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The influence of pyrethroides: permethrin, deltamethrin and alpha-cypermetrin on oxidative damage


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Abdel-Daim M., El-Bialy B.E., Abdel Rahman H.G., Radi A.M., Hefny H.A., Hassan A.M.: Antagonistic effects of Spirulina platensis against sub-acute deltamethrin toxicity in mice: Biochemical and histopathological studies. Biomed. Pharmacother., 2016; 77: 79–85 Abdel-DaimM. El-BialyB.E. Abdel RahmanH.G. RadiA.M. HefnyH.A. HassanA.M. Antagonistic effects of Spirulina platensis against sub-acute deltamethrin toxicity in mice: Biochemical and histopathological studies Biomed. Pharmacother. 2016 77 79 85 10.1016/j.biopha.2015.12.00326796269 Search in Google Scholar

Adams L., Franco M.C., Estevez A.G.: Reactive nitrogen species in cellular signaling. Exp. Biol. Med., 2015; 240: 711–717 AdamsL. FrancoM.C. EstevezA.G. Reactive nitrogen species in cellular signaling Exp. Biol. Med. 2015 240 711 717 10.1177/1535370215581314493520925888647 Search in Google Scholar

Arafa M.H., Mohamed D.A., Atteia H.H.: Ameliorative effect of N-acetyl cysteine on alpha-cypermethrin-induced pulmonary toxicity in male rats. Environ Toxicol., 2015; 30: 26–43 ArafaM.H. MohamedD.A. AtteiaH.H. Ameliorative effect of N-acetyl cysteine on alpha-cypermethrin-induced pulmonary toxicity in male rats Environ Toxicol. 2015 30 26 43 10.1002/tox.2189123900960 Search in Google Scholar

Arrighetti F., Ambrosio E., Astiz M., Capítulo A.R., Lavarías S.: Differential response between histological and biochemical biomarkers in the apple snail Pomacea canaliculata (Gasteropoda: Amullariidae) exposed to cypermethrin. Aquat Toxicol., 2018; 194: 140–151 ArrighettiF. AmbrosioE. AstizM. CapítuloA.R. LavaríasS. Differential response between histological and biochemical biomarkers in the apple snail Pomacea canaliculata (Gasteropoda: Amullariidae) exposed to cypermethrin Aquat Toxicol. 2018 194 140 151 10.1016/j.aquatox.2017.11.01429179149 Search in Google Scholar

Arslan H, Altun S., Özdemir S.: Acute toxication of deltamethrin results in activation of iNOS, 8-OHdGand up-regulation of caspase 3, iNOS gene expression in common carp (Cyprinus carpio L.). Aquat Toxicol,. 2017; 187: 90–99 ArslanH AltunS. ÖzdemirS. Acute toxication of deltamethrin results in activation of iNOS, 8-OHdGand up-regulation of caspase 3, iNOS gene expression in common carp (Cyprinus carpio L.) Aquat Toxicol 2017 187 90 99 10.1016/j.aquatox.2017.03.01428399480 Search in Google Scholar

Bordoni L., Nasuti C., Mirto M., Caradonna F., Gabbianelli R.: Intergenerational effect of early life exposure to Permethrin: Changes in global DNA methylation and in Nurr1 gene expression. Toxics, 2015; 3: 451–461 BordoniL. NasutiC. MirtoM. CaradonnaF. GabbianelliR. Intergenerational effect of early life exposure to Permethrin: Changes in global DNA methylation and in Nurr1 gene expression Toxics 2015 3 451 461 10.3390/toxics3040451560664529051472 Search in Google Scholar

Cadet J., Douki T., Gasparutto D., Ravanat J.L.: Oxidative damage to DNA: Formation, measurement and biochemical features. Mutat. Res., 2003; 531: 5–23 CadetJ. DoukiT. GasparuttoD. RavanatJ.L. Oxidative damage to DNA: Formation, measurement and biochemical features Mutat. Res. 2003 531 5 23 10.1142/p607 Search in Google Scholar

Carloni M., Nasuti C., Fedeli D., Montani M., Amici A., Vadhana M.S., Gabbianelli R.: The impact of early life permethrin exposure on development of neurodegeneration in adulthood. Exp. Gerontol., 2012; 47: 60–66 CarloniM. NasutiC. FedeliD. MontaniM. AmiciA. VadhanaM.S. GabbianelliR. The impact of early life permethrin exposure on development of neurodegeneration in adulthood Exp. Gerontol. 2012 47 60 66 10.1016/j.exger.2011.10.00622056222 Search in Google Scholar

Chandra N., Jain N.K., Sondhia S., Srivastava A.B.: Deltamethrin induced toxicity and ameliorative effect of alpha-tocopherol in broilers. Bull Environ Contam. Toxicol., 2013; 90: 673–678 ChandraN. JainN.K. SondhiaS. SrivastavaA.B. Deltamethrin induced toxicity and ameliorative effect of alpha-tocopherol in broilers Bull Environ Contam. Toxicol. 2013 90 673 678 10.1007/s00128-013-0981-z23511954 Search in Google Scholar

Chrustek A., Hołyńska-Iwan I., Dziembowska I, Bogusiewicz J., Wróblewski M., Cwynar A., Olszewska-Słonina D.: Current research on the safety of pyrethroids used as insecticides. Medicina, 2018; 54: 61 ChrustekA. Hołyńska-IwanI. DziembowskaI BogusiewiczJ. WróblewskiM. CwynarA. Olszewska-SłoninaD. Current research on the safety of pyrethroids used as insecticides Medicina 2018 54 61 10.3390/medicina54040061617433930344292 Search in Google Scholar

Dasuri K., Zhang L., Keller J.N.: Oxidative stress, neurodegeneration, and the balance of protein degradation and protein synthesis. Free Radic. Biol. Med., 2013; 62: 170–185 DasuriK. ZhangL. KellerJ.N. Oxidative stress, neurodegeneration, and the balance of protein degradation and protein synthesis Free Radic. Biol. Med. 2013 62 170 185 10.1016/j.freeradbiomed.2012.09.01623000246 Search in Google Scholar

Ðikić D., Mojsović-Cuić A., Cupor I., Benković V., Horvat-Knezević A., Lisicić D., Orsolić N.: Carbendazim combined with imazalil or cypermethrin potentiate DNA damage in hepatocytes of mice. Hum. Exp. Toxicol., 2012; 31: 492–505 ÐikićD. Mojsović-CuićA. CuporI. BenkovićV. Horvat-KnezevićA. LisicićD. OrsolićN. Carbendazim combined with imazalil or cypermethrin potentiate DNA damage in hepatocytes of mice Hum. Exp. Toxicol. 2012 31 492 505 10.1177/096032711141791021868589 Search in Google Scholar

Ding R., Cao Z., Wang Y., Gao X., Luo H., Zhang C., Ma S., Ma X., Jin H., Lu C.: The implication of p66shc in oxidative stress induced by deltamethrin. Chem. Biol. Interact., 2017; 278: 162–169 DingR. CaoZ. WangY. GaoX. LuoH. ZhangC. MaS. MaX. JinH. LuC. The implication of p66shc in oxidative stress induced by deltamethrin Chem. Biol. Interact. 2017 278 162 169 10.1016/j.cbi.2017.10.00528987327 Search in Google Scholar

El Okda E.S., Abdel-Hamid M.A., Hamdy A.M: Immunological and genotoxic effects of occupational exposure to α-cypermethrin pesticide. Int. J. Occup. Med. Environ. Health, 2017; 30: 603–615 El OkdaE.S. Abdel-HamidM.A. HamdyA.M Immunological and genotoxic effects of occupational exposure to α-cypermethrin pesticide Int. J. Occup. Med. Environ. Health 2017 30 603 615 10.13075/ijomeh.1896.0081028584332 Search in Google Scholar

Fedeli D., Montani M., Carloni M., Nasuti C., Amici A., Gabbianelli R., Vadhana M.S.: Leukocyte Nurr1 as peripheral biomarker of early-life environmental exposure to permethrin insecticide. Biomarkers, 2012; 17: 604–609 FedeliD. MontaniM. CarloniM. NasutiC. AmiciA. GabbianelliR. VadhanaM.S. Leukocyte Nurr1 as peripheral biomarker of early-life environmental exposure to permethrin insecticide Biomarkers 2012 17 604 609 10.3109/1354750X.2012.70664122804098 Search in Google Scholar

Gabbianelli R., Falcioni M.L., Nasuti C., Cantalamessa F., Imada I., Inoue M.: Effect of permethrin insecticide on rat polymorphonuclear neutrophils. Chem. Biol. Interact., 2009; 182: 245–252 GabbianelliR. FalcioniM.L. NasutiC. CantalamessaF. ImadaI. InoueM. Effect of permethrin insecticide on rat polymorphonuclear neutrophils Chem. Biol. Interact. 2009 182 245 252 10.1016/j.cbi.2009.09.00619772857 Search in Google Scholar

Gabbianelli R., Palan M., Flis D.J., Fedeli D., Nasuti C., Skarydova L., Ziolkowski W.: Imbalance in redox system of rat liver following permethrin treatment in adolescence and neonatal age. Xenobiotica, 2013; 43: 1103–1110 GabbianelliR. PalanM. FlisD.J. FedeliD. NasutiC. SkarydovaL. ZiolkowskiW. Imbalance in redox system of rat liver following permethrin treatment in adolescence and neonatal age Xenobiotica 2013 43 1103 1110 10.3109/00498254.2013.79642723713974 Search in Google Scholar

Galal M.K., Khalaf A.A., Ogaly H.A., Ibrahim M.A.: Vitamin E attenuates neurotoxicity induced by deltamethrin in rats. BMC Complement Altern Med., 2014: 14: 458 GalalM.K. KhalafA.A. OgalyH.A. IbrahimM.A. Vitamin E attenuates neurotoxicity induced by deltamethrin in rats BMC Complement Altern Med. 2014 14 458 10.1186/1472-6882-14-458426546325439240 Search in Google Scholar

Gasmi S., Rouabhi R., Kebieche M., Boussekine S., Salmi A., Toualbia N., Taib C., Bouteraa Z., Chenikher H., Henine S., Djabri B.: Effects of Deltamethrin on striatum and hippocampus mitochondrial integrity and the protective role of Quercetin in rats. Environ. Sci. Pollut. Res., 2017; 24: 16440–16457 GasmiS. RouabhiR. KebiecheM. BoussekineS. SalmiA. ToualbiaN. TaibC. BouteraaZ. ChenikherH. HenineS. DjabriB. Effects of Deltamethrin on striatum and hippocampus mitochondrial integrity and the protective role of Quercetin in rats Environ. Sci. Pollut. Res. 2017 24 16440 16457 10.1007/s11356-017-9218-828551743 Search in Google Scholar

Grosicka-Maciąg E.: Biological consequences of oxidative stress induced by pesticides Postępy Hig. Med. Dośw., 2011; 65: 357–366 Grosicka-MaciągE. Biological consequences of oxidative stress induced by pesticides Postępy Hig Med. Dośw. 2011 65 357 366 10.5604/17322693.94881621734320 Search in Google Scholar

Hashema H.E., Abd El-Haleema M.R., Abass M.A.: Epithelial and stromal alterations in prostate after cypermethrin administration in adult albino rats (histological and biochemical study). Tissue Cell., 2015; 47: 366–372 HashemaH.E. Abd El-HaleemaM.R. AbassM.A. Epithelial and stromal alterations in prostate after cypermethrin administration in adult albino rats (histological and biochemical study) Tissue Cell. 2015 47 366 372 10.1016/j.tice.2015.04.007 Search in Google Scholar

Higuchi Y.: Chromosomal DNA fragmentation in apoptosis and necrosis induced by oxidative stress. Biochem. Pharmacol., 2003; 66: 1527–1535 HiguchiY. Chromosomal DNA fragmentation in apoptosis and necrosis induced by oxidative stress Biochem. Pharmacol. 2003 66 1527 1535 10.1016/S0006-2952(03)00508-2 Search in Google Scholar

Hocine L., Merzouk H., Merzouk S.A., Ghorzi H., Youbi M., Narce M.: The effects of alpha-cypermethrin exposure on biochemical and redox parameters in pregnant rats and their newborns. Pestic. Biochem. Physiol., 2016; 134: 49–54 HocineL. MerzoukH. MerzoukS.A. GhorziH. YoubiM. NarceM. The effects of alpha-cypermethrin exposure on biochemical and redox parameters in pregnant rats and their newborns Pestic. Biochem. Physiol. 2016 134 49 54 10.1016/j.pestbp.2016.04.00727914539 Search in Google Scholar

Hongsibsonga S., Stuetza W., Susa N., Prapamontol T., Grune T., Frank J.: Dietary exposure to continuous small doses of α-cypermethrin in the presence or absence of dietary curcumin does not induce oxidative stress in male Wistar rats. Toxicol. Rep., 2014; 1: 1106–1114 HongsibsongaS. StuetzaW. SusaN. PrapamontolT. GruneT. FrankJ. Dietary exposure to continuous small doses of α-cypermethrin in the presence or absence of dietary curcumin does not induce oxidative stress in male Wistar rats Toxicol. Rep. 2014 1 1106 1114 10.1016/j.toxrep.2014.10.025559809428962322 Search in Google Scholar

Huang F., Liu Q., Xie S., Xu J., Huang B., Wu Y., Xia D.: Cypermethrin induces macrophages death through cell cycle arrest and oxidative stress-mediated JNK/ERK signaling regulated apoptosis. Int. J. Mol. Sci., 2016; 17: 885 HuangF. LiuQ. XieS. XuJ. HuangB. WuY. XiaD. Cypermethrin induces macrophages death through cell cycle arrest and oxidative stress-mediated JNK/ERK signaling regulated apoptosis Int. J. Mol. Sci. 2016 17 885 10.3390/ijms17060885492641927322250 Search in Google Scholar

Hussiena H.M., Abdoub H.M., Mokhtar I.Y.: Cypermethrin induced damage in genomic DNA and histopathological changes in brain and haematotoxicity in rats: The protective effect of sesame oil. Brain Res. Bull., 2013; 92: 76–83 HussienaH.M. AbdoubH.M. MokhtarI.Y. Cypermethrin induced damage in genomic DNA and histopathological changes in brain and haematotoxicity in rats: The protective effect of sesame oil Brain Res. Bull. 2013 92 76 83 10.1016/j.brainresbull.2011.10.02022085743 Search in Google Scholar

Jia Z.Z., Zhang J.W., Zhou D., Xu D.Q., Feng X.Z.: Deltamethrin exposure induces oxidative stress and affects meiotic maturation in mouse oocyte. Chemosphere, 2019; 223: 704–713 JiaZ.Z. ZhangJ.W. ZhouD. XuD.Q. FengX.Z. Deltamethrin exposure induces oxidative stress and affects meiotic maturation in mouse oocyte Chemosphere 2019 223 704 713 10.1016/j.chemosphere.2019.02.09230802836 Search in Google Scholar

Jin Y., Zheng S., Fu Z.: Embryonic exposure to cypermethrin induces apoptosis and immunotoxicity in zebrafish (Danio rerio). Fish Shellfish Immunol., 2011; 30: 1049–1054 JinY. ZhengS. FuZ. Embryonic exposure to cypermethrin induces apoptosis and immunotoxicity in zebrafish (Danio rerio) Fish Shellfish Immunol. 2011 30 1049 1054 10.1016/j.fsi.2011.02.00121316461 Search in Google Scholar

Kumar A., Sasmal D., Bhaskar A., Mukhopadhyay K., Thakur A., Sharma N.: Deltamethrin-induced oxidative stress and mitochondrial caspase-dependent signaling pathways in murine splenocytes. Environ Toxicol., 2016; 31: 808–819 KumarA. SasmalD. BhaskarA. MukhopadhyayK. ThakurA. SharmaN. Deltamethrin-induced oxidative stress and mitochondrial caspase-dependent signaling pathways in murine splenocytes Environ Toxicol. 2016 31 808 819 10.1002/tox.2209125534813 Search in Google Scholar

Lidova J., Stara A., Kouba A., Velisek J.: The effects of cypermethrin on oxidative stress and antioxidant biomarkers in marbled crayfish (Procambarus fallax f. virginalis). Neuro Endocrinol. Lett., 2016; 37: 53–59 LidovaJ. StaraA. KoubaA. VelisekJ. The effects of cypermethrin on oxidative stress and antioxidant biomarkers in marbled crayfish (Procambarus fallax f. virginalis) Neuro Endocrinol. Lett. 2016 37 53 59 Search in Google Scholar

Maalej A., Mahmoudi A., Bouallagui Z., Fki I., Marrekchi R., Sayadi S.: Olive phenolic compounds attenuate deltamethrin-induced liver and kidney toxicity through regulating oxidative stress, inflammation and apoptosis. Food Chem. Toxicol., 2017; 106: 455–465 MaalejA. MahmoudiA. BouallaguiZ. FkiI. MarrekchiR. SayadiS. Olive phenolic compounds attenuate deltamethrin-induced liver and kidney toxicity through regulating oxidative stress, inflammation and apoptosis Food Chem. Toxicol. 2017 106 455 465 10.1016/j.fct.2017.06.01028595958 Search in Google Scholar

Maurya S.K., Rai A., Rai N.K., Deshpande S., Jain R., Mudiam M.K., Prabhakar Y.S., Bandyopadhyay S.: Cypermethrin induces astrocyte apoptosis by the disruption of the autocrine/paracrine mode of epidermal growth factor receptor signaling. Toxicol. Sci., 2012; 125: 473–487 MauryaS.K. RaiA. RaiN.K. DeshpandeS. JainR. MudiamM.K. PrabhakarY.S. BandyopadhyayS. Cypermethrin induces astrocyte apoptosis by the disruption of the autocrine/paracrine mode of epidermal growth factor receptor signaling Toxicol. Sci. 2012 125 473 487 10.1093/toxsci/kfr30322048644 Search in Google Scholar

Murkunde Y.V., Sathya T.N., Subashini N., Murthy P.B.: Transplacental genotoxicity evaluation of cypermethrin using alkaline comet assay. Hum. Exp. Toxicol., 2012; 31: 185–192 MurkundeY.V. SathyaT.N. SubashiniN. MurthyP.B. Transplacental genotoxicity evaluation of cypermethrin using alkaline comet assay Hum. Exp. Toxicol. 2012 31 185 192 10.1177/096032711141209121659343 Search in Google Scholar

Nieradko-Iwanicka B., Borzęcki A.: Subacute poisoning of mice with deltamethrin produces memory impairment, reduced locomotor activity, liver damage and changes in blood morphology in the mechanism of oxidative stress. Pharmacol. Rep., 2015; 67: 535–541 Nieradko-IwanickaB. BorzęckiA. Subacute poisoning of mice with deltamethrin produces memory impairment, reduced locomotor activity, liver damage and changes in blood morphology in the mechanism of oxidative stress Pharmacol. Rep. 2015 67 535 541 10.1016/j.pharep.2014.12.01225933966 Search in Google Scholar

Ogaly H.A., Khalaf A.A., Ibrahim M.A., Galal M.K., Abd-Elsalam R.M.: Influence of green tea extract on oxidative damage and apoptosis induced by deltamethrin in rat brain. Neurotoxicol Teratol., 2015; 50: 23–31 OgalyH.A. KhalafA.A. IbrahimM.A. GalalM.K. Abd-ElsalamR.M. Influence of green tea extract on oxidative damage and apoptosis induced by deltamethrin in rat brain Neurotoxicol Teratol. 2015 50 23 31 10.1016/j.ntt.2015.05.00526013673 Search in Google Scholar

Oliveira J.M., Losano N.F., Condessa S.S., de Freitas R.M., Cardoso S.A., Freitas M.B., de Oliveira L.L.: Exposure to deltamethrin induces oxidative stress and decreases of energy reserve in tissues of the Neotropical fruit-eating bat Artibeus lituratus. Ecotoxicol. Environ. Saf., 2018; 148: 684–692 OliveiraJ.M. LosanoN.F. CondessaS.S. de FreitasR.M. CardosoS.A. FreitasM.B. de OliveiraL.L. Exposure to deltamethrin induces oxidative stress and decreases of energy reserve in tissues of the Neotropical fruit-eating bat Artibeus lituratus Ecotoxicol. Environ. Saf. 2018 148 684 692 10.1016/j.ecoenv.2017.11.02429172149 Search in Google Scholar

Özok N.: Effects of cypermethrin on antioxidant enzymes and lipid peroxidation of Lake Van fish (Alburnus tarichi). Drug Chem. Toxicol., 2020; 43: 51–56 ÖzokN. Effects of cypermethrin on antioxidant enzymes and lipid peroxidation of Lake Van fish (Alburnus tarichi) Drug Chem. Toxicol. 2020 43 51 56 10.1080/01480545.2019.166036331914873 Search in Google Scholar

Raszewski G., Lemieszek M.K., Łukawski K., Juszczak M., Rzeski W.: Chlorpyrifos and cypermethrin induce apoptosis in human neuroblastoma cell line SH-SY5Y. Basic Clin. Pharmacol. Toxicol., 2015; 116: 158–167 RaszewskiG. LemieszekM.K. ŁukawskiK. JuszczakM. RzeskiW. Chlorpyrifos and cypermethrin induce apoptosis in human neuroblastoma cell line SH-SY5Y Basic Clin. Pharmacol. Toxicol. 2015 116 158 167 10.1111/bcpt.1228524975276 Search in Google Scholar

Romero A., Ramos E., Ares I., Castellano V., Martínez M., Martinez-Larrañaga M.R., Anadón A., Martínez M.A.: Oxidative stress and gene expression profiling of cell death pathways in alpha-cypermethrin-treated SH-SY5Y cells. Arch Toxicol., 2017; 91: 2151–2164 RomeroA. RamosE. AresI. CastellanoV. MartínezM. Martinez-LarrañagaM.R. AnadónA. MartínezM.A. Oxidative stress and gene expression profiling of cell death pathways in alpha-cypermethrin-treated SH-SY5Y cells Arch Toxicol. 2017 91 2151 2164 10.1007/s00204-016-1864-y27704156 Search in Google Scholar

Sellami B., Khazri A., Mezni A., Louati H., Dellali M., Aissa P., Mahmoudi E., Beyrem H., Sheehan D.: Effect of permethrin, anthracene and mixture exposure on shell components, enzymatic activities and proteins status in the Mediterranean clam Venerupis decussate. Aquatic Toxicol., 2015; 158: 22–32 SellamiB. KhazriA. MezniA. LouatiH. DellaliM. AissaP. MahmoudiE. BeyremH. SheehanD. Effect of permethrin, anthracene and mixture exposure on shell components, enzymatic activities and proteins status in the Mediterranean clam Venerupis decussate Aquatic Toxicol. 2015 158 22 32 10.1016/j.aquatox.2014.10.02025461742 Search in Google Scholar

Stępień A., Izdebska M., Grzanka A.: The types of cell death. Postępy Hig. Med. Dośw., 2007; 61: 420–428 StępieńA. IzdebskaM. GrzankaA. The types of cell death Postępy Hig. Med. Dośw. 2007 61 420 428 Search in Google Scholar

Taju G., Abdul Majeed S., Nambi K.S.,. Farook M.A., Vimal S., Sahul Hameed A.S.: In vitro cytotoxic, genotoxic and oxidative stress of cypermethrin on five fish cell lines. Pestic. Biochem. Physiol., 2014; 113: 15–24 TajuG. Abdul MajeedS. NambiK.S. FarookM.A. VimalS. Sahul HameedA.S. In vitro cytotoxic, genotoxic and oxidative stress of cypermethrin on five fish cell lines Pestic. Biochem. Physiol. 2014 113 15 24 10.1016/j.pestbp.2014.06.00625052522 Search in Google Scholar

Uchendu C., Ambali S.F., Ayo J.O., Esievo K.A., Umosen A.J.: Erythrocyte osmotic fragility and lipid peroxidation following chronic co-exposure of rats to chlorpyrifos and deltamethrin, and the beneficial effect of alpha-lipoic acid. Toxicol. Rep., 2014; 1: 373–378 UchenduC. AmbaliS.F. AyoJ.O. EsievoK.A. UmosenA.J. Erythrocyte osmotic fragility and lipid peroxidation following chronic co-exposure of rats to chlorpyrifos and deltamethrin, and the beneficial effect of alpha-lipoic acid Toxicol. Rep. 2014 1 373 378 10.1016/j.toxrep.2014.07.002559836528962253 Search in Google Scholar

Vadhana D., Carloni M., Fedeli D., Nasuti C., Gabbianelli R.: Perturbation of rat heart plasma membrane fluidity due to metabolites of permethrin insecticide. Cardiovasc. Toxicol., 2011; 11: 226–234 VadhanaD. CarloniM. FedeliD. NasutiC. GabbianelliR. Perturbation of rat heart plasma membrane fluidity due to metabolites of permethrin insecticide Cardiovasc. Toxicol. 2011 11 226 234 10.1007/s12012-011-9116-021598078 Search in Google Scholar

Vadhana M.S., Carloni M., Nasuti C., Fedeli D., Gabbianelli R.: Early life permethrin insecticide treatment leads to heart damage in adult rats. Exp. Gerontol., 2011; 46: 731–738 VadhanaM.S. CarloniM. NasutiC. FedeliD. GabbianelliR. Early life permethrin insecticide treatment leads to heart damage in adult rats Exp. Gerontol. 2011 46 731 738 10.1016/j.exger.2011.05.00521616133 Search in Google Scholar

Weidinger A., Kozlov A.V.: Biological activities of reactive oxygen and nitrogen species: Oxidative stress versus signal transduction. Biomolecules, 2015; 5: 472–484 WeidingerA. KozlovA.V. Biological activities of reactive oxygen and nitrogen species: Oxidative stress versus signal transduction Biomolecules 2015 5 472 484 10.3390/biom5020472449668125884116 Search in Google Scholar

World Health Organization (WHO): WHO Specifications and Evaluations for Public Health Pesticides. Deltamethrin Long-Lasting (Coated onto Filaments) Insecticidal Net. (S)-α-Cyano-3-phenoxybenzyl (1R,3R)-3-(2,2dibromovinyl)-2,2-dimethylcyclopropane Carboxylate. World Health Organization, Geneva 2017 World Health Organization (WHO) WHO Specifications and Evaluations for Public Health Pesticides. Deltamethrin Long-Lasting (Coated onto Filaments) Insecticidal Net. (S)-α-Cyano-3-phenoxybenzyl (1R,3R)-3-(2,2dibromovinyl)-2,2-dimethylcyclopropane Carboxylate World Health Organization Geneva 2017 Search in Google Scholar

World Health Organization (WHO): Pesticide Evaluation Scheme, Vector Ecology and Management; World Health Organization: Geneva, Switzerland, 2016 World Health Organization (WHO) Pesticide Evaluation Scheme, Vector Ecology and Management World Health Organization Geneva, Switzerland 2016 Search in Google Scholar

World Health Organization (WHO): WHO Specifications and Evaluations for Public Health Pesticides. Permethrin (25:75 Cis:Trans Isomer Ratio) 3-Phenoxybenzyl (1RS,3RS;1RS,3SR)-3-(2,2 dichlorovinyl)-2,2-dimethylcyclopropane Carboxylate. World Health Organization, Geneva 2015 World Health Organization (WHO) WHO Specifications and Evaluations for Public Health Pesticides. Permethrin (25:75 Cis:Trans Isomer Ratio) 3-Phenoxybenzyl (1RS,3RS;1RS,3SR)-3-(2,2 dichlorovinyl)-2,2-dimethylcyclopropane Carboxylate World Health Organization Geneva 2015 Search in Google Scholar

World Health Organization (WHO): WHO Specifications and Evaluations for Public Health Pesticides. Alpha-Cypermethrin Long-Lasting (Incorporated into Filaments) Insecticidal Net. A Racemic Mixture of: (S)-α-Cyano-3-phenoxybenzyl-(1R,3R)-3-(2,2-dichlorovinyl)-2,2-dimethylcyclopropane-carboxylate and (R)-α-Cyano-3-phenoxybenzyl-(1S,3S)-3-(2,2-dichlorovinyl)-2,2-dimethylcyclopropanecarboxylate. World Health Organization, Geneva 2014 World Health Organization (WHO) WHO Specifications and Evaluations for Public Health Pesticides. Alpha-Cypermethrin Long-Lasting (Incorporated into Filaments) Insecticidal Net. A Racemic Mixture of: (S)-α-Cyano-3-phenoxybenzyl-(1R,3R)-3-(2,2-dichlorovinyl)-2,2-dimethylcyclopropane-carboxylate and (R)-α-Cyano-3-phenoxybenzyl-(1S,3S)-3-(2,2-dichlorovinyl)-2,2-dimethylcyclopropanecarboxylate World Health Organization Geneva 2014 Search in Google Scholar

Xu M., Wang P., Sun Y.J., Wang H.P., Liang Y.J., Zhu L., Wu Y.J.: Redox status in liver of rats following subchronic exposure to the combination of low dose dichlorvos and deltamethrin. Pestic. Biochem. Physiol., 2015; 124: 60–65 XuM. WangP. SunY.J. WangH.P. LiangY.J. ZhuL. WuY.J. Redox status in liver of rats following subchronic exposure to the combination of low dose dichlorvos and deltamethrin Pestic. Biochem. Physiol. 2015 124 60 65 10.1016/j.pestbp.2015.04.00526453231 Search in Google Scholar

Zabłocka A., Janusz M.: The two faces of reactive oxygen species. Postępy Hig. Med. Dośw., 2008; 62: 118–124 ZabłockaA. JanuszM. The two faces of reactive oxygen species Postępy Hig. Med. Dośw. 2008 62 118 124 Search in Google Scholar

Želježić D., Mladinić M., Žunec S., Vrdoljak A.L., Kašuba V., Tariba B., Živković T., Marjanović A.M., Pavičić I., Milić M., Rozgaj R., Kopjar N.: Cytotoxic, genotoxic and biochemical markers of insecticide toxicity evaluated in human peripheral blood lymphocytes and an HepG2 cell line. Food Chem. Toxicol., 2016; 96: 90–106 ŽelježićD. MladinićM. ŽunecS. VrdoljakA.L. KašubaV. TaribaB. ŽivkovićT. MarjanovićA.M. PavičićI. MilićM. RozgajR. KopjarN. Cytotoxic, genotoxic and biochemical markers of insecticide toxicity evaluated in human peripheral blood lymphocytes and an HepG2 cell line Food Chem. Toxicol. 2016 96 90 106 10.1016/j.fct.2016.07.03627481072 Search in Google Scholar

Zhang C., Zhang Q., Pang Y., Song X., Zhou N., Wang J., He L., Lv J., Song Y., Cheng Y., Yang X.: The protective effects of melatonin on oxidative damage and the immune system of the Chinese mitten crab (Eriocheir sinensis) exposed to deltamethrin. Sci. Total Environ., 2019; 653: 1426–1434 ZhangC. ZhangQ. PangY. SongX. ZhouN. WangJ. HeL. LvJ. SongY. ChengY. YangX. The protective effects of melatonin on oxidative damage and the immune system of the Chinese mitten crab (Eriocheir sinensis) exposed to deltamethrin Sci. Total Environ. 2019 653 1426 1434 10.1016/j.scitotenv.2018.11.06330759581 Search in Google Scholar

Zhang J., Liu L., Ren L., Feng W, Lv P., Wu W., Yan Y.: The single and joint toxicity effects of chlorpyrifos and beta-cypermethrin in zebrafish (Danio rerio) early life stages. J. Hazard Mater., 2017; 334: 121–131 ZhangJ. LiuL. RenL. FengW LvP. WuW. YanY. The single and joint toxicity effects of chlorpyrifos and beta-cypermethrin in zebrafish (Danio rerio) early life stages J. Hazard Mater. 2017 334 121 131 10.1016/j.jhazmat.2017.03.05528407539 Search in Google Scholar

Zhou F., Sun W., Zhao M.: Controlled formation of emulsion gels stabilized by salted myofibrillar protein under malondialdehyde(MDA)-induced oxidative stress. J. Agric. Food Chem., 2015; 63: 3766–3777 ZhouF. SunW. ZhaoM. Controlled formation of emulsion gels stabilized by salted myofibrillar protein under malondialdehyde(MDA)-induced oxidative stress J. Agric. Food Chem. 2015 63 3766 3777 10.1021/jf505916f25749308 Search in Google Scholar

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Dziedziny czasopisma:
Life Sciences, Molecular Biology, Microbiology and Virology, Medicine, Basic Medical Science, Immunology