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Effects of Toxic and Essential Heavy Metals in Chelon auratus (Risso, 1810) Muscles on Human Health

Yıl 2025, Cilt: 10 Sayı: 6, 838 - 843
https://doi.org/10.35229/jaes.1766787

Öz

The purpose of the present study was to investigate the levels of toxic (Pb, Hg, Cd) and essential (Cu, Zn) heavy metals in the edible tissues of Chelon auratus (Risso, 1810) purchased from fish markets in Sinop in October, November, and December 2023. In the muscle tissue of the fish, essential metals were found at much higher concentrations than toxic ones. Among the three toxic metals, Pb had the highest concentration, while Cd had the lowest. The concentrations of toxic metals in C. auratus tissues were below the maximum acceptable limits; the target hazard quotient values for Hg, Cd, Cu, and Zn were below 1, and the risk index for Pb was 0.21. In conclusion, the golden grey mullet is considered safe for human consumption.

Kaynakça

  • Ameur, W. B., Annabi, A., Lahmar, S., & Marini, M. (2025). First assessment of heavy metals contamination and human health risk in Chelon auratus (Risso, 1810) from Tunisian aquatic ecosystems: Case of Bizerte Lagoon and Ghar El Melh Lagoon (Ramsar site). Regional Studies in Marine Science, 104472. DOI: 10.1016/j.rsma.2025.104472
  • Antović, I., Šuković, D., Andjelić, S., & Svrkota, N. (2019). Heavy metals and radionuclides in muscles of fish species in the South Adriatic- Montenegro. In RAP Conference Proceedings, Vol. 4, pp. 96-102.
  • Bakhshalizadeh, S., Mora-Medina, R., Fazio, F., Parrino, V., & Ayala-Soldado, N. (2022). Determination of the heavy metal bioaccumulation patterns in muscles of two species of mullets from the Southern Caspian Sea. Animals, 12(20), 2819. DOI: 10.3390/ani12202819
  • Bat, L., & Arıcı, E. (2018). Chapter 5. Heavy metal levels in fish, molluscs, and crustacea from Turkish seas and potential risk of human health. In: Holban AM, Grumezescu AM. (Eds.) Handbook of Food Bioengineering, Volume 13, Food Quality: Balancing Health and Disease. Elsevier, Academic Press, ISBN: 978-0-12-811442-1, pp. 159-196. DOI: 10.1016/B978-0-12-811442- 1.00005-5
  • Bat, L., Öztekin, H.C., & Üstün, F. (2015). Heavy metal levels in four commercial fishes caught in Sinop coasts of the Black Sea, Turkey. Turkish Journal of Fisheries and Aquatic Sciences, 15, 393-399. DOI: 10.4194/1303-2712-v15_2_25
  • Bat, L., Öztekin, A., Şahin, F., Arıcı., E., & Özsandıkçı, U. (2018a). An overview of the Black Sea Pollution in Turkey. MedFAR, 1(2), 67-86.
  • Bat, L., Şahin, F., & Öztekin, A. (2018b). Toxic metal amounts in Chelon auratus (Risso, 1810): a potential risk for consumer’s health. Journal of Aquaculture & Marine Biology, 7(6), 303-306. DOI: 10.15406/jamb.2018.07.00225
  • Bat, L., Şahin, F., Öztekin, A., & Arici, E. (2022). Toxic metals in seven commercial fish from the Southern Black Sea: Toxic risk assessment of eleven-year data between 2009 and 2019. Biological Trace Element Research, 200, 832- 843. DOI: 10.1007/s12011-021-02684-4
  • Çöteli, F.T. (2024). Su Ürünleri Ürün Raporu 2024 (Yayın No: 403). Tarım ve Orman Bakanlığı, Tarımsal Ekonomi ve Politika Geliştirme Enstitüsü (TEPGE). Accessed 26.09.2025
  • FAO/WHO. (2011). Food Standards Programme: Codex Committee on Contaminants in Foods, Fifth Session. Codex Alimentarius Commission, The Hague, The Netherlands.
  • Froese, R., & Pauly, D. (2025). FishBase. World Wide Web electronic publication. Retrieved April 11, 2025, from www.fishbase.org
  • Gurov, K.I., & Kotelyanets, E.A. (2022). Distribution of Trace Metals (Cr, Сu, Ni, Pb, Zn, Sr, Ti, Mn and Fе) in the Vertical Section of Bottom Sediments in the Sevastopol Bay (Black Sea). Physical Oceanography, 29(5), 491-507.
  • Kartal, D.U., Yeşilçiçek, T., & Kalaycı, F. (2025). Biological traits and population dynamics of Chelon auratus in the Southeastern Black Sea with a perspective on sustainable fisheries management. Scientific Reports, 15(1), 30333. DOI: 10.1038/s41598-025-15857-1
  • Kesiktaş, M., Yemişken, E., Yildiz, T., & Eryilmaz, L. (2020). Age, growth and reproduction of the golden grey mullet, Chelon auratus (Risso, 1810) in the Golden Horn Estuary, Istanbul. Journal of the Marine Biological Association of the United Kingdom, 100(6), 989-995. DOI: 10.1017/S0025315420000764
  • Malvandi, H. (2024). Metals concentration and human health risk assessment in some fish species from the southern Caspian Sea. Mar. Pollut. Bull., 202, 116336. DOI: 10.1016/j.marpolbul.2024.116336
  • Official Gazette of the Republic of Türkiye. (2002). Turkish Food Codex: Communiqué on Maximum Levels of Certain Contaminants in Foodstuffs (No. 2002/63). No. 24885, September 23, 2002.
  • Official Gazette of the Republic of Türkiye. (2011). Turkish Food Codex: Contaminants Regulation. No. 28157 (3rd repeat), December 29, 2011.
  • Official Journal of the European Union. (2006). Commission Regulation (EC) No. 1881/2006 of 19 December 2006 setting maximum levels for certain contaminants in foodstuffs. Official Journal of the European Union, L364, 5-24.
  • Oguz, T., & Besiktepe, S. (1999). Observations on the Rim Current structure, CIW formation and transport in the western Black Sea. Deep Sea Research Part I: Oceanographic Research Papers, 46(10), 1733-1753.
  • Pashtiri, Z.H., Karsidani, S.H., & Roohi, J.D. (2025). Investigating the amounts of some heavy metals in muscle and liver tissues of golden grey mullet (Chelon auratus) in the coasts of Guilan province. Journal of Animal Environment, 17(1), 81-86.
  • RAIS. (2024). The Risk Assessment Information System. University of Tennessee. Retrieved from https://rais.ornl.gov/index.html TÜİK. (2025). https://biruni.tuik.gov.tr/medas/?kn=97&locale=tr, Accessed 26.09.2025
  • USEPA. (2000). Risk-based concentration table. Philadelphia PA: United States Environmental Protection Agency, Washington D.C.
  • USEPA. (2001). Risk Assessment Guidance for Superfund: Volume III - Part A, Process for Conducting Probabilistic Risk Assessment EPA 540-R-02-002. US Environmental Protection Agency, Washington D.C.
  • USEPA. (2021). Regional Screening Levels (RSLs) - User's Guide November 2021 https://www.epa.gov/risk/regional-screening- levels-rsls-generic-tables
  • USEPA. (2024). Regional Screening Levels (RSLs) - Generic Tables: November 2024. Retrieved from https://www.epa.gov/risk/regional-screening- levels-rsls-generic-tables
  • WHO. (1996). Trace elements in human nutrition and health. 1. Trace elements - metabolism 2. Trace elements–standards 3. Nutrition 4. Nutritional requirements. NLM Classification: QU 130.
  • WHO. (2000). Evaluation of certain food additives and contaminants. Report of the Fifty-Third of the Joint FAO/WHO Expert Committee on Food Additives. Technical Report Series No. 896 Geneva.

Chelon auratus (Risso, 1810) Kaslarındaki Toksik ve Esansiyel Ağır Metallerin İnsan Sağlığı Üzerindeki Etkileri

Yıl 2025, Cilt: 10 Sayı: 6, 838 - 843
https://doi.org/10.35229/jaes.1766787

Öz

Bu çalışmanın amacı, 2023 yılı Ekim, Kasım ve Aralık aylarında Sinop’taki balık pazarlarından temin edilen Chelon auratus (Risso, 1810) türünün yenilebilir dokularındaki toksik (Pb, Hg, Cd) ve esansiyel (Cu, Zn) ağır metal düzeylerini araştırmaktır. Balık kas dokusunda, esansiyel metallerin derişimleri toksik metallere kıyasla çok daha yüksek bulunmuştur. Üç toksik metal arasında Pb en yüksek, Cd ise en düşük derişime sahip olmuştur. C. auratus dokularındaki toksik metal derişimleri, kabul edilebilir maksimum sınırların altında kalmış; Hg, Cd, Cu ve Zn için hedef tehlike katsayısı değerleri 1’in altında, Pb için ise risk indeksi 0,21 olarak belirlenmiştir. Sonuç olarak, altın kefal türü insan tüketimi için güvenli kabul edilmektedir.

Kaynakça

  • Ameur, W. B., Annabi, A., Lahmar, S., & Marini, M. (2025). First assessment of heavy metals contamination and human health risk in Chelon auratus (Risso, 1810) from Tunisian aquatic ecosystems: Case of Bizerte Lagoon and Ghar El Melh Lagoon (Ramsar site). Regional Studies in Marine Science, 104472. DOI: 10.1016/j.rsma.2025.104472
  • Antović, I., Šuković, D., Andjelić, S., & Svrkota, N. (2019). Heavy metals and radionuclides in muscles of fish species in the South Adriatic- Montenegro. In RAP Conference Proceedings, Vol. 4, pp. 96-102.
  • Bakhshalizadeh, S., Mora-Medina, R., Fazio, F., Parrino, V., & Ayala-Soldado, N. (2022). Determination of the heavy metal bioaccumulation patterns in muscles of two species of mullets from the Southern Caspian Sea. Animals, 12(20), 2819. DOI: 10.3390/ani12202819
  • Bat, L., & Arıcı, E. (2018). Chapter 5. Heavy metal levels in fish, molluscs, and crustacea from Turkish seas and potential risk of human health. In: Holban AM, Grumezescu AM. (Eds.) Handbook of Food Bioengineering, Volume 13, Food Quality: Balancing Health and Disease. Elsevier, Academic Press, ISBN: 978-0-12-811442-1, pp. 159-196. DOI: 10.1016/B978-0-12-811442- 1.00005-5
  • Bat, L., Öztekin, H.C., & Üstün, F. (2015). Heavy metal levels in four commercial fishes caught in Sinop coasts of the Black Sea, Turkey. Turkish Journal of Fisheries and Aquatic Sciences, 15, 393-399. DOI: 10.4194/1303-2712-v15_2_25
  • Bat, L., Öztekin, A., Şahin, F., Arıcı., E., & Özsandıkçı, U. (2018a). An overview of the Black Sea Pollution in Turkey. MedFAR, 1(2), 67-86.
  • Bat, L., Şahin, F., & Öztekin, A. (2018b). Toxic metal amounts in Chelon auratus (Risso, 1810): a potential risk for consumer’s health. Journal of Aquaculture & Marine Biology, 7(6), 303-306. DOI: 10.15406/jamb.2018.07.00225
  • Bat, L., Şahin, F., Öztekin, A., & Arici, E. (2022). Toxic metals in seven commercial fish from the Southern Black Sea: Toxic risk assessment of eleven-year data between 2009 and 2019. Biological Trace Element Research, 200, 832- 843. DOI: 10.1007/s12011-021-02684-4
  • Çöteli, F.T. (2024). Su Ürünleri Ürün Raporu 2024 (Yayın No: 403). Tarım ve Orman Bakanlığı, Tarımsal Ekonomi ve Politika Geliştirme Enstitüsü (TEPGE). Accessed 26.09.2025
  • FAO/WHO. (2011). Food Standards Programme: Codex Committee on Contaminants in Foods, Fifth Session. Codex Alimentarius Commission, The Hague, The Netherlands.
  • Froese, R., & Pauly, D. (2025). FishBase. World Wide Web electronic publication. Retrieved April 11, 2025, from www.fishbase.org
  • Gurov, K.I., & Kotelyanets, E.A. (2022). Distribution of Trace Metals (Cr, Сu, Ni, Pb, Zn, Sr, Ti, Mn and Fе) in the Vertical Section of Bottom Sediments in the Sevastopol Bay (Black Sea). Physical Oceanography, 29(5), 491-507.
  • Kartal, D.U., Yeşilçiçek, T., & Kalaycı, F. (2025). Biological traits and population dynamics of Chelon auratus in the Southeastern Black Sea with a perspective on sustainable fisheries management. Scientific Reports, 15(1), 30333. DOI: 10.1038/s41598-025-15857-1
  • Kesiktaş, M., Yemişken, E., Yildiz, T., & Eryilmaz, L. (2020). Age, growth and reproduction of the golden grey mullet, Chelon auratus (Risso, 1810) in the Golden Horn Estuary, Istanbul. Journal of the Marine Biological Association of the United Kingdom, 100(6), 989-995. DOI: 10.1017/S0025315420000764
  • Malvandi, H. (2024). Metals concentration and human health risk assessment in some fish species from the southern Caspian Sea. Mar. Pollut. Bull., 202, 116336. DOI: 10.1016/j.marpolbul.2024.116336
  • Official Gazette of the Republic of Türkiye. (2002). Turkish Food Codex: Communiqué on Maximum Levels of Certain Contaminants in Foodstuffs (No. 2002/63). No. 24885, September 23, 2002.
  • Official Gazette of the Republic of Türkiye. (2011). Turkish Food Codex: Contaminants Regulation. No. 28157 (3rd repeat), December 29, 2011.
  • Official Journal of the European Union. (2006). Commission Regulation (EC) No. 1881/2006 of 19 December 2006 setting maximum levels for certain contaminants in foodstuffs. Official Journal of the European Union, L364, 5-24.
  • Oguz, T., & Besiktepe, S. (1999). Observations on the Rim Current structure, CIW formation and transport in the western Black Sea. Deep Sea Research Part I: Oceanographic Research Papers, 46(10), 1733-1753.
  • Pashtiri, Z.H., Karsidani, S.H., & Roohi, J.D. (2025). Investigating the amounts of some heavy metals in muscle and liver tissues of golden grey mullet (Chelon auratus) in the coasts of Guilan province. Journal of Animal Environment, 17(1), 81-86.
  • RAIS. (2024). The Risk Assessment Information System. University of Tennessee. Retrieved from https://rais.ornl.gov/index.html TÜİK. (2025). https://biruni.tuik.gov.tr/medas/?kn=97&locale=tr, Accessed 26.09.2025
  • USEPA. (2000). Risk-based concentration table. Philadelphia PA: United States Environmental Protection Agency, Washington D.C.
  • USEPA. (2001). Risk Assessment Guidance for Superfund: Volume III - Part A, Process for Conducting Probabilistic Risk Assessment EPA 540-R-02-002. US Environmental Protection Agency, Washington D.C.
  • USEPA. (2021). Regional Screening Levels (RSLs) - User's Guide November 2021 https://www.epa.gov/risk/regional-screening- levels-rsls-generic-tables
  • USEPA. (2024). Regional Screening Levels (RSLs) - Generic Tables: November 2024. Retrieved from https://www.epa.gov/risk/regional-screening- levels-rsls-generic-tables
  • WHO. (1996). Trace elements in human nutrition and health. 1. Trace elements - metabolism 2. Trace elements–standards 3. Nutrition 4. Nutritional requirements. NLM Classification: QU 130.
  • WHO. (2000). Evaluation of certain food additives and contaminants. Report of the Fifty-Third of the Joint FAO/WHO Expert Committee on Food Additives. Technical Report Series No. 896 Geneva.
Toplam 27 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Kirlilik ve Kontaminasyon (Diğer)
Bölüm Makaleler
Yazarlar

Elif Arıcı 0000-0001-6359-9194

Levent Bat 0000-0002-2289-6691

Erken Görünüm Tarihi 15 Kasım 2025
Yayımlanma Tarihi 25 Kasım 2025
Gönderilme Tarihi 16 Ağustos 2025
Kabul Tarihi 27 Ekim 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 10 Sayı: 6

Kaynak Göster

APA Arıcı, E., & Bat, L. (2025). Effects of Toxic and Essential Heavy Metals in Chelon auratus (Risso, 1810) Muscles on Human Health. Journal of Anatolian Environmental and Animal Sciences, 10(6), 838-843. https://doi.org/10.35229/jaes.1766787