PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2014 | 04 |

Tytuł artykułu

Dose- and time-dependent micronucleus induction in peripheral erythrocytes of catfish, Heteropneustes fossilis (Bloch) by zinc

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
As far as the detection of metal genotoxicity in fish is concerned, micronucleus (MN) test is considered an extremely suitable measure. In this study, frequencies of micronucleated erythrocytes were scored in peripheral blood of catfish, Heteropneustes fossilis (bloch) after acute in-vivo exposure of zinc at different concentrations (5, 10 and 30 ppm) in the laboratory condition. These three concentrations of zinc were tested at different durations such as 24h, 48h, 72h and 96h respectively. Highly significant (P < 0.001) increased values were obtained for MN frequencies in the peripheral erythrocytes of exposed fishes compared to control groups of fishes. These results confirm that dose- and time-dependent micronucleation in the peripheral erythrocytes of fish after short-term exposure to zinc could provide valuable information regarding zinc containing effluent quality and also help in genetic biomonitoring with this test model. In this context safe concentration of zinc vis-a-vis genotoxicity range could be evaluated for future studies.

Wydawca

-

Rocznik

Tom

04

Opis fizyczny

p.36-43,fig.,ref.

Twórcy

  • Department of Environmental Science, University of Calcutta, 51/2 Hazra Road, Kolkata - 700 019, India
autor
  • Department of Environmental Science, University of Calcutta, 51/2 Hazra Road, Kolkata - 700 019, India
  • Department of Environmental Science, University of Calcutta, 51/2 Hazra Road, Kolkata - 700 019, India

Bibliografia

  • [1] Abbasi S. A., Soni R., Environ. Poll. 40 (1986) 37-51.
  • [2] Al-Sabti K., Metcalfe C. D., Mutat. Res. 343 (1995) 121-135.
  • [3] Arkhipchuk V. V., Garanko N. N., Ecotoxicol. Environ. Saf. 62 (2005) 42-52.
  • [4] Ayllon F., Garcia-Vazquez E., Mutat. Res. 467 (2000) 177-186.
  • [5] Bahari I., Noor F., Daud N. M., Mutat. Res. 313 (1994) 1-5.
  • [6] Benoit D. A., Halocombe G. W., J. Fish Biol. 13 (1979) 701-708.
  • [7] Brooks T. M., Meyer A. L., Dean B. J., Mutat. Res. 124 (1983) 129-143.
  • [8] Brungs W. A., Trans. Am. Fish. Soc. 98 (1969) 272-279.
  • [9] Castano A., Carbonell G., Carballo M., Fernandez C., Boleas S., Tarazona J. V., Ecotoxicol. Environ. Safe. 41 (1998) 29-35.
  • [10] Cavas T., Ergene-Gozukara S., Mutat. Res. 538 (2003) 81-91.
  • [11] Cavas T., Garanko N. N., Arkhipchuk V. V., Food Chem. Toxicol. 43 (2005) 569-574.
  • [12] De Floora S., Vigano L., D’Agostini F., Camoirano A., Bagnasco M., Bennicelli C., Melodia F., Arillo A. Mutat. Res. 319 (1993) 167-177.
  • [13] Fenech M., Drug Dis. Today 7 (2002): 1128-1137.
  • [14] Goel K. A., Gupta K., Indian J. Fish 32 (1985) 256-260.
  • [15] Grisolia C. K., Corderio C. M. T., Gen. Mol. Biol. 23 (2000) 235-239.
  • [16] Guidelines for Canadian Drinking water Quality. 1978. Ministry of National Health and Welfare, Canada.
  • [17] Gupta T., Talukder G., Sharma A., Biol. Trace Elem. Res. 30 (1991) 95-101.
  • [18] Indian Standards Institution. 1982, New Delhi, India.
  • [19] Hemalatha S., Banerjee, T. K., J. Freshwat. Biol. 5 (1993) 191-196.
  • [20] Hemalatha S., Banerjee T. K., Biol. Res. 30 (1997) 11-21.
  • [21] Hooftman R. N., De Raat W. K., Mutat. Res. 104 (1982) 147-152.
  • [22] de Lemos C. T., Rodel P. M., Terra N. R., Erdtmann B., Environ. Toxicol. Chem. 20 (2001) 1320-1324.
  • [23] Manna G. K., Sadhukhan A., Curr. Sci. 55 (1986) 498-501.
  • [24] Nepomuceno J. C., Ferrari I., Spano M. A., Centano A. J., Environ. Mol. Mutagen. 30 (1997) 293-297.
  • [25] Palhares D., Grisolia C. K., Gen. Mol. Biol. 25 (2002) 281-284.
  • [26] Poongothai K., Shayin S., Usharani M. V., Cytobios. 86 (1996) 17-22.
  • [27] Privezentsev K. V., Sirota N. P., Gaziev A. I., Tsitol Gen. 30 (1996) 45-51.
  • [28] Rodriguez-Cea A., Ayllon F., Garcia-Vazquez E., Ecotoxicol. Environ. Saf. 56 (2003) 442-448.
  • [29] Sanchez-Galan S., Linde A. R., Ayllon F., Garcia-Vazquez E., Ecotoxicol. Environ. Saf. 49 (2001) 139-143.
  • [30] Santra M., Das S. K., Talukder G., Sharma A., Biol. Trace Elem. Res. 88 (2002) 139-144.
  • [31] Shuilleabhain S. N., Mothersill C., Sheehan D., O’Brien N. M., O’Halloran J., Van Pelt, F. N. A. M., Davoren M., Toxicol. in Vitro 18 (2004) 365-376.
  • [32] Talapatra S. N., 2000. Ph.D. Theses, Ranchi University, Ranchi, India.
  • [33] Thompson E. D., McDermott J. A., Zerkle T. B., Skare J.A., Evans B. L. B., Cody D.B., Mutat. Res. 223 (1989) 267-272.
  • [34] Umegaki K., Fenech M., Mutagen. 15 (2000) 261-269.
  • [35] United State Environmental Protection Agency. 1975. EPA, Washington, D.C.
  • [36] USSR. 1979. Springer Verlag, Berlin, Heidelberg, New York, pp. 26-30.
  • [37] World Health Organization. 1971. WHO, Geneva.
  • [38] Zenzen V., Fauth E., Zankl H., Janzowski C., Eisenbrand G., Mutat. Res. 497 (2001) 89-99.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-93ff192d-4317-4898-8123-1da18b6b30ce
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.