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Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819)

Year 2017, Volume: 17 Issue: 1, 93 - 101, 27.02.2017
https://doi.org/10.17693/yunusae.v17i26557.282169

Abstract

Bisphenol-A
(BPA), is one of the most important industrial chemicals synthesized for
diverse applications. The environmental concentrations of BPA are at high risk
level due to use widely in many fields of industry according to the latest
studies.
However, less knowledge has been founded to the
toxicity of BPA. No studies have been founded genotoxicity of BPA to the
Mytilus galloprovincialis
(Lamarck 1819). The Micronucleus test is a biomarker of
mutagenicity/genotoxicty used for determining changes in DNA fragments exposure
to pollution and chemicals. For this purpose, frequency of MN and other nuclear
abnormalities (binucleated, nuclear buds, fragmented/apoptotic cells) was
analyzed. Increasing concentrations of BPA (12.5-100 µg-BPA/L) were tested for
determination of MN under semi-static conditions in the laboratory. According
to the results of the study, it is revealed that all concentration of BPA
increases the genotoxic damage, and elevates the micronucleus frequency from ‰
11, 33 to ‰ 37, 35 Thus, it was tried to determine whether BPA affected the
cells of
M. galloprovincialis
(Lamarck 1819) at the level of DNA through to the MN assay. 

References

  • Alexander, H. C., Dill, D. C., Smith, L. W., Guiney, P. D and Dorn, P. B. 1988. Bisphenol- A: acute aquatic toxicity. Environmental Toxicology and Chemistry. 7: 19-26.
  • Anonymous, 2003. Endocrine/Estrogen Letter. BPA Special Report, 9(2-3), 174-175.
  • Anonymous, 2016. DMSO 67/548/EEC, http: // ec. europa. eu/ environment/ archives/ dansub/ pdfs/ annex1_ en. pdf. Directive 67/548/EEC, 2004, Directive 67/548/EEC, 2004. Annex V. Part B.41—Phototoxicity—In vitro 3T3 NRU phototoxicity test.
  • Arslan, O. C. and Parlak, H. 2008. Effects of bisphenol-a on the embryological development of the sea urchin Arbacia Lixula (Linnaeus, 1758). Fresenius Environmental Bulletin, 17(2), 127.
  • Arslan, O. C., Boyacıoğlu, M., Parlak, H., Katalay, S. and Karaaslan, M. A. 2015. Assessment of micronuclei induction in peripheral blood and gill cells of some fish species from Aliağa Bay Turkey. Mar. Pollut. Bull. 15;94 (1-2): 48-54. doi: 10.1016/j.marpolbul.2015.03.018.
  • Arslan, O. C., Parlak, H., Katalay, S., Boyacioglu, M., Karaaslan, M. A. and Guner, H. 2010. Detecting micronuclei frequency in some aquatic organisms for monitoring pollution of Izmir Bay (Western Turkey) Environ Monit Assess (2010)165:55–66 DOI 10.1007/s10661-009-0926-5.
  • Barón, E., Dissanayake, A., Vilà-Cano, J., Crowther, C., Readman, J. W., Jha, A. N., Eljarrat, E. Barceló, D. 2016. Evaluation of the Genotoxic and Physiological Effects of Decabromodiphenyl Ether (BDE-209) and Dechlorane Plus (DP) Flame Retardants in Marine Mussels (Mytilus galloprovincialis). Environmental science & technology, 50(5), 2700-2708.
  • Baršienė, J., Šyvokienė, J. and Bjornstad, A. 2006. Induction of micronuclei and other nuclear abnormalities in mussels exposed to bisphenol A, diallyl phthalate and tetrabromodiphenyl ether-47. Aquatic toxicology, 78, S105-S108.
  • Bolognesi, C., Buschini, A., Branchi, E., Carboni, P., Furlini, M., Martino, A. and Rossi, C. 2004. Comet and micronucleus assays in zebra mussel cells for genotoxicity assessment of surface drinking water treated with three different disinfectants. Science of the Total Environment, 333(1), 127-136.
  • Bolognesi, C. and Fenech, M. 2012. Mussel micronucleus cytome assay. Nat. Protoc. 17: 1125–37. Makale içinde atıf yapılmamış
  • Bolognesi, C., Landini, E., Roggieri, P., Fabbri, R. and Viarengo, A. 1999. Genotoxicity biomarkers in the assessment of heavy metal effects in mussels: experimental studies. Environ. Mol. Mutagen., 33, 287–292.
  • Bolognesi, C., Perrone, E., Roggieri, P. and Sciutto, A. 2006. Bioindicators in monitoring long term genotoxic impact of oil spill: Haven case study. Marine Environmental Research, 62, 287–291. doi:10.1016/j.marenvres.2006.04.047. Makale içinde atıf yapılmamış
  • Colborn, T., Dumanoski, D. and Myers, J. P. 1996. Our stolen future. New York: Dutton Signet.
  • Cousins, I. T., Staples, C. A., Klecka, G. M. and Mackay, D. 2002. A Multimedia Assessment of the Environmental Fate of Bisphenol A, Human and Ecological Risk Asses 8: 1107-1135
  • Cunha, I., Hoff, P., Van de Vijver, K., Guilhermino, L., Esmans, E.De Coen, W. 2005. Baseline study of perfluorooctane sulfonate occurrence in mussels, Mytilus galloprovincialis, from north-central Portuguese estuaries. Marine pollution bulletin, 50(10), 1128-1132.
  • Dolcetti, L. and Venier, P. 2002. Susceptibility to genetic damage and cell types in Mediterranean mussels. Mar. Environ. Res. 54, 487–491.
  • Fenech, M. 2000. The in vitro micronucleus technique. Mutation Research 455,81–95. doi:10.1016/S0027- 5107(00)00065-8.
  • Hando, R., Abo, M. and Okubo, A. 2003. Determination of alkylphenols and bisphenol A in sea environment by GC/MS. BUNSEKI KAGAKU Abstracts 52: 9, http://www.jsac.or.jp/bunka/0309a.html. Bunseki Kagaku 52.9 (2003): 695-699.
  • Harvey, J. S., Lyons, B. P., Page, T. S., Stewart, C. and Parry, J. M. 1999. An assessment of the genotoxic impact of the sea empress oil spill by the measurement of DNA adducts levels in selected invertebrate and vertebrate species. Mutation Research 441, 103–114.
  • IUPAC. 2003. Endocrine active industrial chemicals in the environment Pure and Applied Chemistry, 75, 1895–1904.
  • Jĝrgensen, C. B. (1990). Bivalve filter feeding: hydrodynamics, bioenergetics, physiology and ecology. Olsen & Olsen.
  • Liu, C., Chang, V. W., Gin, K. Y. and Nguyen, V. T. 2014. Genotoxicity of perfluorinated chemicals (PFCs) to the green mussel (Perna viridis). Science of the Total Environment, 487, 117-122.
  • Lyons, G. 2000. Bisphenol A: A Known Endocrine Disruptor. A WWF European Toxics Programme Report, 37.
  • Negreiros, L. A., Silva, B. F., Paulino, M. G., Fernandes, M. N. and Chippari-Gomes, A. R. 2011. Effects of hypoxia and petroleum on the genotoxic and morphological parameters of Hippocampus reidi. Comput. Biochem. Physiol. C 153, 408–414.
  • OECD. 2004. Oecd Guıdelıne For The Testıng Of Chemıcals Draft Proposal For A New Guıdelıne In Vitro Micronucleus Test, 487.
  • Pavlica, M. and Klobucar, G. I. V. M. 2000. Vetma, N. Erben, R. Papes, D. Detection of micronuclei in haemocytes of zebra mussel and great ramshorn snail exposed to pentachlorophenol, Mutat. Res. 465: 145–150.
  • Schmid, W. 1975. The micronucleus test. Mutation Research, 31, 9–15.
  • Staples, C. A., Dome, P. B., Klecka, G. M., Oblock, S. T., & Harris, L. R. (1998). A review of the environmental fate, effects, and exposures of bisphenol A. Chemosphere, 36(10), 2149-2173.
  • Siu, W., H. Mak, E., Cao, J., Luca‐Abbott, D., Sharon, B., Richardson, B. J. and Lam, P. K. 2004. Micronucleus induction in gill cells of green‐lipped mussels (Perna viridis) exposed to mixtures of polycyclic aromatic hydrocarbons and chlorinated pesticides. Environmental toxicology and chemistry, Environmental toxicology and chemistry 23.5 1317-1325.
  • Villela, İ. V., Marques De Oliveira, I., Silva, J. and Henriques, J. A. P. 2006. DNA Damage And Repair İn Hemolymph Cells Of Golden Mussel (Limnoperna Fortunei) Exposed To Environmental Contaminants. Mutation Research (605:78–86.
  • West, R.J., Goodwin, P.A., Klecka, G.M. 2001. Assessment of the Ready Biodegradability of Bisphenol A, Bulletin Environmetal Contamination and Toxicology, 67:106–112.
  • Wóznicki, P., Lewandowska, R., Brzuzan, P., Ziomek, E. and Bardega, R. 2004. The level of DNA damage and the frequency of micronuclei in hemolymph of fresh water mussels Anodonta woodiana exposed to Benzo[a] pyrene. Acta Toxicologa, 12(1), 41–45.
  • Yeru, H., Junhi, S., Li, Z., Yian, D. and Hao, O. 2001. Environmental Monitoring and Governance in the East Asian Coastal Hydrosphere, Endocrine Disrupter Compunds (EDCs) in water 2001 Report, China, http://lanbase.hq.unu.edu/ Countryreports/china/alkylphenols.html

Bisfenol- A’ nın Mytilus galloprovincialis (Lamarck 1819) Üzerine Sitotoksik ve Genotoksik Etkileri

Year 2017, Volume: 17 Issue: 1, 93 - 101, 27.02.2017
https://doi.org/10.17693/yunusae.v17i26557.282169

Abstract

Bisfenol-A (BPA), çeşitli uygulamalar için
sentezlenen önemli endüstriyel kimyasallardan biridir. En son çalışmalara göre
sanayinin birçok alanında yaygın kullanımı nedeniyle BPA’ nın çevresel
konsantrasyonları yüksek risk düzeyinde bulunmaktadır. BPA’ nın
Mytilus galloprovincialis
(Lamarck 1819) üzerine genotoksisitesinin belirlendiği çalışma
bulunmamaktadır.
Mikronukleus
denemeleri, interfaz hücrelerin sitoplazmasında ki DNA parçacıklarının
değişimine neden olan kimyasalların ve kirliliğin belirlenmesinde kullanılan
mutajenite test sistemidir. Bu amaçla, micronukleus (MN) ve diğer çekirdek
anormallikleri (nuklear bud, binukleus, apoptatcik çekirdek) incelenmiştir.
Midyeler BPA’ nın
(12.5-100 µg-BPA/L) artan konsantrasyonları
semi-statik labaratuvar şartlarında maruz bırakılmışlardır. Çalışmanın
sonuçlarına göre; BPA’ nın tüm konsantrasyonları genotoxic hasarı arttırmakta
ve ‰ 11, 33 to ‰ 37, 35 MN oluşumuna neden olduğu gözlenmiştir. Bu nedenle, MN
testi ile BPA’ nın DNA düzeyinde,
M. galloprovincialis'
in hücreleri etkileyip etkilemediğini belirlenmeye çalışılmıştır.

References

  • Alexander, H. C., Dill, D. C., Smith, L. W., Guiney, P. D and Dorn, P. B. 1988. Bisphenol- A: acute aquatic toxicity. Environmental Toxicology and Chemistry. 7: 19-26.
  • Anonymous, 2003. Endocrine/Estrogen Letter. BPA Special Report, 9(2-3), 174-175.
  • Anonymous, 2016. DMSO 67/548/EEC, http: // ec. europa. eu/ environment/ archives/ dansub/ pdfs/ annex1_ en. pdf. Directive 67/548/EEC, 2004, Directive 67/548/EEC, 2004. Annex V. Part B.41—Phototoxicity—In vitro 3T3 NRU phototoxicity test.
  • Arslan, O. C. and Parlak, H. 2008. Effects of bisphenol-a on the embryological development of the sea urchin Arbacia Lixula (Linnaeus, 1758). Fresenius Environmental Bulletin, 17(2), 127.
  • Arslan, O. C., Boyacıoğlu, M., Parlak, H., Katalay, S. and Karaaslan, M. A. 2015. Assessment of micronuclei induction in peripheral blood and gill cells of some fish species from Aliağa Bay Turkey. Mar. Pollut. Bull. 15;94 (1-2): 48-54. doi: 10.1016/j.marpolbul.2015.03.018.
  • Arslan, O. C., Parlak, H., Katalay, S., Boyacioglu, M., Karaaslan, M. A. and Guner, H. 2010. Detecting micronuclei frequency in some aquatic organisms for monitoring pollution of Izmir Bay (Western Turkey) Environ Monit Assess (2010)165:55–66 DOI 10.1007/s10661-009-0926-5.
  • Barón, E., Dissanayake, A., Vilà-Cano, J., Crowther, C., Readman, J. W., Jha, A. N., Eljarrat, E. Barceló, D. 2016. Evaluation of the Genotoxic and Physiological Effects of Decabromodiphenyl Ether (BDE-209) and Dechlorane Plus (DP) Flame Retardants in Marine Mussels (Mytilus galloprovincialis). Environmental science & technology, 50(5), 2700-2708.
  • Baršienė, J., Šyvokienė, J. and Bjornstad, A. 2006. Induction of micronuclei and other nuclear abnormalities in mussels exposed to bisphenol A, diallyl phthalate and tetrabromodiphenyl ether-47. Aquatic toxicology, 78, S105-S108.
  • Bolognesi, C., Buschini, A., Branchi, E., Carboni, P., Furlini, M., Martino, A. and Rossi, C. 2004. Comet and micronucleus assays in zebra mussel cells for genotoxicity assessment of surface drinking water treated with three different disinfectants. Science of the Total Environment, 333(1), 127-136.
  • Bolognesi, C. and Fenech, M. 2012. Mussel micronucleus cytome assay. Nat. Protoc. 17: 1125–37. Makale içinde atıf yapılmamış
  • Bolognesi, C., Landini, E., Roggieri, P., Fabbri, R. and Viarengo, A. 1999. Genotoxicity biomarkers in the assessment of heavy metal effects in mussels: experimental studies. Environ. Mol. Mutagen., 33, 287–292.
  • Bolognesi, C., Perrone, E., Roggieri, P. and Sciutto, A. 2006. Bioindicators in monitoring long term genotoxic impact of oil spill: Haven case study. Marine Environmental Research, 62, 287–291. doi:10.1016/j.marenvres.2006.04.047. Makale içinde atıf yapılmamış
  • Colborn, T., Dumanoski, D. and Myers, J. P. 1996. Our stolen future. New York: Dutton Signet.
  • Cousins, I. T., Staples, C. A., Klecka, G. M. and Mackay, D. 2002. A Multimedia Assessment of the Environmental Fate of Bisphenol A, Human and Ecological Risk Asses 8: 1107-1135
  • Cunha, I., Hoff, P., Van de Vijver, K., Guilhermino, L., Esmans, E.De Coen, W. 2005. Baseline study of perfluorooctane sulfonate occurrence in mussels, Mytilus galloprovincialis, from north-central Portuguese estuaries. Marine pollution bulletin, 50(10), 1128-1132.
  • Dolcetti, L. and Venier, P. 2002. Susceptibility to genetic damage and cell types in Mediterranean mussels. Mar. Environ. Res. 54, 487–491.
  • Fenech, M. 2000. The in vitro micronucleus technique. Mutation Research 455,81–95. doi:10.1016/S0027- 5107(00)00065-8.
  • Hando, R., Abo, M. and Okubo, A. 2003. Determination of alkylphenols and bisphenol A in sea environment by GC/MS. BUNSEKI KAGAKU Abstracts 52: 9, http://www.jsac.or.jp/bunka/0309a.html. Bunseki Kagaku 52.9 (2003): 695-699.
  • Harvey, J. S., Lyons, B. P., Page, T. S., Stewart, C. and Parry, J. M. 1999. An assessment of the genotoxic impact of the sea empress oil spill by the measurement of DNA adducts levels in selected invertebrate and vertebrate species. Mutation Research 441, 103–114.
  • IUPAC. 2003. Endocrine active industrial chemicals in the environment Pure and Applied Chemistry, 75, 1895–1904.
  • Jĝrgensen, C. B. (1990). Bivalve filter feeding: hydrodynamics, bioenergetics, physiology and ecology. Olsen & Olsen.
  • Liu, C., Chang, V. W., Gin, K. Y. and Nguyen, V. T. 2014. Genotoxicity of perfluorinated chemicals (PFCs) to the green mussel (Perna viridis). Science of the Total Environment, 487, 117-122.
  • Lyons, G. 2000. Bisphenol A: A Known Endocrine Disruptor. A WWF European Toxics Programme Report, 37.
  • Negreiros, L. A., Silva, B. F., Paulino, M. G., Fernandes, M. N. and Chippari-Gomes, A. R. 2011. Effects of hypoxia and petroleum on the genotoxic and morphological parameters of Hippocampus reidi. Comput. Biochem. Physiol. C 153, 408–414.
  • OECD. 2004. Oecd Guıdelıne For The Testıng Of Chemıcals Draft Proposal For A New Guıdelıne In Vitro Micronucleus Test, 487.
  • Pavlica, M. and Klobucar, G. I. V. M. 2000. Vetma, N. Erben, R. Papes, D. Detection of micronuclei in haemocytes of zebra mussel and great ramshorn snail exposed to pentachlorophenol, Mutat. Res. 465: 145–150.
  • Schmid, W. 1975. The micronucleus test. Mutation Research, 31, 9–15.
  • Staples, C. A., Dome, P. B., Klecka, G. M., Oblock, S. T., & Harris, L. R. (1998). A review of the environmental fate, effects, and exposures of bisphenol A. Chemosphere, 36(10), 2149-2173.
  • Siu, W., H. Mak, E., Cao, J., Luca‐Abbott, D., Sharon, B., Richardson, B. J. and Lam, P. K. 2004. Micronucleus induction in gill cells of green‐lipped mussels (Perna viridis) exposed to mixtures of polycyclic aromatic hydrocarbons and chlorinated pesticides. Environmental toxicology and chemistry, Environmental toxicology and chemistry 23.5 1317-1325.
  • Villela, İ. V., Marques De Oliveira, I., Silva, J. and Henriques, J. A. P. 2006. DNA Damage And Repair İn Hemolymph Cells Of Golden Mussel (Limnoperna Fortunei) Exposed To Environmental Contaminants. Mutation Research (605:78–86.
  • West, R.J., Goodwin, P.A., Klecka, G.M. 2001. Assessment of the Ready Biodegradability of Bisphenol A, Bulletin Environmetal Contamination and Toxicology, 67:106–112.
  • Wóznicki, P., Lewandowska, R., Brzuzan, P., Ziomek, E. and Bardega, R. 2004. The level of DNA damage and the frequency of micronuclei in hemolymph of fresh water mussels Anodonta woodiana exposed to Benzo[a] pyrene. Acta Toxicologa, 12(1), 41–45.
  • Yeru, H., Junhi, S., Li, Z., Yian, D. and Hao, O. 2001. Environmental Monitoring and Governance in the East Asian Coastal Hydrosphere, Endocrine Disrupter Compunds (EDCs) in water 2001 Report, China, http://lanbase.hq.unu.edu/ Countryreports/china/alkylphenols.html
There are 33 citations in total.

Details

Journal Section Research Articles
Authors

Özlem Çakal Arslan

Hatice Parlak

Muhammet Ali Karaaslan This is me

Meltem Boyacıoğlu

Publication Date February 27, 2017
Published in Issue Year 2017 Volume: 17 Issue: 1

Cite

APA Çakal Arslan, Ö., Parlak, H., Karaaslan, M. A., Boyacıoğlu, M. (2017). Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819). Aquaculture Studies, 17(1), 93-101. https://doi.org/10.17693/yunusae.v17i26557.282169
AMA Çakal Arslan Ö, Parlak H, Karaaslan MA, Boyacıoğlu M. Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819). AquaST. February 2017;17(1):93-101. doi:10.17693/yunusae.v17i26557.282169
Chicago Çakal Arslan, Özlem, Hatice Parlak, Muhammet Ali Karaaslan, and Meltem Boyacıoğlu. “Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819)”. Aquaculture Studies 17, no. 1 (February 2017): 93-101. https://doi.org/10.17693/yunusae.v17i26557.282169.
EndNote Çakal Arslan Ö, Parlak H, Karaaslan MA, Boyacıoğlu M (February 1, 2017) Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819). Aquaculture Studies 17 1 93–101.
IEEE Ö. Çakal Arslan, H. Parlak, M. A. Karaaslan, and M. Boyacıoğlu, “Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819)”, AquaST, vol. 17, no. 1, pp. 93–101, 2017, doi: 10.17693/yunusae.v17i26557.282169.
ISNAD Çakal Arslan, Özlem et al. “Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819)”. Aquaculture Studies 17/1 (February 2017), 93-101. https://doi.org/10.17693/yunusae.v17i26557.282169.
JAMA Çakal Arslan Ö, Parlak H, Karaaslan MA, Boyacıoğlu M. Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819). AquaST. 2017;17:93–101.
MLA Çakal Arslan, Özlem et al. “Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819)”. Aquaculture Studies, vol. 17, no. 1, 2017, pp. 93-101, doi:10.17693/yunusae.v17i26557.282169.
Vancouver Çakal Arslan Ö, Parlak H, Karaaslan MA, Boyacıoğlu M. Cytotoxic and Cytogenetic Effects of Bisphenol-A in Mytilus Galloprovincialis (Lamarck 1819). AquaST. 2017;17(1):93-101.