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Hematological and Biochemical Alterations Incorporated in Freshwater Fishes Due to Several Industrial Effluents in River Water: A Review
Subject area: Science,Engineering and Technology · Area of research: Biochemistry
Abstract
Rapid growth of industries and mills have caused overall increase in economy and contributed to the development of world. But, this fact can never be ignored that after industrial revolution has not only cut the workload on humans ,also, they have caused great menace to life and health of people as well as organisms from single celled to multicellular. Harmful substances such as pesticides, heavy metals, paper mill waste, polychlorinated biphenyl and crude oil and heavy metal contaminants are often released into the aquatic environment. When large quantities of these pollutants are released, there are visible amount of changes seen in large amount of sudden mortalities of aquatic organisms especially fishes. Also, several species of aquatic organisms are extinct leading to loss of great biodiversity. Lower levels of discharge result in an accumulation of the pollutants in body composition of fish. The polluted water have undesirable colour, odour, taste, turbidity, harmful chemical contents, toxic and heavy metals, pesticides, industrial waste products, domestic sewage, and other physico chemical properties not in the reference range assigned by WHO (World Health Organisation) and CPCB (Central Pollution Control Board) .Fish species show a number of morphological , biochemical and hematological changes in their body which can be made clear from the several research papers.the aquatic pollution now-a days have become hot topic for the discussion and debates in various institutions, research papers ,books and several manuscripts.
Keywords
Industrial Effluents, Beheavioral Alterations, Acetylcholinesterases, Transaminases, Hematology
References
[1] Zeitoun, M. M. and Mehana, E. 2014. "Impact of water pollution with heavy metals on fish health: overview and updates." Global Veterinaria, 12(2): 219-231.
[2] Agrawal, A., Pandey, R .and Sharma, B. 2010. "Water Pollution with Special Reference to Pesticide Contamination in India,”. Journal of Water Resource and Protection, 2(5): 432-448.
[3] Narendra, S. and Nayal K. (2008), ‘Correlation Study on Physico-Chemical Parameters and Quality Assessment of Kosi RiverWater, Uttarakhand’. E-Journal of Chemistry, 5(2): 342-346.
[4] Pragatheeswaran, V.B., Loganathan., Natarajan, R. and Venugopalan, V.K. (1992) Distribution of heavy metals and organic carbon in sediment of Madras on Visakhapatnam Mahasagar. Bull. Nat. Inst. Oceangar., 19: 39–44.
[5] Ramesh, M. and Manavalaramanujam, S.K. (1992) Ef¬fects of water hardness and the toxicity of mala¬thion on hematological parameters of freshwater fish Cyprinus carpio. J. Ecotoxicol. Environ. monit, 2: 31–34.
[6] Patil, H.S. and Saidpur, S.K., 1989. Effect of pollution on reproductive cycles. reproductive cycles of India vertebrates. Allied Publishers Limited:. 409–426.
[7] Fritsche l., weigert c., haring h. u. , lehmann r, 2008.how insulin dependent substrate regulate the metabolic capacity of the liver–implications for health and disease Curr. Med.Chem 15 (13) 1316–1329.
[8] Sola F., Isaia J., Mansoni A.,1995. Effects Of Copper on Gill Structure and Transport Function in Rainbow Trout, Onchorhynchus mykiss, j. appl. Toxicol,15: 391-398.
[9] Holden A.V., 1962.The Absorption of C14 Labelled DDT from Water by Fish. Ann. Appl. Boil, 50: 467-477.
[10] Ferguson D.E And Goodycar C.P., 1967. The Pathway of Endrin Entry in Black Bull Heads. Lctalurus melas. ,copeia , 2:467.
[11] Nanda P., Panigrahi S., Nanda B. And Bahera B.K., 2002.Toxicity of Paper Mill Effluent to Fishes. Env. Eco., 20(2): 496-498.
[12] Srivastava S., Prabhakar S., Singh P. And Srivastava B.C., 2007. Toxicity and Beheaviour of Fish Labeo rohita and Channa punctatus Exposed to Pulp and Paper Mill Effluent. J. Ecotoxicol. Environ. 17(3): 241 – 244.
[13] Pathan T.S., Sonawane D.L. And Khillare Y.K., 2009. Toxicity and Beheavioural Changes in Freshwater Fish Rasbora daniconius Exposed to Paper Mill Effluent. J. of Biotech. Res.2(4): 263- 266.
[14] Adams S.M. and Jaworska J.S. 1990. Influence of Ecological Factors on the Relationship Between MFO Induction and Fish Growth: Bridging the Gap Using Neural Networks. Marine Environmental Research 42 (14): 197-201.
[15] Hontela A. 1997. Endocrine and physiological responses of fish to xenobiotics: Role of glucocorticosteroid hormones. Rev Toxicol 1:159–206.
[16] Khallaf EA, Galal M Authman M, 2003. The biology of Oreochromis niloticus in a polluted canal. Ecotoxicology 12: 405-416.
[17] Moiseenko TI, Gashkina NA, Sharova YN, Kudryavtseva LP (2008) Ecotoxicological assessment of water quality and ecosystem health: A case study of the Volga River. Ecotoxicol. Environ Saf 71: 837-850.
[18] Gaber HS, Abbas WT, Authman, MMN, Gaber SA (2014) Histological and biochemical studies on some organs of two fish species in Bardawil Lagoon, North Sinai, Egypt. Global Vet. 12: 1-11.
[19] Seist G and H.J. Schielef (1981): Interpretation of The Examine the Laboratory.Karger Ed., Basel, pp: 206-223.
[20] Nurnberg, H. W., Ed. Pollutants and Their Ecotoxicological Significance. John Wiley & Sons, New York, 1985.
[21] Authman MMN (2011) Environmental and experimental studies of aluminium toxicity on the liver of Oreochromis niloticus (Linnaeus, 1758) fish. J 8: 764-776.
[22] Sobha k., Poornima A., Harilal P., Veeriah, K., 2007. A study on biochemical changesin the freshwater fish, catla catla (Hamilton) exposed to the heavy metal toxicant cadmium chloride. Journal of Science, Engineering and Technology ,1(4).
[23] Chezian A., N. Kabilan, K.T. Suresh, D. Santhamilselvan and K. Sivakumari, 2010. Impact of common mixed effluent of sipcot industrial estate on histopathological and biochemical changes in estuarine fish lates calcarifer. current journal of biological sciences, 2(3): 201-209. 23. D.M. Malini, Mandiah A.F. Apriliandry and S. Arista, 2011.increased blood glucose level on pelagic fish as response to environmental disturbances at east coast Pangandaran , West Java, Iop Conf.Ser.:Earth Environ Sci.166 012011.
[24] Pamila D, Subbaiyan PA, Ramaswamy M. Toxic effect of chromium and cobalt on Sartherodon mossambicus (peters). Indian Journal of Environmental Health. 1991; 33:218-224.
[25] Chauhan RRS, Saxena KK, Kumar S. Roger induced hematological alterations in Cyprinus carpio. Advances in Biosciences.1994; 13:57-62.
[26] Ramesh M, Saravanan M. Hematological and biochemical responses in a freshwater fish Cyprinus carpio exposed to chlorpyrifos. International Journal of Integrative Biology. 2008; 3(1):80-83.
[27] Ugokwe CU, Awobode HO. Alterations in water quality, enzyme levels and haematology of Oreochromis niloticus (Nile Tilapia) from river Ogun at Abeokuta Nigeria. International Research Journal of Environmental Sciences. 2015; 4(10):1-9.
[28] Svobodova Z, Luskova V, Drastichova J, Svoboda M, Zlabek V. Effect of deltamethrin on hematological indices of common carp (Cyprinus carpio L.). Acta Veterinaria Brno. 2003; 72(1):79-85.
[29] Lohmann R, Breivik K, Dachs J, Muir D. 2007. Global fate of POPs: current and future research directions. Environ. Pollut. 150:150–65.
[30] Muir DCG, Howard PH. 2006. Are there other persistent organic pollutants? A challenge for environmental chemists. Environ. Sci. Technol. 40:7157–66.
[31] Vonderheide AP, Mueller KE, Meija J, Welsh GL. 2008. Polybrominated diphenyl ethers: causes for concern and knowledge gaps regarding environmental distribution, fate and toxicity. Sci. Total Environ. 400:425–36.
[32] Yogui GT, Sericano JL. 2009. Polybrominated diphenyl ether flame retardants in the US marine environment: a review. Environ. Int. 35:655–66.
[33] Goss KU, Bronner G. 2006. What is so special about the sorption behavior of highly fluorinated compounds? J. Phys. Chem. A 110: 9518–22.
[34] Prevedouros K, Cousins IT, Buck RC, Korzeniowski SH. 2006. Sources, fate and transport of perfluorocarboxylates. Environ. Sci. Technol. 40:32–44.
[35] N. Mayon, A. Bertrand, D. Leroy, C. Malbrouck, S.N.M. Mandiki, F. Silvestre, A.Goffart, J.P. Thome, P. Kestemont, Multiscale approach of fish responses to different types of environmental contaminations: a case study, Sci. Total Environ.367 (2006) 715–731.
[36] D. Kligerman, Fishes as biological detectors of the effects of genotoxic agents, in: J. Heddle (Ed.), Mutagenicity: New Horizons in Genetic Toxicology, Academic Press, New York, USA, 1982, pp. 435–456.
[37] T. Da Silva Souza, C.S. Fontanetti, Micronucleus test and observation of nuclear alterations in erythrocytes of Nile tilapia exposed to waters affected by refinery effluent, Mutat. Res. 605 (1–2) (2006) 87–93.
[38] S. Ergene, T. Cavas, A. Celik, N. Koleli, C. Aymak, Evaluation of river water genotoxicity using the piscine micronucleus test, Environ. Mol. Mutagen. 48 (2007) 1–9.
[39] W. Schmid, The micronucleus test, Mutat. Res. 31 (1975) 9–15.
[40] T. Cavas, S. Ergene-Gozukara, Micronuclei, nuclear lesions and interphasesilver-stained nucleolar organizer regions (AgNORs) as cyto-genotoxicity indicators in Oreochromis niloticus exposed to textile mill effluent, Mutat. Res. 538(2003) 81–91.
[41] C. Risso-de Faverney, A. Devaux, M. Lafaurie, J.P. Girard, B. Bailly, R. Rahmani, Cadmium induces apoptosis and genotoxicity in rainbow trout hepatocytes through generation of reactive oxygen species, Aquat. Toxicol. 53 (2001) 65–76.
[42] A.H. Wyllie, J.F.R. Kerr, A.R. Currie, Cell death: The significance of apoptosis, Int. Rev. Cytol. 68 (1980) 251–305.
How to cite this paper
@article{1703803,
author = {Bhagyashree Tiwari, Ajay Singh},
title = {Hematological and Biochemical Alterations Incorporated in Freshwater Fishes Due to Several Industrial Effluents in River Water: A Review},
journal = {Iconic Research And Engineering Journals},
year = {2022},
volume = {6},
number = {3},
pages = {57-66},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1703803.pdf},
abstract = {Rapid growth of industries and mills have caused overall increase in economy and contributed to the development of world. But, this fact can never be ignored that after industrial revolution has not only cut the workload on humans ,also, they have caused great menace to life and health of people as well as organisms from single celled to multicellular. Harmful substances such as pesticides, heavy metals, paper mill waste, polychlorinated biphenyl and crude oil and heavy metal contaminants are often released into the aquatic environment. When large quantities of these pollutants are released, there are visible amount of changes seen in large amount of sudden mortalities of aquatic organisms especially fishes. Also, several species of aquatic organisms are extinct leading to loss of great biodiversity. Lower levels of discharge result in an accumulation of the pollutants in body composition of fish. The polluted water have undesirable colour, odour, taste, turbidity, harmful chemical contents, toxic and heavy metals, pesticides, industrial waste products, domestic sewage, and other physico chemical properties not in the reference range assigned by WHO (World Health Organisation) and CPCB (Central Pollution Control Board) .Fish species show a number of morphological , biochemical and hematological changes in their body which can be made clear from the several research papers.the aquatic pollution now-a days have become hot topic for the discussion and debates in various institutions, research papers ,books and several manuscripts.},
keywords = {Industrial Effluents, Beheavioral Alterations, Acetylcholinesterases, Transaminases, Hematology},
month = {September},
}