Genetic damage induced by lead chloride in different tissues of fresh water climbing perch Anabas testudineus (Bloch)

Md. Kawser Ahmed1, Elora Parvin2, Murtaza Arif3, Monirul Islam2, Mosammat Salma Akter2, Mohammad Rezwan Khan2
1University of Dhaka
2Department of Fisheries, University of Dhaka, Dhaka, Bangladesh
3Department of Biochemistry and Molecular Biology, University of Dhaka, Dhaka,Bangladesh

Tóm tắt

Từ khóa


Tài liệu tham khảo

Ahmed, M. K., Mehedi, M. Y., Huque, M. R., & Ahmed, F. (2002). Heavy metal concentration in water and sediment of sundarbans mangrove forest, Bangladesh. Asian Journal of Microbiology, Biotechnology & Environmental Sciences, 4(2), 171–179.

Ahmed, M. K., Mehedi, M. Y., Haque, M. R., & Ghosh, R. K. (2003). Concentration of heavy metals in two upstream rivers sediment of the sundarban mangrove forest. Asian Journal of Microbiology, Biotechnology & Environmental Sciences, 5(1), 41–47.

Ahmed, M. K., Akhand, A. A., Hasan, M., Islam, M. M., & Hasan, M. A. (2008). Toxicity of arsenic (sodium arsenite) to fresh water spotted snakehead (Channa punctatus Bloch and Schneiber, 1801) on cellular death and DNA content. American-Eurasian Journal Agricultural and Environmental Sciences, 4(1), 18–22.

Ahmed, M. K., Biswas, D. R., Islam, M. M., Akter, M. S., Kazi, A. I., & Sultana, G. N. N. (2009). Heavy metal concentrations in different organs of fishes of the river Meghna, Bangladesh. Terrestrial and Aquatic Environmental Toxicology, 3(1), 28–32.

Ahmed, M. K., Bhowmik, A. C., Rahman, S., Haque, M. R., & Hasan, M. M. (2010a). Heavy metal concentrations in water, sediments and their bioaccumulations in fishes and oyster in Shitalakhya River. Asian Journal of Water, Environment and Pollution, 7(1), 77–90.

Ahmed, M. K., Parveen, E., Arif, M., Akter, M. S., Khan, M. S., & Islam, M. M. (2010b). Measurements of genotoxic potential of cadmium in different tissues of fresh water climbing perch Anabas testudineus (Bloch), using the comet assay. Environmental Toxicology and Phermacology, 30, 80–84.

Akter, M. S., Ahmed, M. K., Akhand, A. A., Ahsan, N., Islam, M. M., & Khan, M. S. (2009). Arsenic and mercury induce death of Anabas testudineus (Bloch) involving fragmentation of chromosomal DNA. Terrestrial and Aquatic Environmental Toxicology, 3(1), 42–47.

Ali, D., Nagpure, N. S., Kumar, S., Kumar, R., & Kushwaha, B. (2008). Geontoxicity assessment of acute expousure of chlorpyrifos to freshwater fish Channa punctatus (Bloch) using micronucleus assay and alkaline single-cell gel electrophoresis. Chemosphere, 71, 1823–1831. doi: 10.1016/j.chemosphere.2008.02.007 .

Anderson, D., Yu, T. W., Philips, B. J., & Schmerzer, P. (1994). The effect of various antioxidants and other modifying agents on oxygen-radical-generated DNA damage in human lymphocytes in the comet assay. Mutation Research, 307, 261–271.

APHA, A.W.W.A., W.P.C.F. (1998). Standard methods for examination of water and wastewater (20th ed). New York: American Public Health Association.

ATSDR/EPA Priority List for (2001). Top 20 hazardous substances, agency for toxic substances and disease registry, US Department of Health and Human Services, 2001.

Bennett, R. O., & Dooley, J. K. (1982). Copper uptake by two sympatric species of killi fish Fundulus heteroclitus (L.) and F. majalis (Walbaum). Journal of Fish Biology, 21, 381–398.

Bonacker, D., Stoiber, T., Bohm, K. J., Prots, I., Wang, M., Unger, E., et al. (2005). Genotoxicity of inorganic lead salts and disturbance of microtubule function. Environmental and Molecular Mutagenesis, 45(4), 346–353.

Cavas, T. (2008). In vivo genotoxicity of mercury chloride and lead acetate: Micronucleus test on acridine orange statined fish cells. Food and Chemical Toxicology, 46, 352–358.

Cestari, M. M., Lemos, P. M. M., Ribeiro, C. A. D., Costa, J., Pelletier, E., Ferraro, M. V. M., et al. (2004). Genetic damage induced by trophic doses of lead in the neotropical fish Hoplias malabaricus (Characiformes, Erythrinidae) as revealed by the comet assay and chromosomal aberrations. Genetics and Molecular Biology, 27, 270–274.

Fairbairn, D. W., Olive, P. L., & O’Neill, K. L. (1995). The comet assay: A comprehensive review. Mutation Research, 399, 37–59.

Ferraro, M. V. M., Fenocchio, A. S., Mantovani, M. S., Ribeiro, C. D., & Cestari, M. M. (2004). Mutagenic effects of tributyltin and inorganic lead (Pb II) on the fish H. malabaricus as evaluated using the comet assay and the piscine micronucleus and chromosome aberration tests. Genetics and Molecular Biology, 27, 103–107.

Frascasso, M. R., Perbellini, L., Solda, S., Talamini, G., & Franceschetti, P. (2002). Lead induced DNA strand breaks in lymphocytes of exposed workers: Role of reactive oxygen species and protein kinase. C Mutation Research, 515, 159–169.

Frenzilli, G., Nigro, M., Lyons, B. P. (2009). The Comet assay for the evaluation of genotoxic impact in aquatic environments. Mutatation Research, 681, 80–92.

Godwin, A. H. (2001). The biological chemistry of lead. Current Opinion in Chemical Biology, 5, 223–227.

Goldwater, L. J. (1971). Mercury in the environment. Scientific American, 224(5), 15–21.

Gonzalez, H. O., Roling, J. A., Baldwin, W. S., & Bain, L. J. (2006). Physiological changes and differential gene expression in mummichogs (Fundulus heteroclitus) exposed to arsenic. Aquatic Toxicology, 77, 43–52.

Haque, M. R., Ahmed, M. K., Mannaf, M. A., & Islam, M. M. (2006). Seasonal variation of heavy metals concentrations in Gudusia chapra inhabiting the Sundarban mangrove forest. The Journal NOAMI, 23(1), 1–21.

Iliopoulou-Georgudaki, J., & Kotsanis, N. (2001). Toxic effects of cadmium and mercury in rainbow trout (Oncorhynchus mykiss): A short-term bioassay. Bulletin of Environmental Contamination and Toxicology, 66, 77–85.

Jennette, K. W. (1981). The role of metals in carcinogenesis: Biochemistry and metabolism. Environmental Health Perspectives, 40, 231–233.

Johnson, F. M. (1998). The genetic effects of environmental lead. Mutation Research, 410, 123–140.

Kilemade, M. F., Hartl, M. G. J., Sheehan, D., Mothersill, C., Van Pelt, F. N. A. M., O’Halloran, J., et al. (2004). Genotoxicity of field collected inter-tidal sediments from Cork Harbor, Ireland, to juvenile trubot (Scophthalmus maximus L.) as measured by the comet assay. Environmental and Molecular Mutation, 44, 56–64.

Klaude, M., Eriksson, S., Nygren, J., & Ahnstrom, G. (1996). The comet assay: Mechanisms and technical considerations. Mutation Research, 363, 89–96.

Konca, K., Lankoff, A., Banasik, A., Lisowska, H., Kuszewski, T., Gozdz, S., et al. (2003). A cross-platform public domain PC image-analysis program for the comet assay. Mutation Research/Genetic Toxicology and Environmental Mutagenesis, 53, 15–20.

Lee, R. F., & Steinert, S. (2003). Use of the single cell gel electrophoresis/ comet assay for detecting DNA damage in aquatic (marine and freshwater) animals. Mutation Research, 544, 43–64.

Lodhi, H. S., Khan, M. A., Verma, R. S., & Sharma, U. D. (2006). Acute toxicity of copper sulphate to fresh water prawns. Journal of Environmental Biology, 27(3), 585–588.

Masuda, S., Deguchi, Y., Masuda, Y., Watanabe, T., Nukaya, H., Terao, Y., et al. (2004). Genotoxicity micronucleus test and the comet assay of 2-[2-(acetylamino)-4-[bis(2-hydroxyethyl)amino]-5-methoxyphenyl]-5-amino-7-bromo-4-chloro- 2H-benzotriazole (PBTA-6) and 4-amino-3,30-dichloro-5,40 -dinitro-biphenyl (ADDB) in goldfish (Carassius auratus) using the micronu- cleus test and the comet assay. Mutation Research, 560, 33–40.

Medina, M., Correa, J. C., & Barata, C. (2007). Micro-evolution due to pollution: Possible consequences for ecosystem responses to toxic stress. Chemosphere, 67, 2105–2114.

Mitchelmore, C. L., & Chipman, J. K. (1998). DNA strand breakage in aquatic organisms and the potential value of the comet assay in environmental monitoring. Mutation Research, 399, 135–147.

Osman, A. G. M., Mekkawy, I. A., Verreth, J., Wuertz, S., Kloas, W., & Kirschbaum, F. (2008). Monitoring of DNA breakage in embryounic stages of the African catfish Clarias gariepinus (Burchell, 1822) after exposure to lead nitrate using alkaline comet assay. Environmental Toxicology, 23, 679–687.

Parvin, E., Ahmed, M. K., Islam, M. M., Akter, M. S., & Kabir, M. A. (2010). Preliminary acute toxicity bioassays of lead and cadmium on fresh water climbing perch, Anabas testudineus (Bloch). Terrestrial and Aquatic Environmental Toxicology, 5(1), 55–58.

Rajaguru, P., Suba, S., Palanivel, M., & Kalaiselvi, K. (2003). Genotoxicity of a polluted river system measured using the alkaline comet assay on fish and earthworm tissues. Environmetal and Molecular Mutagenesis, 4, 85–91.

Russo, C., Rocco, L., Morescalchi, M. A., & Stingo, V. (2004). Assessment of environmental stress by the micronucleus test and the comet assay on the genome of teleost populations from two natural environments. Ecotoxicology and Environmental Safety, 57(2), 168–174.

Schnurstein, A., & Braunbeck, T. (2001). Tail moment versus thai length-Application of an in vitro version of the comet assay in biomonitoring for genotoxicity in native surface waters using primary hepatocytes and gill cells from zebrafish (Danio rerio). Ecotoxicology and Environmental Safety, 49, 187–196.

Sharma, R. K., & Agrawal, M. (2005). Biological effects of heavy metals An overview. Journal of Environmental Biology, 26(2), 301–313.

Singh, N. P., McCoy, M. T., Tice, R. R., & Schneider, E. L. (1988). A simple technique for quantitation of low levels of DNA damage in individual cells. Experimental Cell Research, 175, 184–191.

Snow, E. T. (1992). Metal carcinogenesis-Mechanistic implications. Pharmacology & Therapeutic, 53, 31–65.

Tice, R. R. (1995). The single cell gel/comet assay: A microgel electrophoretic technique for the detection of DNA damage and repair in individual cells. In D. H. Phillips & S. Venitt (Eds.), Environmental mutagenesis (pp. 315–339). Oxford: Bios.

Valverde, M., Trejo, C., & Rojas, E. (2001). Is the capacity of lead acetate and cadmium chloride to induce genotoxic damage due to direct DNA-metal interaction? Mutagenesis, 16, 265–270.

Vanzella, T. P., Colus Martinez, C. B., & MS, I. (2007). Genotoxic and mutagenic effects of diesel oil water soluble fraction on a neotropical fish species. Mutation Research, 631, 36–43.

Yasuhara, S., Zhu, Y., Matsui, T., Tipirneni, N., Yasuhara, Y., Kaneki, M., et al. (2003). Comparison of comet assay, electron microscopy, and flow cytometry for detection of apoptosis. Journal of Histochemistry and Cytochemistry, 51, 873–885.