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Pesticides and Heavy Metal Toxicity in Fish and Possible Remediation – A Review

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24 paź 2024

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Abbas S.H., Ismail I.M., Mostafa T.M., Sulaymon A.H. (2014). Biosorption of Heavy Metals: A Review. J. Chem. Sci. Technol., 3: 74–102. Search in Google Scholar

Abdelkhalek N.K., Eissa I.A., Ahmed E., Kilany O.E., El-Adl M., Dawood M.A., Abdel-Daim M.M. (2017). Protective role of dietary Spirulina platensis against diazinon induced oxidative damage in Nile tilapia; Oreochromis niloticus. Environ. Toxicol. Pharmacol., 54: 99–104. Search in Google Scholar

Abdelkhalek S.T., Mostafa Z.K., Hassan H.A., Abd El-Bar M.M., Abu El-Hassan G.M.M. (2018). A new list to the entomofauna associated with faba bean, Vicia faba L. (Fabales: Fabaceae) grown in El-Kharga oasis, New Valley Governorate, Egypt. Egypt Acad. J. Biol. Sci., 11: 95–100. Search in Google Scholar

Abdel-Latif H.M.R., Dawood M.A.O., Menanteau-Ledouble S., El-Matbouli M. (2020). The nature and consequences of co-infections in tilapia: A review. J. Fish Dis., 43: 651–664. Search in Google Scholar

Abdel-Tawwab M., Wafeek M. (2014). Influence of water temperature and waterborne cadmium toxicity on growth performance and metallothionein–cadmium distribution in different organs of Nile tilapia, Oreochromis niloticus (L.), J. Therm. Biol., 45: 157–162. Search in Google Scholar

Abu Zeid E.H., Khalil A. (2014). Effects of acute fenitrothion insecticide exposure on DNA damage and oxidative stress biomarkers and health of Nile tilapia fingerlings, Oreochromis niloticus L. World J. Fish Mar. Sci., 6: 361–370. Search in Google Scholar

Ahmed I., Zakiya A., Fazio F. (2022). Effects of aquatic heavy metal intoxication on the level of hematocrit and hemoglobin in fishes: A review. Front. Environ Sci., 10: 919–204. Search in Google Scholar

Ahmed M.K., Habibullah-Al-Mamun M., Parvin E., Akter M.S., Khan M.S., (2013). Arsenic induced toxicity and histopathological changes in gill and liver tissue of freshwater fish, tilapia (Oreochromis mossambicus). Exp. Toxicol. Pathol., 65: 903–909. Search in Google Scholar

Ahmed M.K., Baki M.A., Kundu G.K., Saiful Islam M., Monirul Islam M., Muzammel Hossain M. (2016 a). Human health risks from heavy metals in fish of Buriganga river, Bangladesh. Springer-Plus, 5: 1697. Search in Google Scholar

Ahmed S.I., Zahangir M.M., Haque F., Ahmmed M.K., Shahjahan M. (2016 b). Alteration of blood glucose and hemoglobin levels in zebrafish exposed to sumithion. Progress Agric., 27: 216–221. Search in Google Scholar

Akhter M.A., Saha A.K. (2013). Effects of fenitrothion on some histo-architecture of freshwater fish Channa punctatus. J. Pharm. Biol. Sci., 5: 27–32. Search in Google Scholar

Aktar M.W., Sengupta D., Chowdhury A. (2009). Impact of pesticides use in agriculture: their benefits and hazards. Interdisc. Toxicol., 2: 1–12. Search in Google Scholar

Akter R., Pervin M.A., Jahan H. (2020). Toxic effects of an organo-phosphate pesticide, envoy 50 SC on the histopathological, hematological, and brain acetylcholinesterase activities in stinging catfish (Heteropneustes fossilis). J. Basic Appl. Zool., pp. 81–47. Search in Google Scholar

Akter S., Jahan N., Rohani M.F., Akter Y., Shahjahan M. (2021). Chromium supplementation in diet enhances growth and feed utilization of striped catfish (Pangasianodon hypophthalmus). Biol. Trace Elem. Res., 199: 4811–4819. Search in Google Scholar

Akturk O., Demirin H., Sutcu R., Yilmaz N., Koylu H., Altuntas I. (2006). The effects of diazinon on lipid peroxidation and antioxidant enzymes in rat heart and ameliorating role of vitamin E and vitamin C. Cell. Biol. Toxicol., 22: 45. Search in Google Scholar

Alam M., Rohani M.F., Hossain M.S. (2023). Heavy metals accumulation in some important fish species cultured in commercial fish farm of Natore, Bangladesh and possible health risk evaluation. Emerg. Contam., 9: 100–254. Search in Google Scholar

Al-Emran M., Tanu S.F., Rahman M.S., Shahjahan M. (2018). Effects of organophosphate pesticide sumithion on histopathology of liver and kidney in Thai sharputi Barbonymus gonionotus. Bangladesh J. Fish, 30: 177–185. Search in Google Scholar

Al-Ghanim K.A. (2011). Impact of nickel (Ni) on hematological parameters and behavioral changes in Cyprinus carpio (common carp). Afr. J. Biotechnol., 10: 13860–13866. Search in Google Scholar

Al-Ghanim K.A., Ahmad Z., Al-Balawi H.A., Al-Misned F., Mahboob S., Suliman E.A., (2019). Accumulation and histological transformation in the gills, liver, muscles, and skin in Oreochromis niloticus induced by mercury. Turkish J. Vet. Anim. Sci., 43: 276–284. Search in Google Scholar

Al-Ghanim K.A., Mahboob S., Vijayaraghavan P., Al-Misned F.A., Kim Y.O., Kim H.J. (2020). Sub-lethal effect of synthetic pyre-throid pesticide on metabolic enzymes and protein profile of non-target Zebrafish, Danio rerio. Saudi J. Biol. Sci., 27: 441–447. Search in Google Scholar

Ali M., Mirvaghefi A., Asadi F. (2015). Effects of vitaminE, selenium, and vitamin C on various biomarkersfollowing oxidative stress caused by diazinon exposure in rainbow trout. J Aquac. Mar. Biol., 2: 1–9. Search in Google Scholar

Ali M.H., Saha S.K., Rashid H. (2014). Effects of sumithion on hematological parameters in stinging catfish, Heteropneustes fossilis. Proc. 5th International Conference on Environmental Aspects of Bangladesh, pp. 123–125. Search in Google Scholar

Ali M.H., Sumon K.A., Sultana M. (2018). Toxicity of cypermethrin on the embryo and larvae of Gangetic mystus, Mystus cavasius. Environ. Sci. Pollut. Res., 25: 3193–3199. Search in Google Scholar

Al-Mamun A. (2017). Pesticide degradations, residues and environmental concerns. In: Pesticide residue in foods: sources, management, and control, Khan M.S., Rahman M.S. (eds). Springer, pp. 87–102. Search in Google Scholar

Al-Taee S.K., Karam H., Ismail H.K. (2020). Review on some heavy metals toxicity on freshwater fishes. J. Appl. Vet. Sci., 5: 78–86. Search in Google Scholar

Altarelli M., Ben-Hamouda, N., Schneider A., Berger M.M. (2019). Copper deficiency: Causes, manifestations, and treatment. JPEN, 34: 504–513. Search in Google Scholar

Anastopoulos I., Kyzas G.Z. (2015). Progress in batch biosorption of heavy metals onto algae. J. Mol. Liq., 209: 77–86. Search in Google Scholar

Anila P.A., Sutha J., Nataraj D., Ramesh M. (2021). In vivo evaluation of Nano-palladium toxicity on larval stages and adult of zebrafish (Danio rerio). Sci. Total Environ., 765: 144268. Search in Google Scholar

Balali-Mood M., Naseri K., Tahergorabi Z., Khazdair M.R., Sadeghi M. (2021). Toxic mechanisms of five heavy metals: Mercury, lead, chromium, cadmium, and arsenic. Front. Pharmacol., 12: 643972. Search in Google Scholar

Banday U.Z., Swaleh S.B., Usmani N. (2019). Insights into the heavy metal-induced immunotoxic and genotoxic alterations as health indicators of Clarias gariepinus inhabiting a rivulet. Ecotoxicol. Environ. Saf., 183: 109584. Search in Google Scholar

Barjhoux I., Baudrimont M., Morin B., Landi L., Gonzalez P., Cachot J. (2012). Effects of copper and cadmium spiked-sediments on embryonic development of Japanese medaka (Oryzias latipes), Ecotoxicol. Environ. Saf., 79: 272–282. Search in Google Scholar

Begum A., Harikrishna S., Khan I. (2009). Analysis of heavy metals in water, sediments and fish samples of Madivala Lakes of Bangalore, Karnataka. Int. J. ChemTech. Res., 1: 245–249. Search in Google Scholar

Begum A., Mustafa A.I., Amin M.N., Banu N., Chowdhury T.R. (2014). Accumulation and histopathological effects of arsenic in tissues of shingi fish (Stinging catfish) Heteropneustes fossilis (Bloch, 1794). J. Asiat. Soc. Bangladesh Sci., 39: 221–230. Search in Google Scholar

Beketov M.A., Kefford B.J., Schäfer R.B., Liess M. (2013). Pesticides reduce regional biodiversity of stream invertebrates. PNAS, 110: 11039–11043. Search in Google Scholar

Bello-Medina P.C., Rodríguez-Martínez E., Prado-Alcalá R.A., Rivas-Arancibia S. (2022). Ozone pollution, oxidative stress, synaptic plasticity, and neurodegeneration. Neurología, 37: 277–286. Search in Google Scholar

Benhamed S., Guardiola F.A., Martínez S., Martínez-Sanchez M.J., P´erez-Sirvent C., Mars M., Esteban M.A. (2016). Exposure of the gilthead seabream (Sparus aurata) to sediments contaminated with heavy metals down-regulates the gene expression of stress biomarkers. Toxicol. Rep., 3: 364–372. Search in Google Scholar

Benli A.C.K., Ozkul A. (2010). Acute toxicity and histopathological effects of sublethal fenitrothion on Nile tilapia, Oreochromis niloticus. Pestic. Biochem. Physiol., 97: 32–35. Search in Google Scholar

Bibi N., Zuberi A., Naeem M., Ullah I., Sarwar H., Atika B. (2014). Evaluation of acute toxicity of Karate and its sub-lethal effects on protein and acetylcholinesterase activity in Cyprinus carpio. Int. J. Agric. Biol., 16: 731–737. Search in Google Scholar

Bodnar O., Horyn O., Soroka O., Falfushynska H. (2022). Pesticide pollution of aquatic ecosystems: environmental risks and mechanisms of impact on aquatic organisms (a review). Hydrobiology, 58: 62–78. Search in Google Scholar

Celino F.T., Yamaguchi S., Miura C., Miura T. (2009). Arsenic inhibits in vitro spermatogenesis and induces germ cell apoptosis in Japanese eel (Anguilla japonica). Reproduction, 138: 279–287. Search in Google Scholar

Chandanshive S.S., Sarwade P.P., Humbe A., Mohekar A.D. (2012). Effect of heavy metal model mixture on haematological parameters of Labeo rohita from Gharni Dam Nalegaon. J. Multidiscip. Res., 2: 10–12. Search in Google Scholar

Chavan V.R., Muley D.V. (2014). Effect of heavy metals on liver and gill of fish Cirrhinus mrigala. Int. J. Curr. Microbiol. Appl. Sci., 3: 277–288. Search in Google Scholar

Chen H., Cao J., Li L., Wu X., Bi R., Klerks P.L., Xie L. (2016). Maternal transfer and reproductive effects of Cr(VI) in Japanese medaka (Oryzias latipes) under acute and chronic exposures, Aquat. Toxicol., 171: 59–68. Search in Google Scholar

Chen J., Zhou J., Goldsbrough P.B. (1997). Characterization of phytochelatin synthase from tomato. Plant. Physiol., 101: 165–172. Search in Google Scholar

Cheraghi Niroumand M., Farzaei M.H., Karimpour Razkenari E., Amin G., Khanavi M., Akbarzadeh T., Shams-Ardekani M.R. (2016). An evidence-based review on medicinal plants used as insecticide and insect repellent in traditional iranian medicine. Iran Red Crescent. Med. J., 18: e22361. Search in Google Scholar

Choudhury C., Mazumder R., Biswas R., Sengupta M. (2021). Cadmium exposure induces inflammation through the canonical NF-κΒ pathway in monocytes/macrophages of Channa punctatus Bloch. Fish Shellfish Immunol., 110: 116–126. Search in Google Scholar

Choudhury C., Giri S., Mazumder R., Das R., Barhoi D., Sengupta M. (2023). Heavy metal bioaccumulation triggers oxystress, genotoxicity and immunomodulation in head kidney macrophages of Channa punctatus Bloch. Ecotoxicology, 32: 553–568. Search in Google Scholar

Cirillo T., Amodio Cocchieri R., Fasano E., Lucisano A., Tafuri S., Ferrante M.C., Carpenè E., Andreani G., Isani G. (2012). Cadmium accumulation and antioxidant responses in Sparus aurata exposed to waterborne cadmium. Arch. Environ. Contam. Toxicol., 62: 118–126. Search in Google Scholar

Citarasu T. (2010). Herbal biomedicines: a new opportunity for aquaculture industry. Aquac. Int., 18: 403–414. Search in Google Scholar

Das T., Rahman M.M., Hossen M.S., Mollah M.F.A. (2016). Toxicity effects of sumithion on the breeding performance and viability of eggs, embryos and subsequent growth indices of Heteropneustes fossilis larvae. J. Bangladesh Agric. Univ., 14: 243–251. Search in Google Scholar

David M., Munaswamy V., Halappa R., Marigoudar S.R. (2008). Impact of sodium cyanide on catalase activity in the freshwater exotic carp, Cyprinus carpio (Linnaeus). Pestic. Biochem. Physiol., 92: 5–18. Search in Google Scholar

Deore S.V., Wagh S.B. (2012). Heavy metal induced histopathological alterations in liver of Channa gachua (Ham). J. Exp. Sci., 3: 35–38. Search in Google Scholar

Devi V.J., Nagarani N., Babu M.Y., Vijaylakshimi N., Kumaraguru A.K. (2011). Genotoxic effects of profenofos on the marine fish, Therapon jarbua. Toxicol. Mech. Methods, 22: 111–117. Search in Google Scholar

Dey C., Saha S.K. (2014). A comparative study on the acute toxicity bioassay of dimethoate and lambda-cyhalothrin and effects on thyroid hormones of freshwater teleost fish Labeo rohita (Hamilton). Int. J. Environ. Res., 8: 1085–1092. Search in Google Scholar

Dietrich G.J., Dietrich M., Kowalski R.K., Dobosz S., Karol H., Demianowicz W., Glogowski J. (2010). Exposure of rainbow trout milt to mercury and cadmium alters sperm motility parameters and reproductive success. Aquat. Toxicol., 97: 277–284. Search in Google Scholar

Dietrich G.J., Ciereszko A., Kowalski R.K., Rzemieniecki A., Bogdan E., Demianowicz W., Dietrich M., Kujawa R., Glogowski J. (2012). Motility and fertilizing capacity of frozen/thawed sperm of Siberian sturgeon after a short-time exposure of fresh semen to mercury and cadmium. J. Appl. Ichthyol., 28: 973–977. Search in Google Scholar

Dube P.N., Alavandi S., Hosetti B.B. (2013). Effect of exposure to sub-lethal concentrations of sodium cyanide on the carbohydrate metabolism of the Indian major carp Labeo rohita (Hamilton, 1822). Pesq. Vet. Bras., 33: 914–919. Search in Google Scholar

El-Greisy Z.A., El-Gamal A.H.A. (2015). Experimental studies on the effect of cadmium chloride, zinc acetate, their mixture and the mitigation with vitamin C supplementation on hatchability, size and quality of newly hatched larvae of common carp, Cyprinus carpio. Egypt J. Aquat. Res., 41: 219–226. Search in Google Scholar

El-Sayed E.H., Hassanein E.I., Soliman M.H., El-Khatib N.R. (2010). The effect of dietary chromium picolinate on growth performance, blood parameters and immune status in Nile tilapia, Oreochromis niloticus. Proc. 3rd Glob. Fish. Aquac. Res. Conf. Foreign Agric. Relations (FAR), Egypt, 29.11.–1.12.2010, Massive Conferences and Trade Fairs, Cairo, pp. 51–63. Search in Google Scholar

Emon F.J., Rohani M.F., Sumaiya N., Jannat M.F., Akter Y., Shahjahan M., Abdul Kari Z., Tahiluddin A.B., Goh K.W. (2023). Bioaccumulation and bioremediation of heavy metals in fishes – a review. Toxics, 11: 510. Search in Google Scholar

Erickson R.J., Mount D.R., Highland T.L., Hockett J.R., Leonard E.N., Mattson V.R., Dawson T.D., Lott K.G. (2010) Effects of copper, cadmium, lead, and arsenic in a live diet on juvenile fish growth. Can. J. Fish Aquat. Sci., 67: 1816–1826. Search in Google Scholar

Farag M.R., Alagawany M., Bilal R.M., Gewida A.G.A., Dhama K., Abdel-Latif H.M.R., Amer M.S., Rivero-Perez N., Zaragoza-Bastida A., Binnaser Y.S. (2021). An overview on the potential hazards of pyrethroid insecticides in fish, with special emphasis on cypermethrin toxicity. Animals, 11: 1880. Search in Google Scholar

Farzaei M.H., Abbasabadi Z., Ardekani M.R.S., Rahimi R., Farzaei F. (2013). Parsley: a review of ethnopharmacology, phytochemistry and biological activities. J. Tradit. Chin. Med., 33: 815–826. Search in Google Scholar

Fazio F. (2019). Fish hematology analysis as an important tool of aquaculture: A review. Aquaculture, 500: 237–242. Search in Google Scholar

Fazio F., Habib S.S., Naz S., Hashmi M.A.H., Saoca C., Ullah M. (2021). Cadmium sub-lethal concentration effect on growth, haematological and biochemical parameters of Mystus seenghala (Sykes, 1839). Biol. Trace Elem. Res., 200: 2432–2438. Search in Google Scholar

Fernandes S.R., Barreiros L., Oliveira R.F., Cruz A., Prudêncio C., Oliveira A.I., Pinho C., Santos N., Morgado J. (2019). Chemistry, bioactivities, extraction and analysis of azadirachtin: state-of-theart. Fitoterapia, 134: 141–150. Search in Google Scholar

Firat O., Kargin F. (2010). Individual and combined effects of heavy metals on serum biochemistry of nile tilapia Oreochromis niloticus. Arch. Environ. Contam. Toxicol., 58: 151–157. Search in Google Scholar

Fishel F.M., Ferrell J.A. (2010). Managing pesticide drift. Edis, 7: 118806. Search in Google Scholar

Forouhar Vajargah M., Mohamadi Yalsuyi A., Sattari M., Prokić M.D., Faggio C., (2020). Effects of copper oxide nanoparticles (CuONPs) on parturition time, survival rate and reproductive success of guppy fish, Poecilia reticulate. J. Clust. Sci., 31: 499–506. Search in Google Scholar

Gárriz Á., Miranda L.A. (2020). Effects of metals on sperm quality, fertilization and hatching rates, and embryo and larval survival of pejerrey fish (Odontesthes bonariensis), Ecotoxicology, 29: 1072–1082. Search in Google Scholar

Ghaedi M., Ahmadi F., Soylak M. (2007). Simultaneous preconcentration of copper, nickel, cobalt and lead ions prior to their flame atomic absorption spectrometric determination. Annali di Chi-mica, 97: 277–285. Search in Google Scholar

Ghafarifarsani H., Imani A., Niewold T.A., Pietsch-Schmied C., Moghanlou K.S. (2021). Synergistic toxicity of dietary aflatoxin B1 (AFB1) and zearalenone (ZEN) in rainbow trout (Oncorhynchus mykiss) is attenuated by anabolic effects. Aquaculture, 541: 736–793. Search in Google Scholar

Ghafarifarsani H., Raeeszadeh M., Hajirezaee S., Ghafari Farsani S., Mansouri Chorehi M. (2023 a). The effect of malathion concentration and exposure time on histopathological changes in the liver and gill of rainbow trout. Aquac. Res., https://doi.org/10.1155/2023/3396066. Search in Google Scholar

Ghafarifarsani H., Hedayati S.A., Yousefi M., Hoseinifar S.H., Yarahmadi P., Mahmoudi S.S., Van Doan H. (2023 b). Toxic and bioaccumulative effects of zinc nanoparticle exposure to goldfish, Carassius auratus (Linnaeus, 1758). Drug Chem. Toxicol., 46: 984–994. Search in Google Scholar

Ghosh A., Ali S., Mukherjee S.K., Saha S., Kaviraj A. (2020). Bioremediation of copper and nickel from freshwater fish Cyprinus carpio using rhiozoplane bacteria isolated from Pistia stratiotes. Environ. Process, 7: 443–461. Search in Google Scholar

Gill R.J., Raine N.E. (2014). Chronic impairment of bumble bee natural foraging behaviour induced by sublethal pesticide exposure. Funct. Ecol., 28: 1459–1471. Search in Google Scholar

Goher M.E., El-Monem A.M.A., Abdel-Satar A.M., Ali M.H., Hussian A.E.M., Napiórkowska-Krzebietke A. (2016). Biosorption of some toxic metals from aqueous solution using non-living algal cells of Chlorella vulgaris. J. Elem., 21: 703–714. Search in Google Scholar

Golomb B.A., Devaraj S., Messner A.K., Koslik H.J., Han J.H., Yik B. (2021). Lower blood malondialdehyde is associated with past pesticide exposure: findings in Gulf War illness and healthy controls. Mil. Med. Res., 8: 46. Search in Google Scholar

Golshani R., Mashinchian Moradi A., Mosavi Nodoshan R., Fatemi S.M., Ghavam Mostafavi P. (2020). Organophosphorus pesticides (diazinon, malathion and azinfos methyl) accumulation in three fish species, in south coasts of the Caspian Sea, Iran. Iranian J. Fish Sci., 19: 3050–3062. Search in Google Scholar

Gouva E., Nathanailides C., Skoufos I., Paschos I., Athanassopoulou F., Pappas I.S. (2020). Comparative study of the effects of heavy metals on embryonic development of zebrafish. Aquac. Res., 51: 3255–3267. Search in Google Scholar

Green A.J., Mattingly C.J., Planchart A. (2017). Cadmium disrupts vestibular function by interfering with otolith formation. BioRxiv., 13: 162347. Search in Google Scholar

Gupta G., Srivastava P.P., Kumar M., Varghese T., Chanu T.I., Gupta S., Ande M.P., Jana P. (2021). The modulation effects of dietary zinc on reproductive performance and gonadotropins’ (FSH and LH) expression in threatened Asian catfish, Clarias magur (Hamilton, 1822) broodfish. Aquac. Res., 52: 2254–2265. Search in Google Scholar

Hajirezaee S., Ajdari A., Azhang B. (2021). Metabolite profiling, histological and oxidative stress responses in the grey mullet, Mugil cephalus exposed to the environmentally relevant concentrations of the heavy metal, Pb (NO3)2. Comp. Biochem. Physiol. C Pharmacol. Toxicol. Endocrinol., 244: 109004. Search in Google Scholar

Halliwell B., Gutteridge J.M. (2015). Free radicals in biology and medicine. USA: Oxford University Press. Search in Google Scholar

Hansen J.A., Welsh P.G., Lipton J., Cacela D., Dailey A.D. (2002). Relative sensitivity of bull trout (Salvelinus confluentus) and rainbow trout (Oncorhynchus mykiss) to acute exposures of cadmium and zinc. Environ. Toxicol. Chem., 21: 67–75. Search in Google Scholar

Hasan M., Hassan M.M., Uddin M.H., Sumon K.A., Al-Amin, Rashid H. (2021). Histopathological alterations in the gills of banded gourami (Trichogaster fasciata) exposed to thiamethoxam. Bangladesh J. Fish, 33: 49–56. Search in Google Scholar

Hasan M.M., Uddin M.H., Islam M.J., Biswas S., Sumon K.A., Prodhan M.D.H., Rashid H. (2023). Histopathological alterations in liver and kidney tissues of banded gourami (Trichogaster fasciata) exposed to thiamethoxam. Aquac. Stud., 23: 939. Search in Google Scholar

Has-Schӧn E., Bogut I., Kralik G., Bogut S., Horvatić J., Cacić I. (2007). Heavy metal concentration in fish tissues inhabiting waters of “Busko Blato” reservoir (Bosnia and Herzegovina). Environ. Monit. Assess., 144: 15–22. Search in Google Scholar

Hayati A., Giarti K., Winarsih Y., Amin M.H.F. (2017). The effect cadmium on sperm quality and fertilization of Cyprinus carpio L. J. Trop. Biodivers. Biotechnol., 2: 45. Search in Google Scholar

He J., Chen J.P. (2014). A Comprehensive review on biosorption of heavy metals by algal biomass: materials, performances, chemistry, and modeling simulation tools. Biores. Technol., 160: 67–78. Search in Google Scholar

Helfrich L.A., Weigmann D.L., Hipkins P.A., Stinson E.R. (2009). Pesticides and aquatic animals: A guide to reducing impacts on aquatic systems. Communications and Marketing, College of Agriculture and Life Sciences, Virginia Polytechnic Institute and State University. Search in Google Scholar

Hossain S., Khatun M.H., Rahman M.K., Shahjahan M. (2015). Impacts of sumithion on blood glucose and some hematological parameters in common carp. Int. J. Environ., 5: 8–13. Search in Google Scholar

Hossain S., Miah M.I., Islam M.S., Shahjahan M. (2016). Changes in hepatosomatic index and histoarchitecture of liver in common carp exposed to organophosphate insecticide sumithion. Asian J. Med. Biol. Res., 2: 164–170. Search in Google Scholar

Huang W., Cao L., Shan X., Xiao Z., Wang Q., Dou S. (2010). Toxic effects of zinc on the development, growth, and survival of red sea bream Pagrus major embryos and larvae. Arch. Environ. Contam. Toxicol., 58: 140–150. Search in Google Scholar

Ilavazhahan M., Tamil Selvi R., Jayaraj S.S. (2010). Determination of LC50 of the bacterial pathogen, pesticide and heavy metal for the fingerling of freshwater fish Catla catla. Global J. Environ. Res., 4: 76–82. Search in Google Scholar

Irato P., Santovito G. (2021). Enzymatic and non-enzymatic molecules with antioxidant function. Antioxidants, 10: 579. Search in Google Scholar

Islam S.M.M., Rahman M.A., Nahar S., Uddin M.H., Haque M.M., Shahjahan M. (2019). Acute toxicity of an organophosphate insecticide sumithion to striped catfish Pangasianodon hypophthalmus. Toxicol. Rep., 6: 957–962. Search in Google Scholar

Islam S.M.M., Rohani M.F., Zabed S.A., Islam M.T., Jannat R., Akter Y., Shahjahan M. (2020 a). Acute effects of chromium on hemato-biochemical parameters and morphology of erythrocytes in striped catfish Pangasianodon hypophthalmus. Toxicol. Rep., 7: 664–670. Search in Google Scholar

Islam M.M., Rohani M.F., Rahman M.H., Tandra T.S., Alam M., Hossain M.S. (2020 b). Suitability and efficacy of potato as prebiotic compound on the growth performance of rohu (Labeo rohita). J. Agric. Food Environ., 1: 37–49. Search in Google Scholar

Jadhav J.P., Kalyani D.C., Telke A.A., Phugare S.S., Govindwar S.P. (2010). Evaluation of the efficacy of a bacterial consortium for the removal of color, reduction of heavy metals, and toxicity from textile dye effluent: Biores. Technol., 101: 165–173. Search in Google Scholar

Jan A., Shah T.H., Nissa N.U. (2022). Impact of aquatic pollution on fish fauna. In: Bacterial fish diseases, Dar G.H., Bhat R.A., Qadri H., Al-Ghamdy K.M., Hakeem K.R. (eds). Academic Press, pp. 103–112. Search in Google Scholar

Jantawongsri K., Nørregaard R.D., Bach L., Dietz R., Sonne C., Jørgensen K., Lierhagen, S., Ciesielski T.M., Jenssen B.M., Haddy J., Eriksen R., Nowak B. (2021). Histopathological effects of short-term aqueous exposure to environmentally relevant concentration of lead (Pb) in shorthorn sculpin (Myoxocephalus scorpius) under laboratory conditions. Environ. Sci. Pollut. Res., 28: 61423–61440. Search in Google Scholar

Javed M., Usmani N. (2014). Assessment of heavy metals (Cu, Ni, Fe, Co, Mn, Cr, Zn) in rivulet water, their accumulations and alterations in hematology of fish Channa punctatus. Afr. J. Biotechnol., 13: 492–501. Search in Google Scholar

Javed M., Ahmad M.I., Usmani N., Ahmad M. (2017). Multiple bio-marker responses (serum biochemistry, oxidative stress, genotoxicity and histopathology) in Channa punctatus exposed to heavy metal loaded waste water. Sci. Rep., 7: 1–11. Search in Google Scholar

Jayaraj R., Megha P., Sreedev P. (2016). Organochlorine pesticides, their toxic effects on living organisms and their fate in the environment. Interdiscip. Toxicol., 9: 90–100. Search in Google Scholar

Jee J.-H., Masroor F., Kang J.-C. (2005). Responses of cypermethrin-induced stress in haematological parameters of Korean rockfish, Sebastes schlegeli (Hilgendorf). Aquac. Res., 36: 898–905. Search in Google Scholar

Jiang H., Kong X., Wang S., Guo H. (2016). Effect of copper on growth, digestive and antioxidant enzyme activities of juvenile qihe crucian carp, Carassius carassius, during exposure and recovery. Bull. Environ. Contam. Toxicol., 96: 333–340. Search in Google Scholar

Jiaxin S., Shengchen W., Yirong C., Shuting W., Shu L. (2020). Cadmium exposure induces apoptosis, inflammation and immunosuppression through CYPs activation and antioxidant dysfunction in common carp neutrophils. Fish Shellfish Immunol., 99: 284–290. Search in Google Scholar

Jurgelėnė Ž., Stankevičiūtė M., Kazlauskienė N., Baršienė J., Jokšas K., Markuckas A. (2019). Toxicological potential of cadmium impact on rainbow trout (Oncorhynchus mykiss) in early development. Bull. Environ. Contam. Toxicol., 103: 544–550. Search in Google Scholar

Kabir M., Shahjahan M., Chowdhury P., Rahman M.S. (2019). Histopathological and environmental effects of the insecticide, sumithion on the fish, tilapia (Oreochromis niloticus) in pond condition. Int. J. Agric. Res., 9: 84–95. Search in Google Scholar

Kaoud A.H. (2015). Article review: Heavy metals and pesticides in aquaculture: Health problems. Eur. J. Acad., 2: 15–22. Search in Google Scholar

Kawade S. (2020). Histopathological alterations in the liver of freshwater fish, Channa gachua (Ham.) on acute exposure to Nickel. J. Emerg. Technol. Innov. Res., 7: 1025–1030. Search in Google Scholar

Khabbazi M., Harsij M., Hedayati S.A.A., Gerami M.H., Ghafari-Farsani H. (2014). Histopathology of rainbow trout gills after exposure to copper. Iran J. Ichthyol., 1: 191–196. Search in Google Scholar

Khalesi K., Abedi Z., Behrouzi S., Eskandari S.K. (2017). Haematological, blood biochemical and histopathological effects of sub-lethal cadmium and lead concentrations in common carp. Bulg. J. Vet. Med., 20: 141–150. Search in Google Scholar

Khatib I., Rychter P., Falfushynska H. (2022). Pesticide pollution: Detrimental outcomes and possible mechanisms of fish exposure to common organophosphates and triazines. J. Xenobiot., 12: 236–265. Search in Google Scholar

Kim J.H., Kang J.C. (2016). The chromium accumulation and its physiological effects in juvenile rockfish, Sebastes schlegelii, exposed to different levels of dietary chromium (Cr6+) concentrations. Environ. Toxicol. Pharm., 41: 152–158. Search in Google Scholar

Kim K.H., Kabir E., Jahan S.A. (2017). Exposure to pesticides and the associated human health effects. Sci. Total Environ., 575: 525–535. Search in Google Scholar

Koller M., Saleh H.M. (2018). Introductory chapter: Introducing heavy metals. In: Heavy Metals, Saleh H., Aglan R.F. (eds). Intechopen, 74783. Search in Google Scholar

Kong X., Jiang H., Wang S., Wu X., Fei W., Li L., Nie G., Li X. (2013). Effects of copper exposure on the hatching status and antioxidant defense at different developmental stages of embryos and larvae of goldfish Carassius auratus, Chemosphere, 92: 1458–1464. Search in Google Scholar

Kumar A., Nath A., Mondal R., Kour D., Subrahmanyam G., Shabnam A.A., Khan S.A., Kumar K., Kumar G., Cabral-Pinto M. (2021). Myco-Remediation: A mechanistic understanding of contaminants alleviation from natural environment and future prospect. Chemosphere, 284: 131325. Search in Google Scholar

Kumar Sinha B.K., Gour J.K., Singh M.K., Nigam A.K. (2022). Effects of pesticides on haematological parameters of fish: recent updates. J. Sci. Res., 66: 269–283. Search in Google Scholar

Kumari M. (2012). Effects of organophosphate pesticide abate on the ovary of the cat fish, Heteropneustes fossilis (Bloch.). Bangladesh J. Zool., 40: 207–212. Search in Google Scholar

Kushwaha B., Pandey S., Sharma S., Srivastava R., Kumar R., Nagpure N.S., Dabas A., Srivastava S.K. (2012). In situ assessment of genotoxic and mutagenic potential of polluted river water in Channa punctatus and Mystus vittatus. Int. J. Aquat. Res., 4: 16–26. Search in Google Scholar

Kwong R.W.M., Andrés J.A., Niyogi S. (2011). Effects of dietary cadmium exposure on tissue-specific cadmium accumulation, iron status and expression of iron-handling and stress-inducible genes in rainbow trout: influence of elevated dietary iron. Aquat. Toxicol., 102: 1–9. Search in Google Scholar

Lakhani L. (2015). How to reduce impact of pesticides in aquatic environment. Int. J. Res. -Granthaalayah, 3(9SE): 1–5. Search in Google Scholar

Li H.C., Zhou Q., Wu Y., Fu J., Wang T., Jiang G. (2009). Effects of waterborne nano-iron on medaka (Oryzias latipes): Antioxidant enzymatic activity, lipid peroxidation and histopathology. Ecotoxicol. Environ. Saf., 72: 3684–3692. Search in Google Scholar

Li Z.H., Li P., Dzyuba B., Randak T. (2010). Influence of environmental related concentrations of heavy metals on motility parameters and antioxidant responses in sturgeon sperm. Chem. Biol. Interact., 188: 473–477. Search in Google Scholar

Lindshield B. (2019). Antioxidant micronutrients, in human nutrition (Oregon: Oregon state University). Available at: https://open.oregonstate.education/humannutrition/chapter/antioxidant-micro-nutrients/ Search in Google Scholar

Luo Z., Tan X.Y., Zheng J.L., Chen Q.L., Liu C.X. (2011). Quantitative dietary zinc requirement of juvenile yellow catfish Pelteobagrus fulvidraco, and effects on hepatic intermediary metabolism and antioxidant responses, Aquaculture, 319: 150–155. Search in Google Scholar

Łuszczek-Trojnar E., Drag-Kozak E., Szczerbik P., Socha M., Popek W. (2014). Effect of long-term dietary lead exposure on some maturation and reproductive parameters of a female Prussian carp (Carassius gibelio B.). Environ. Sci. Pollut. Res., 21: 2465–2478. Search in Google Scholar

Mahboub H.H., Beheiry R.R., Shahin S.E., Behairy A., Khedr M.H.E., Ibrahim S.M., Elshopakey G.E., Daoush W.M., Altohamy D.E., Ismail T.A., El-Houseiny W. (2021). Adsorptivity of mercury on magnetite nano-particles and their influences on growth, economical, hemato-biochemical, histological parameters and bioaccumulation in Nile tilapia (Oreochromis niloticus). Aquat. Toxicol., 235: 105828. Search in Google Scholar

Mahmuda M., Rahman M.H., Bashar A., Rohani M.F., Hossain M.S. (2020). Heavy metal contamination in tilapia, Oreochromis niloticus collected from different fish markets of Mymensingh District. J. Agric. Food Environ., 1: 1–5. Search in Google Scholar

Mantzorou A., Navakoudis E., Paschalidis K., Ververidis F. (2018). Microalgae: A potential tool for remediating aquatic environments from toxic metals. Int. J. Environ. Sci. Technol., 15: 1815–1830. Search in Google Scholar

Marigoudar S.R., Ahmed R.N., David M. (2009). Cypermethrin induced respiratory and behavioural responses in Labeo rohita. Vet. Arch., 79: 583–590. Search in Google Scholar

Marigoudar S.R., Ahmed R.N., David M. (2010). Cypermethrin induced: In vivo inhibition of the acetylcholinesterase activity in functionally different tissues of the freshwater teleost, Labeo rohita (Hamilton). Toxicol. Environ. Chem., 91: 1175–1182. Search in Google Scholar

Martel J., Ojcius D.M., Ko Y.F., Ke P.Y., Wu C.Y., Peng H.H., Young J.D. (2019). Hormetic effects of phytochemicals on health and longevity. Trend. Endocrinol. Metab., 30: 335–346. Search in Google Scholar

Mehrandish R., Rahimian A., Shahriary A. (2019). Heavy metals detoxification: A review of herbal compounds for chelation therapy in heavy metals toxicity. J. Herbmed. Pharmacol., 8: 69–77. Search in Google Scholar

Mesnage R., Tsakiris I.N., Antoniou M.N., Tsatsakis A. (2019). Limitations in the evidential basis supporting health benefits from a decreased exposure to pesticides through organic food consumption. Curr. Opin. Toxicol., 19: 50–55. Search in Google Scholar

Mirghaed A.T., Yarahmadi P., Craig P.M., Farsani H.G., Ghysvandi N., Eagderi S. (2018). Hemato-immunological, serum metabolite and enzymatic stress response alterations in exposed rainbow trout (Oncorhynchus mykiss) to nanosilver. Int. J. Aquat. Biol., 6: 221–234. Search in Google Scholar

Mishra A.K., Mohanty B. (2008). Histopathological effects of hexavalent chromium in the ovary of a fresh water fish, Channa punctatus (Bloch), Bull. Environ. Contam. Toxicol., 80: 507–511. Search in Google Scholar

Mohamed A.A.R., El-Houseiny W., EL-Murr A.E., Ebraheim L.L.M., Ahmed A.I., El-Hakim Y.M.A. (2020). Effect of hexavalent chromium exposure on the liver and kidney tissues related to the expression of CYP450 and GST genes of Oreochromis niloticus fish: role of curcumin supplemented diet. Ecotoxicol. Environ. Saf., 188: 109890. Search in Google Scholar

Mohammed A., Farag M., El-Hakim A., Elhady W. (2019). Sources and toxicological impacts of surface water pollution on fish in Egypt. Zag. Vet. J., 47: 103–119. Search in Google Scholar

Moosavi M.J., Shamushaki V.-A.J. (2015). Effects of different levels of copper sulfate on growth and reproductive performances in guppy (P. reticulate(. J. Aquacult. Res. Dev., 6: 6–9. Search in Google Scholar

Murthy K.S., Kiran B.R., Venkateshwarlu M. (2013). A review on toxicity of pesticides in fish. Int. J. Open Sci. Res., 1: 15–36. Search in Google Scholar

Muthukumaravel K., Sivakumar B., Kumarasamy P., Govindarajan M. (2013). Studies on the toxicity of pesticide monocrotophos on the biochemical constituents of the freshwater fish Labeo rohita. Int. J. Curr. Biochem. Biotechnol., 2: 20–26. Search in Google Scholar

Nagaraju B., Sudhakar P., Anitha A., Haribabu G., Rathnamma V.V. (2011). Toxicity evaluation and behavioural studies of fresh water fish Labeo rohita exposed to Rimon. Int. J. Pharmaceutical. Bio-Med. Sci., 2: 722–727. Search in Google Scholar

Naqvi T.S. (2017). Haemotoxic effect of sumithion on fresh water fish Clarias batrachus. Int. J. Res. Biosci., 6: 27–29. Search in Google Scholar

Nataraj B., Hemalatha D., Malafaia G., Maharajan K., Ramesh M. (2023). Fishcide effect of the fungicide difenoconazole in freshwater fish (Labeo rohita): A multi-endpoint approach. Sci. Total Environ., 857: 159425. Search in Google Scholar

Naz S., Hussain R., Ullah Q., Chatha A.M.M., Shaheen A., Khan R.U. (2021). Toxic effect of some heavy metals on hematology and histopathology of major carp (Catla catla). Environ. Sci. Pollut. Res., 28: 6533–6539. Search in Google Scholar

Ni X., Shen Y. (2021). Transgenerational effects of hexavalent chromium on marine medaka (Oryzias melastigma) reveal complex transgenerational adaptation in offspring. Biomolecules, 11: 1–16. Search in Google Scholar

Nwobi N.L., Nwobi J.C., Akinosun M.O., Atulomah N.O., Nwazuoke I.A., Anetor J.I. (2020). Impaired antioxidant-defence status in Nigerian children with elevated blood lead levels: A possible predis-posing factor to chronic diseases. J. Krishna Inst. Med. Sci. Univ., 9: 1–8. Search in Google Scholar

Okwuosa O.B., Eyo J.E., Omovwohwovie E.E. (2019). Role of fish as bioindicators: A review. Icon. Res. Eng. J., 2: 354–368. Search in Google Scholar

Ololade I.A., Oginni O. (2010). Toxic stress and hematological effects of nickel on African catfish, Clarias gariepinus, fingerlings. J. Environ. Chem. Ecotoxicol., 2: 14–19. Search in Google Scholar

Panda B.P., Mohanta Y.K., Parida S.P., Pradhan A., Mohanta T.K., Patowary K., Wan Mahari W.A., Lam S.S., Ghfar A.A., Guerriero G., Verma M., Sarma H. (2023). Metal pollution in freshwater fish: A key indicator of contamination and carcinogenic risk to public health. Environ. Pollut., 330: 121796. Search in Google Scholar

Pandey A.K., Nagpure N.S., Trivedi S.P., Kumar R., Kushwaha B. (2011). Profenofos induced DNA damage in freshwater fish, Channa punctatus (Bloch) using alkaline single cell gel electrophoresis. Mutat. Res., 726: 206–214. Search in Google Scholar

Park D., Reed D.W., Yung M., Eslamimanesh A., Lencka M.M., Fujita Y., Riman R.E., Navrotsky A., Jiao Y. (2016). Bioadsorption of rare earth elements through cell surface display of lanthanide binding tags bioadsorption of rare earth elements through cell surface display of lanthanide. Environ. Sci. Technol., 50: 2735–2742. Search in Google Scholar

Paryab M., Raeeszadeh M. (2017). The study of the rate and reasons of medical herb use by the patients visiting the specialized treatment centers in Fars province in 2014. J. Commun. Health, 10: 62–71. Search in Google Scholar

Paul J.S., Small B.C. (2021). Chronic exposure to environmental cadmium affects growth and survival, cellular stress, and glucose metabolism in juvenile channel catfish (Ictalurus punctatus). Aquat. Toxicol., 230: 105705. Search in Google Scholar

Perales-Vela H.V., Peña-Castro J.M., Cañizares-Villanueva R.O. (2006). Heavy metal detoxification in eukaryotic microalgae. Chemosphere, 64: 1–10. Search in Google Scholar

Phoonaploy U., Tengjaroenkul B., Neeratanaphan L. (2019). Effects of electronic waste on cytogenetic and physiological changes in snakehead fish (Channa striata). Environ. Monit. Assess, 191. Pichhode M., Gaherwal S. (2020). Effect of heavy metal toxicity, arsenic trioxide on the biochemical parameter of fresh water fish, Clarias batrachus. Pollut. Res., 39: 123–125. Search in Google Scholar

Poljsak B. (2011). Strategies for reducing or preventing the generation of oxidative stress. Oxid. Med. Cell. Longev., 194586. Search in Google Scholar

Poopak H., Raeeszadeh M., Salimi B. (2023). Accumulation of heavy metals in meat and their relationship with water and food intake of aquatic animals in Kermanshah, western Iran. Int. J. Environ. Health Res., 34: 1453–1465. Search in Google Scholar

Poorbagher H., Ghaffari Farsani H., Farahmand H. (2018). A method to quantify genotoxicity of malathion in rainbow trout using the weighted averaging. Toxicol. Mech. Methods, 28: 607–614. Search in Google Scholar

Popp J., Pető K., Nagy J. (2013). Pesticide productivity and food security. A review. Agron. Sust. Dev., 33: 243–255. Search in Google Scholar

Pourgholam R., Ghiyasi M., Rezai M., Nasrollahzadeh H., Saiedi A.A., Safari R. (2013). Histopathological studies of some organs of Grass carp (Ctenopharyngodon idella) exposed to sublethal concentrations of diazinon. J. Mazandaran. Univ. Med. Sci., 22. Search in Google Scholar

Prashanth M.S. (2011). Histopathological changes observed in the kidney of freshwater fish, Cirrhinus mrigala (Hamilton) exposed to cypermethrin. Recent Res. Sci. Technol., 3: 59–65. Search in Google Scholar

Pu H., Li X., Du Q., Cui H., Xu Y. (2017). Research progress in the application of Chinese herbal medicines in aquaculture: a review. Engineering, 3: 731–737. Search in Google Scholar

Pucher J., Gut T., Mayrhofer R., El-Matbouli M., Viet P.H., Ngoc N.T. (2014). Pesticide-contaminated feeds in integrated grass carp aquaculture: toxicology and bioaccumulation. Dis. Aquat. Org., 108: 137–147. Search in Google Scholar

Radkhah A.R., Eagderi S., Sadeghinejad Masouleh E. (2020). Investigation of antimicrobial properties of silver nanoparticles (Ag-NPs) to control diseases and health management in aquaculture systems. J. Ornament Aquat., 7: 7–15. Search in Google Scholar

Radkhah A.R., Eagderi S., Sadeghinejad Masouleh E. (2022). Accumulation of heavy metals in fish: A serious threat to food security and public health. J. Mil. Med., 3: 236–245. Search in Google Scholar

Raeeszadeh M., Fallah M. (2018). The comparison of the effect of origanum vulgar aqueous extract and vitamin C on the control of cadmium chloride damage in testicular tissue in male rats. J. Babol Univ. Med. Sci., 20: 44–50. Search in Google Scholar

Raeeszadeh M., Gravandi H., Akbari A. (2022 a). Determination of some heavy metals levels in the meat of animal species (sheep, beef, turkey, and ostrich) and carcinogenic health risk assessment in Kurdistan province in the west of Iran. Environ. Sci. Pollut. Res., 1–11. Search in Google Scholar

Raeeszadeh M., Javanshir A., Parhizkar Sh., Tavakoli Rad F. (2022 b). Assessment of some heavy metals and their relationship with oxidative stress and immunological parameters in aquatic animal species. Biol. Trace Elem. Res., 201: 4547–4557. Search in Google Scholar

Rahman M.S., Islam S.M.M., Haque A., Shahjahan M. (2020). Toxicity of the organophosphate insecticide sumithion to embryo and larvae of zebrafish. Toxicol. Rep., 7: 317–323. Search in Google Scholar

Rajeshkumar S., Liu Y., Ma J., Duan H.Y., Li X. (2017). Effects of exposure to multiple heavy metals on biochemical and histopathological alterations in common carp, Cyprinus carpio L. Fish Shell-fish Immunol., 70: 461–472. Search in Google Scholar

Ramesh M., Bindu C.F., Mohanthi S., Hema T., Poopal R-K., Ren Z., Li B. (2023). Efficiency of hematological, enzymological and oxidative stress biomarkers of Cyprinus carpio to an emerging organic compound (alphamethrin) toxicity. Environ. Toxicol. Pharmacol., 101: 104186. Search in Google Scholar

Rani G.I., Kumaraguru A.K. (2014). Behavioural responses and acute toxicity of Clarias batrachus to synthetic pyrethroid insecticide, ƛ-cyhalothrin. J. Environ. Appl. Biores., 2: 19–24. Search in Google Scholar

Rao J.V., Kavitha P., Jakka N.M., Sridhar V., Usman P. (2007). Toxicity of organophosphates on morphology and locomotor behavior in brine shrimp, Artemia salina. Arch. Environ. Contam. Toxicol., 53: 227–232. Search in Google Scholar

Rohani M.F. (2023). Pesticides toxicity in fish: Histopathological and hemato-biochemical aspects – A review. Emerg Contam, 9: 100234. Search in Google Scholar

Rohani M.F., Bristy A.A., Hasan J., Hossain M.K., Shahjahan M. (2022). Dietary Zinc in association with vitamin E promotes growth performance of Nile Tilapia. Biol. Trace Elem.. Res, 200: 4150–4159. Search in Google Scholar

Roozbahani M.M., Sobhanardakani S., Karimi H., Sorooshnia R. (2015). Natural and anthropogenic source of heavy metals pollution in the soil samples of an industrial complex; a case study. Iran J. Toxicol., 9: 1336–1341. Search in Google Scholar

Ross G. (2005). Risks and benefits of DDT. Lancet, 366: 1771. Search in Google Scholar

Ruas C.B.G., Carvalho C.D., Araujo H.S.S., Espindola E.L.G., Fernandes M.N. (2008). Oxidative stress biomarkers of exposure in the blood of cichlid species from a metal-contaminated river. Ecotoxicol. Environ Saf., 71: 86–93. Search in Google Scholar

Sabra F.S., Mehana El-S.El-D. (2015). Pesticides toxicity in fish with particular reference to insecticides. Asian J. Agricult. Food Sci., 3: 40–60. Search in Google Scholar

Saddick S., Afifi M., Abu Zinada O.A. (2017). Effect of Zinc nanoparticles on oxidative stress-related genes and antioxidant enzymes activity in the brain of Oreochromis niloticus and Tilapia zillii. Saudi J. Biol. Sci., 24: 1672–1678. Search in Google Scholar

Safahieh A., Hedayati A., Savari A., Movahedinia A. (2010). Experimental approaches of hematotoxic and immunotoxic effects of mercury chloride on yellow fin sea bream (Acanthopagrus latus). Am. J. Toxicol. Sci., 2: 169–176. Search in Google Scholar

Salam M.A., Shahjahan M., Sharmin S., Haque F., Rahman M.K. (2015). Effects of sub-lethal doses of an organophosphorus insecticide sumithion on some hematological parameters in common carp, Cyprinus carpio. Pak. J. Zool., 47: 1487–1491. Search in Google Scholar

Sandys O., Te Velde A. (2022). Raising the alarm: Environmental factors in the onset and maintenance of chronic (low-grade) inflammation in the gastrointestinal tract. Diges. Dis. Sci., 67: 4355–4368. Search in Google Scholar

Santana M.S., L. Sandrini-Neto M., Di Domenico M.M. (2021). Prodocimo, Pesticide effects on fish cholinesterase variability and mean activity: a meta-analytic review. Sci. Total Environ., 757: 143829. Search in Google Scholar

Santos R.F.B., Dias H.M., Fujimoto R.Y. (2012). Acute toxicity and histopathology in ornamental fish amazon bluespotted corydora (Corydoras melanistius) exposed to formalin. Ann. Braz. Acad. Sci., 84: 1001–1007. Search in Google Scholar

Sarkar M.M., Rohani M.F., Hossain M.A.R. (2022). Evaluation of heavy metal contamination in some selected commercial fish feeds used in Bangladesh. Biol. Trace Elem. Res., 200: 844–854. Search in Google Scholar

Satyavardhan K. (2013). A comparative toxicity evaluation and behavioral observations of fresh water fishes to fenvalerate. Middle East J. Sci. Res., 13: 133–136. Search in Google Scholar

Sebaei M.E., Shathele M., El-Bahr S.M. (2022). Impaired cytokines gene expression by diazinon and its relation with blood chemistry and oxidative stress biomarkers in Nile Tilapia (Oreochromis niloticus). Thai J. Vet. Med., 52: 647–656. Search in Google Scholar

Sepici-Dincel A., Sarikaya R., Selvi M., Sahin D., Benli C.K., Atalay Vural S. (2007). How sublethal fenitrothion is toxic in carp (Cyprinus carpio L.) fingerlings. Toxicol. Mech. Methods, 17: 489–495. Search in Google Scholar

Sevcikova M., Modra H., Blahova J., Dobsikova R., Plhalova L., Zitka O., Hynek D., Kizek R., Skoric M., Svobodova Z. (2016). Biochemical, haematological and oxidative stress responses of common carp (Cyprinus carpio L.) after sub-chronic exposure to copper. Vet. Med., 61: 35–50. Search in Google Scholar

Shah Z.U., Parveen S. (2022). Oxidative, biochemical and histopathological alterations in fishes from pesticide contaminated river Ganga, India. Sci. Rep., 12: 3628. Search in Google Scholar

Shahjahan M., Kabir M.F., Sumon K.A., Bhowmik L.R., Rashid H. (2017). Toxicity of organophosphorous pesticide sumithion on larval stages of stinging catfish Heteropneustes fossilis. J. Oceanol. Limnol., 35: 109–114. Search in Google Scholar

Shanker G., Syversen T., Aschner J.L., Aschner M. (2005). Modulatory effect of glutathione status and antioxidants on methylmercury-induced free radical formation in primary cultures of cerebral astrocytes. Mol. Brain. Res., 137: 11–22. Search in Google Scholar

Sharifi-Rad M., Anil Kumar N.V., Zucca P., Varoni E.M., Dini L., Panzarini E., et al. (2020). Lifestyle, oxidative stress, and antioxidants: back and forth in the pathophysiology of chronic diseases. Front. Physiol., 11: 694. Search in Google Scholar

Shereena K.M., Logaswamy S., Sunitha P. (2009). Effect of an organophosphorous pesticide (Dimethoate) on oxygen consumption of the fish Tilapia mossambica. Recent Res. Sci. Technol., 1: 4–7. Search in Google Scholar

Sherif H.A., Gamila A.M.K., Manal E.A.E., Mounir M.S., Wael M.A., Awwad A.R. (2013). Bioconcentration of fenitrothion in freshwater fish (Oreochromis niloticus). Int. J. Anim. Vet. Adv., 12: 1134–1138. Search in Google Scholar

Shokr E.A.M. (2020). Effect of copper on hematological, biochemical changes and reproductive hormones of the Nile tilapia Oreochromis niloticus, Egypt J. Aquat. Biol. Fish, 24: 1–18. Search in Google Scholar

Singh S.K., Singh S.K., Yadav R.P. (2010). Toxicological and biochemical alterations of cypermethrin (Synthetic pyrethroids) against freshwater teleost fish Colisa fasciatus at different season. World J. Zool., 5: 25–32. Search in Google Scholar

Sivanatarajan P., Sivaramakishnan T. (2013). Studies on some hematologic values of Oreochromis mossambicus (Peters) following its sudden transfer to various concentrations of potassium chlorate and potassium dichromate. Eur. J. Appl. Sci., 5: 19–24. Search in Google Scholar

Smith B. (1993). Remediation update funding the remedy. Waste Manage. Environ, 4: 24–30. Search in Google Scholar

Soundararajan M., Veeraiyan G. (2014). Effect of heavy metal arsenic on haematological parameters of fresh water fish, Tilapia mossambica. Int. J. Mod. Res. Rev., pp. 132–135. Search in Google Scholar

Suchana S.A., Ahmed M.S., Islam S.M.M., Rahman M.L., Rohani M.F., Ferdusi T., Ahammad A.K.S., Fatema M.K., Badruzzaman M., Shahjahan M. (2021). Chromium exposure causes structural aberrations of erythrocytes, gills, liver, kidney and genetic damage in striped catfish Pangasianodon hypophthalmus. Biol. Trace Elem. Res., 199: 3869–3885. Search in Google Scholar

Sud D., Kaur P. (2012). Heterogeneous photocatalytic degradation of selected organophosphate pesticides: a review. Crit. Rev. Environ. Sci. Technol., 42: 2365–2407. Search in Google Scholar

Sumon K.A., Saha S., van den Brink P.J., Peeters E.T.H.M., Bosma R.H., Rashid H. (2017). Acute toxicity of chlorpyrifos to embryo and larvae of banded gourami Trichogaster fasciata. J. Environ. Sci. Health B, 52: 92–98. Search in Google Scholar

Tan L.N., Feng L., Liu Y., Jiang J., Jiang W.D., Hu K., Li S.H., Zhou X.Q. (2011). Growth, body composition and intestinal enzyme activities of juvenile Jian carp (Cyprinus carpio var. Jian) fed graded levels of dietary zinc. Aquac. Nutr., 17: 338–345. Search in Google Scholar

Tan X.Y., Luo Z., Zhang G.Y., Liu X.J., Jiang M. (2010). Effect of dietary cadmium level on the growth, body composition and several hepatic enzymatic activities of juvenile yellow catfish, Pelteobagrus fulvidraco. Aquac. Res., 41: 1022–1029. Search in Google Scholar

Tang Z.H., Huang Q., Wu H., Kuang L., Fu S.J. (2017). The behavioral response of prey fish to predators: The role of predator size. Peer J., 5: e3222. Search in Google Scholar

Taslima K., Al-Emran M., Rahman M.S., Hasan J., Ferdous Z., Rohani M.F., Shahjahan M. (2022). Impacts of heavy metals on early development, growth and reproduction of fish – A review. Toxicol. Rep., 9: 858–868. Search in Google Scholar

Thenmozhi C., Vignesh V., Thirumurugan R., Arun S. (2011). Impacts of malathion on mortality and biochemical changes of freshwater fish Labeo rohita. Iranian J. Environ. Health Sci. Eng., 8: 387–394. Search in Google Scholar

Tlenshieva A.M., Witeska M., Shalakhmetova T.M. (2022). Genotoxic and histopathological effects of the Ili River (Kazakhstan) water pollution on the grass carp Ctenopharyngodon idella. Environ. Pollut. Bioavailab., 34: 297–307. Search in Google Scholar

Tripathi S., Mishra B.B., Tripathi S.P. (2012). Effect of heavy metal Cadmium sulphate on the toxicity and biochemical parameters of Reproductive cycle of Colisa fasciatus, Researcher, 4: 65–68. Search in Google Scholar

Ullah R., Zuberi A., Tariq M., Ullah S. (2014). Acute toxic effects of cypermethrin on hematology and morphology of liver, brain and gills of Mahseer (Tor putitora). Int. J. Agri. Biol., 17: 199–204. Search in Google Scholar

Ullah S., Zorriehzahra M.J. (2015). Ecotoxicology: A review of pesticides induced toxicity in fish. Adv. Anim. Vet. Sci., 3: 40–57. Search in Google Scholar

Veedu S.K., Ayyasamy G., Tamilselvan H., Ramesh M. (2022). Single and joint toxicity assessment of acetamiprid and thiamethoxam neonicotinoids pesticides on biochemical indices and antioxidant enzyme activities of a freshwater fish Catla catla. Comp. Biochem. Physiol. C Pharmacol. Toxicol. Endocrinol., 257: 109336. Search in Google Scholar

Vijayaram S., Razafindralambo H., Sun Y.Z., Vasantharaj S., Ghafarifarsani H., Hoseinifar S.H., Raeeszadeh M. (2023). Applications of green synthesized metal nanoparticles – a review. Biol. Trace Elem. Res., 202: 360–386. Search in Google Scholar

Vinodhini R., Narayanan M. (2009). The impact of toxic heavy metals on the hematological parameters in common CARP (Cyprinus carpio L.): Iran. J. Environ. Health. Sci. Eng., 6: 23–28. Search in Google Scholar

Wang R.F., Zhu L.M., Zhang J., An X.P., Yang Y.P., Song M., Zhang L. (2020). Developmental toxicity of copper in marine medaka (Oryzias melastigma) embryos and larvae, Chemosphere, 247: 125923. Search in Google Scholar

WHO (2004). Guidelines for drinking-water quality: recommendations, World Health Organization, 2004. Search in Google Scholar

Witeska M., Sarnowski P., Ługowska K., Kowal E. (2014). The effects of cadmium and copper on embryonic and larval development of ide Leuciscus idus L. Fish Physiol. Biochem., 40: 151–163. Search in Google Scholar

Xie D., Li Y., Liu Z., Chen Q. (2019). Inhibitory effect of cadmium exposure on digestive activity, antioxidant capacity and immune defense in the intestine of yellow catfish (Pelteobagrus fulvidraco). Comp. Biochem. Physiol. C Pharmacol. Toxicol. Endocrinol., 222: 65–73. Search in Google Scholar

Xu H., Zhang X., Li H., Li C., Huo X.J., Hou L.P., Gong Z. (2018). Immune response induced by major environmental pollutants through altering neutrophils in zebrafish larvae. Aquat. Toxicol., 201: 99–108. Search in Google Scholar

Yadav H., Sankhla M.S., Kumar R. (2019). Pesticides-induced carcinogenic & neurotoxic effect on human. FRCIJ, 7: 243–245. Search in Google Scholar

Yadav I.C., Devi N.L. (2017). Pesticides classification and its impact on human and environment. Environ. Sci. Engin., 6: 140–158. Search in Google Scholar

Yan W., Hamid N., Deng S., Jia P.P., Pei D.S. (2020). Individual and combined toxicogenetic effects of microplastics and heavy metals (Cd, Pb, and Zn) perturb gut microbiota homeostasis and gonadal development in marine medaka (Oryzia smelastigma), J. Hazard. Mater., 397: 122795. Search in Google Scholar

Yang C., Lim W., Song G. (2021). Immunotoxicological effects of insecticides in exposed fishes. Comp. Biochem. Physiol. C Pharmacol. Toxicol., 247: 109064. Search in Google Scholar

Zheng S., Yang Y., Wen C., Liu W., Cao L., Feng X. (2021). Effects of environmental contaminants in water resources on nonalcoholic fatty liver disease. Environ. Int., 154: 106555. Search in Google Scholar

Zulfahmi I., Rahmi A., Muliari M., Akmal Y., Paujiah E., Sumon K.A., Rahman M.M. (2021). Exposure to lead nitrate alters growth and haematological parameters of milkfish (Chanos chanos), Bull. Environ. Contam. Toxicol., 107: 860–867. Search in Google Scholar

Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Nauki biologiczne, Biotechnologia, Zoologia, Medycyna, Weterynaria