[1. Albertini, R. J., Anderson, D., Douglas, G. R., Hagmar, K., Hemmiki, F., Merlo, A. T., et al., 2000: IPCS guidelines for the monitoring of genotoxic effects of carcinogens in humans. Mutat. Res., 463, 111—172.10.1016/S1383-5742(00)00049-1]Search in Google Scholar
[2. Anwar, W. A., 1997: Biomarkers of human exposure to pesticides. Environ. Health Perspect., 105, 801—806.10.1289/ehp.97105s480114700299255564]Search in Google Scholar
[3. Calderón-Segura, M. E., Gómez-Arroyo, S., Villalobos-Pietrini, R., Martínez-Valenzuela, C., Carbajal-López, Y., Calderón-Ezquerro, M. C., et al., 2012: Evaluation of genotoxic and cytotoxic effects in human peripheral blood lymphocytes exposed in vitro to neonicotinoid insecticides news. J. Toxicol., 2012, 1—11.10.1155/2012/612647332157322545045]Search in Google Scholar
[4. Costa, C., Teixeira, J. P., Silva, S., Roma-Torres, J., Coelho, P., Gaspar, J., et al., 2006: Cytogenetic and molecular biomonitoring of a Portuguese population exposed to pesticides. Mutagenesis, 21, 343—350.10.1093/mutage/gel03916980312]DOI öffnenSearch in Google Scholar
[5. Di Prisco, G., Cavaliere, V., Annoscia, D., Varricchio, P., Caprio, E., Nazzi, F., et al., 2013: Neonicotinoid clothianidin adversely affects insect immunity and promotes replication of a viral pathogen in honey bees. Proceedings of the National Academy of Sciences of the United States, 110, 18466–18471.10.1073/pnas.1314923110383198324145453]Search in Google Scholar
[6. Fisun, K., Rasgelle, P. G., 2009: Genotoxic effects of Raxil on root tips and anthers of Allium cepa L. Caryologia, 62, 1—9.10.1080/00087114.2004.10589659]DOI öffnenSearch in Google Scholar
[7. Galdíková, M., Šiviková, K., Holečková, B., Dianovský, J., Drážovská, M., Schwarzbacherová, V., 2015: The effect of thiacloprid formulation on DNA/chromosome damage and changes in GST activity in bovine peripheral lymphocytes. J. Environ. Sci. Health B, 50, 698—707.10.1080/03601234.2015.104810226273754]Search in Google Scholar
[8. Holečková, B., Šiviková, K. Dianovský, J., 2009: Effect of N-metylcarbamate pesticide bendiocarb on cattle lymphocytes after in vitro exposure. Acta Biol. Hung., 60, 167—175.10.1556/ABiol.60.2009.2.419584026]Search in Google Scholar
[9. Kocaman, A. Y., Regencűzoǧullari, E., Topaktasș M., 2014:In vitro investigation of the genotoxic and cytotoxic effects of thiacloprid in cultured human peripheral blood lymphocytes. Environ. Toxicol., 29, 631—641.10.1002/tox.2179022730181]DOI öffnenSearch in Google Scholar
[10. Lakatošová, M., Holečková, B., 2007: Chromosomal aberrations in lymphocyte of cattle exposed to fungicide Euparen Multi (tolylfluanid) (In Slovak). In Proceedings from Seminar of PhD. Students Devoted to the Memory of Academician Boďa, UVLF, Košice, 59—62.]Search in Google Scholar
[11. Marrs, T. C. (Ed.), 2012:Mammalian Toxicology of Insecticides. Royal Society of Chemistry, Cambridge, 506 pp.10.1039/9781849733007]Search in Google Scholar
[12. Natarajan, A. T., 2001: Fluorescence in situ hybridization (FISH) in genetic toxicology. J. Environ. Pathol. Toxicol. Oncol., 20, 293—298.10.1615/JEnvironPatholToxicolOncol.v20.i4.50]Search in Google Scholar
[13. Pesticide Residues in Food, 2006:Evaluations 2006, Part II Toxicological. Joint FAO/WHO Meeting on Pesticide Residues, Rome, Italy, 595 pp.]Search in Google Scholar
[14. Šivikova, K., Dianovský, J., Piešová, E., 2002: Genotoxic effects of pesticides in vitro (In Slovak). Ekotoxikologické biotesty, 1, 156—161.]Search in Google Scholar
[15. Tomizawa, M., Casida, J. E., 2003: Selective toxicity of neonicotinoids attributable to specificity of insect and mammalian nicotinic receptors. Annu. Rev. Entomol., 48, 339—364.10.1146/annurev.ento.48.091801.11273112208819]DOI öffnenSearch in Google Scholar