Open Access
Issue
E3S Web Conf.
Volume 280, 2021
Second International Conference on Sustainable Futures: Environmental, Technological, Social and Economic Matters (ICSF 2021)
Article Number 11005
Number of page(s) 6
Section Ecochemistry and Geography Education for Sustainable Development
DOI https://doi.org/10.1051/e3sconf/202128011005
Published online 30 June 2021
  1. R. Van der Oost, J. Beyer, N.P. Vermeulen, Environ. Toxicol. Pharmacol. 13(2) 57–149 (2003) doi:10.1016/s1382-6689(02)00126-6 [CrossRef] [PubMed] [Google Scholar]
  2. V.I. Lushchak, T.M. Matviishyn, V.V. Husak, J.M. Storey, K.B. Storey, EXCLI J. 17, 1101–1136 (2018) doi:10.17179/excli2018-1710 [PubMed] [Google Scholar]
  3. P.J. Peruzzo, A.A. Porta, A.E. Ronco, Environ. Pollut. 156, 61–66 (2008) doi:10.1016/j.envpol.2008.01.015 [CrossRef] [PubMed] [Google Scholar]
  4. B. Uqab, S. Mudasir, R. Nazir, J Bioremed. Biodeg. 7(3), 343–348 (2016) doi:10.4172/2155-6199.1000343 [Google Scholar]
  5. M.A. Abdel-Razek, A.M. Abozeid, M.M. Eltholth, F.A. Abouelenien, S.A. El-Midany, N.Y. Moustafa, R.A. Mohamed, Sloven. Veter. Res. 56(22), 61–74 (2019) doi:10.26873/SVR-744-2019 [Google Scholar]
  6. N.A. Kabra, M.-K. Ji, J. Choi, R.J. Kim, S.P. Govindwar, B.H. Jeon, Environ. Sci Pollut. Res. 21, 12270–12278 (2014) doi:10.1007/s11356-014-3157-4 [Google Scholar]
  7. H.I. Falfushynska, L.L. Gnatyshyna, C.V. Priydun, O.B. Stoliar, Y.K. Nam, Ecotoxicol. Environ. Saf. 73(8), 1896–1906 (2010) doi:10.1016/j.ecoenv.2010.08.029 [CrossRef] [PubMed] [Google Scholar]
  8. H.I. Falfushynska, L.L. Gnatyshyna, O.B. Stoliar, Comparat. Biochem. Physiol. – C. Toxicol. Pharmacol. 155(2), 396–406 (2012) doi:10.1016/j.cbpc.2011.11.001 [Google Scholar]
  9. E. Henao, P.J. Murphy, H. Falfushynska, O. Horyn, D.M. Evans, P. Klimaszyk, P. Rzymski, Toxins (Basel). 12(2), 111 (2020) doi:10.3390/toxins12020111 [Google Scholar]
  10. P.M. Tsarenko, S.P. Wasser (eds), Algae of Ukraine: diversity, nomenclature, taxonomy, ecology and geography. Vol. 3. Chlorophyta (Ganter Verlag, 2011) [Google Scholar]
  11. H. Aebi, Methods of Enzymatic Analysis. Catalase (Verlag Chemie/Academic Press Inc., Weinheim/New York 1974) doi:10.1016/b978-0-12-091302-2.50032-3 [Google Scholar]
  12. V. Katalinic, D. Modun, T.I. Music, M. Boban, Comparat. Biochem. Physiol, Part C. 140, 47–52 (2005) doi:10.1016/j.cca.2005.01.005 [Google Scholar]
  13. H. Ohkawa, N. Ohishi, K. Yagi, Anal. Biochem. 139, 292–298 (1979) doi:10.1016/0003-2697(79)90738–3 [Google Scholar]
  14. Z. Reznick, L. Packer, Methods Enzymol. 233, 357–363 (1994) doi:10.1016/s0076-6879(94)33041-7 [CrossRef] [PubMed] [Google Scholar]
  15. P.L. Olive, Environ. Mol. Mutagen. 11, 487–495 (1988) doi:10.1002/em.2850110409 [CrossRef] [PubMed] [Google Scholar]
  16. M. Bonomini, S. Dottori, L. Amoroso, A. Arduini, V. Sirolli, J. Thromb. Haemost. 2, 1275–1281 (2004) doi:10.1111/j.1538-7836.2004.00837.x [Google Scholar]
  17. G.L. Ellman, K.D. Courtney, V. Andres Jr., R.M. Featherstone, Biochem. Pharm. 7, 88–95 (1961) doi:10.1016/0006-2952(61)90145-9 [Google Scholar]
  18. J.J. Nagler, S.M. Ruby, D.R. Idler, Y.P. So, Can. J. Zool. 65, 2421–2425 (1987) doi:10.1139/z87-365 [Google Scholar]
  19. C.M. Benbrook, Environ. Sci Eur. 28, 3 (2016) doi:10.1186/s12302-016-0070-0 [CrossRef] [PubMed] [Google Scholar]
  20. T.M. Uren Webster, L.V. Laing, H. Florance, E.M. Santos, Environ. Sci. Technol. 48(2), 1271–1279 (2014) doi:10.1021/es404258h [CrossRef] [PubMed] [Google Scholar]
  21. C.M. Smith, M.K. Vera, R.K. Bhandari, Aquat. Toxicol. 210, 215–226 (2019) doi:10.1016/j.aquatox.2019.03.005 [CrossRef] [PubMed] [Google Scholar]
  22. B. Manjunatha, G.H. Philip, Toxicol. Ind. Health. 32(10), 1808–1816 (2016) doi:10.1177/0748233715589445 [Google Scholar]
  23. D. Nugegoda, G. Kibria, Gen. Comparat. Endocrinol. 244, 40–53 (2017) doi:10.1016/j.ygcen.2016.02.021 [Google Scholar]
  24. B. Lal, Res. Environ. Life Sci. 5 (4), 223–229 (2012) doi:10.1016/j.ygcen.2012.11.004 [Google Scholar]
  25. J.B. Ortiz-Delgado, V. Funes, C. Sarasquete, BMC Vet. Res. 15, 57 (2019) doi:10.1186/s12917-019-1786-z [CrossRef] [PubMed] [Google Scholar]
  26. N. Sinha, B. Lal, T.P. Singh, Ecotoxicol. Environ. Saf. 24 (1), 17–25 (1992) doi:10.1016/0147-6513(92)90031-W [CrossRef] [PubMed] [Google Scholar]
  27. X. Chen, M. Teng, J. Zhang, L. Qian, M. Duan, Yi Cheng, F. Zhao, J. Zheng, C. Wang, Sci Total. Environ, 746, 141860 (2020) doi:10.1016/j.scitotenv.2020.141860 [CrossRef] [Google Scholar]
  28. G. Shahid Mahboob, L. Ahmad, S. Sultana, K. Al-Ghanim, F. Al-Misned, Z. Ahmad, J. Biochem. Mol. Toxicol. 28(3), 137–142 (2014) doi:10.1002/jbt.21545 [Google Scholar]
  29. N. Sandoval-Herrera, F. Mena, M. Espinoza, R. Adarli, Sci Reports. 9(1), 10530 (2019) doi:10.1038/s41598-019-46804-6 [Google Scholar]
  30. R. Akter, M.A. Pervin, H. Jahan, S.R. Rakhi, A.N.M. Reza, Z. Hossain, JoBAZ 81, 47 (2020) doi:10.1186/s41936-020-00184-w [Google Scholar]
  31. X.J. Zhang, D.S. Greenberg, Front Mol. Neurosci. 5, 40 (2012) doi:10.3389/fnmol.2012.00040 [CrossRef] [PubMed] [Google Scholar]
  32. J. Xie, H. Jiang, Y.-H. Wan, A.-Y. Du, K.J. Guo, T. Liu, W.Y. Ye, X. Niu, J. Wu, X.Q. Dong, X.J. Zhang, J. Mol. Cell Biol. 3(4), 250–259 (2011) doi:10.1093/jmcb/mjq047 [CrossRef] [PubMed] [Google Scholar]
  33. O.V. Lushchak, O.I. Kubrak, J.M. Storey, K.B. Storey, V.I. Lushchak, Chemosphere. 76(7), 932–937 (2009) doi:10.1016/j.chemosphere.2009.04.045 [CrossRef] [PubMed] [Google Scholar]
  34. K.A. Modesto, C.B.R. Martinez, Chemosphere. 81(6). 781–787 (2010) doi:10.1016/j.chemosphere.2010.07.005 [CrossRef] [PubMed] [Google Scholar]
  35. L. Glusczak, D.S. Miron, B.S. Moraes, R.R. Simoes, M.R. Schetinger, V.M. Morsch, V.L. Loro, Comparat. Biochem. Physiol. C Toxicol. Pharmacol. 146(4), 519–524 (2007) doi:10.1016/j.cbpc.2007.06.004 [Google Scholar]
  36. P. Ghosh, S. Bhattacharya, S. Bhattacharya, Biomed. Environ. Sci. 2(2), 92–97 (1989) [PubMed] [Google Scholar]
  37. C. Yang, W. Lim, G. Song, Comparat. Biochem. Physiol. C Toxicol. Pharmacol. 234, 108758 (2020) doi:10.1016/j.cbpc.2020.108758 [Google Scholar]
  38. J.C. Brodeur, S. Malpel, A.B. Anglesio, D. Cristos, M.F. D’Andrea, M. B. Poliserpi, Chemosphere. 155, 429–435 (2016) doi:10.1016/j.chemosphere.2016.04.075 [CrossRef] [PubMed] [Google Scholar]
  39. C.M. Monteiro, P.M.L. Castro, F.X. Malcata, Biotechnol. Prog. 28(2), 299–311 (2012) doi:10.1002/btpr.1504 [CrossRef] [PubMed] [Google Scholar]
  40. M. Hultberg, H. Bodin, E. Ardal, H. Asp, Environ. Technol. 37(7), 893–898 (2015) doi:10.1080/09593330.2015.1089944 [Google Scholar]
  41. C.J. Tien, C.S. Chen, J. Environ. Sci Health. Part B. 47(9), 901–912 (2012) doi:10.1080/03601234.2012.693870 [Google Scholar]
  42. M. Singh, G. Pant, K. Hossain, A.K. Bhatia, Appl. Water Sci. 7, 2629–2635 (2017) doi:10.1007/s13201-016-0461-9 [Google Scholar]

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