.1016/j.ecoenv.2013.08.020

Töre, Y., Ustaoğlu, F., Tepe, Y., & Kalipci, E. (2021). Levels of toxic metals in edible fish species of the Tigris River (Turkey); Threat to public health. Ecological Indicators, 123. https://doi.org/10.1016/j.ecolind.2021.107361

Torres, Z., Mora, M. A., Taylor, R. J. & Alvarez-Bernal, D. (2016). Tracking Metal Pollution in Lake Chapala: Concentrations in Water, Sediments, and Fish. Bulletin of Environmental Contamination and Toxicology, 97(3), 418–424. https://doi.org/10.1007/S00128-016-1892-6

USEPA. (2000). Guidance for assessing chemical contaminant data for use in fish advisories. EPA 823-B-00-008. November. Third edition. Risk assessment and fish consumption limits, vol. 2. Washington, DC: Office of Water.

Varol, M., & Sünbül, M. R. (2018). Multiple approaches to assess human health risks from carcinogenic and non-carcinogenic metals via consumption of five fish species from a large reservoir in Turkey. Science of the Total Environment, 633, 684–694. https://doi.org/10.1016/j.scitotenv.2018.03.218

Velusamy, A., Satheesh Kumar, P., Ram, A., & Chinnadurai, S. (2014). Bioaccumulation of heavy metals in commercially important marine fishes from Mumbai Harbor, India. Marine Pollution Bulletin, 81(1), 218–224. https://doi.org/10.1016/j.marpolbul.2014.01.049

Vicencio-de la Rosa, M. G. (2004). Calidad del agua en el Río Tunal. Repositorio Digital IPN. Durango, México. [Online]. http://repositoriodigital.ipn.mx/handle/123456789/15851

Xu, C., Yan, H., & Zhang, S. (2021). Heavy metal enrichment and health risk assessment of karst cave fish in Libo, Guizhou, China. Alexandria Engineering Journal, 60(1), 1885–1896. https://doi.org/10.1016/j.aej.2020.11.036

Yang, L., Guo, M., Xin, C., Ren, X., Wang, L., & Liu, Y. (2021). Comparison of trace element concentrations in freshwater fish and marine fish consumed in Shandong Province, China, and their potential risks to human health. Marine Pollution Bulletin, 165(18877), 112114. https://doi.org/10.1016/j.marpolbul.2021.112114

Yi, Y. J., & Zhang, S. H. (2012). Heavy metal (Cd, Cr, Cu, Hg, Pb, Zn) concentrations in seven fish species in relation to fish size and location along the Yangtze River. Environmental Science and Pollution Research, 19(9), 3989–3996. https://doi.org/10.1007/s11356-012-0840-1

Zhang, J. L., Fang, L., Song, J. Y., Luo, X., Fu, K. D., & Chen, L. Q. (2019). Health risk assessment of heavy metals in Cyprinus carpio (Cyprinidae) from the upper Mekong River. Environmental Science and Pollution Research, 26(10), 9490–9499. https://doi.org/10.1007/s11356-019-04291-2