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Research Article

β-cypermethrin-induced acute neurotoxicity in the cerebral cortex of mice

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Pages 44-49 | Received 22 Sep 2013, Accepted 23 Feb 2014, Published online: 20 Mar 2014

References

  • Anderson CM, Swanson RA. (2000). Astrocyte glutamate transport: review of properties, regulation, and physiological functions. Glia 32:1–14. [PubMed: 10975906]
  • Bradford MM. (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 72:248–254. [PubMed: 942051]
  • Choi DW. (1987). Ionic dependence of glutamate neurotoxicity. J Neurosci 7:369–379. [PubMed: 2880938]
  • Choi DW, Rothman SM. (1990). The role of glutamate neurotoxicity in hypoxic-ischemic neuronal death. Annu Rev Neurosci 13:171–182. [PubMed: 1970230]
  • Clark JM, Symington SB. (2007). Pyrethroid action on calcium channels: neurotoxicological implications. Invert Neurosci 7:3–16. [PubMed: 17294162]
  • Crawford MJ, Croucher A, Hutson DH. (1981). Metabolism of cis- and trans-cypermethrin in rats. Balance and tissue retention study. J Agric Food Chem 29:130–135. [PubMed: 7204747]
  • Crofton KM, Reiter LW. (1987). Pyrethroid insecticides and the gamma-aminobutyric acidA receptor complex: motor activity and the acoustic startle response in the rat. J Pharmacol Exp Ther 243:946–954. [PubMed: 2826762]
  • Curthoys NP, Weiss RF. (1974). Regulation of renal ammoniagenesis: subcellular localization of rat kidney glutaminase isoenzymes. J Biol Chem 249:3261–3266. [PubMed: 4364420]
  • Gilbert ME, Mack CM, Crofton KM. (1989). Pyrethroids and enhanced inhibition in the hippocampus of the rat. Brain Res 477:314–321. [PubMed: 2702491]
  • Han Y, Cao D, Li X, et al. (2014). Attenuation of γ-aminobutyric acid (GABA) transaminase activity contributes to GABA increase in the cerebral cortex of mice exposed to β-cypermethrin. Hum Exp Toxicol 33:317–324. [PubMed: 24220872]
  • Hossain MM, Suzuki T, Sato I, et al. (2005). Neuromechanical effects of pyrethroids, allethrin, cyhalothrin and deltamethrin on the cholinergic processes in rat brain. Life Sci 77:795–807. [PubMed: 15936353]
  • Hossain MM, Suzuki T, Unno T, et al. (2008). Differential presynaptic actions of pyrethroid insecticides on glutamatergic and GABAergicneurons in the hippocampus. Toxicology 243:155–163. [PubMed: 18023957]
  • Huo T, Chang B, Zhang Y, et al. (2012). Alteration of amino acid neurotransmitters in brain tissues of immature rats treated with realgar. J Pharm Biomed Anal 57:120–124. [PubMed: 21907521]
  • Ji ZY, Shi N, Wang SQ, et al. (2003). Effects of pyrethroids on the activity of gamma-aminobutyric acid transferase in rat brain. Chinese J Ind Hygiene Occup Dis 21:197–199. [PubMed: 14761486]
  • Kvamme E, Roberg B, Torgner IA. (2000). Phosphate-activated glutaminase and mitochondrial glutamine transport in the brain. Neurochem Res 25:1407–1419. [PubMed: 11059811]
  • Liao HT, Hsieh CJ, Chiang SY, et al. (2011). Simultaneous analysis of chlorpyrifos and cypermethrin in cord blood plasma by online solid-phase extraction coupled with liquid chromatography-heated electrospray ionization tandem mass spectrometry. J Chromatogr B Analyt Technol Biomed Life Sci 879:1961–1966. [PubMed: 21665556]
  • Livak KJ, Schmittgen TD. (2001). Analysis of relative gene expression data using real-time quantitative PCR and the 2−ΔΔCT method. Methods 25:402–408. [PubMed: 11846609]
  • Maciejewski PK, Rothman DL. (2008). Proposed cycles for functional glutamate trafficking in synaptic neurotransmission. Neurochem Int 52:809–825. [PubMed: 18006192]
  • Martinez-Hernandez A, Bell KP, Norenberg MD. (1977). Glutamine synthetase: glial localization in brain. Science 195:1356–1358. [PubMed: 14400]
  • Maycox PR, Deckwerth T, Hell JW, Jahn R. (1988). Glutamate uptake by brain synaptic vesicles: energy dependence of transport and functional reconstitution in proteoliposomes. J Biol Chem 263:15423–15428. [PubMed: 2902091]
  • Meyer DA, Shafer TJ. (2006). Permethrin, but not deltamethrin, increases spontaneous glutamate release from hippocampal neurons in culture. Neurotoxicology 27:594–603. [PubMed: 16678264]
  • Narahashi T. (1985). Nerve membrane ionic channels as the primary target of pyrethroids. Neurotoxicology 6:3–22. [PubMed: 2410830]
  • Narahashi T. (1996). Neuronal ion channels as the target sites of insecticides. Pharmacol Toxicol 79:1–14. [PubMed: 8841090]
  • Patel AJ, Hunt A, Gordon RD, Balázs R. (1982). The activities in different neural cell types of certain enzymes associated with themetabolic compartmentation glutamate. Brain Res 256:3–11. [PubMed: 6124308]
  • Peterson RT, Nass R, Boyd WA, et al. (2008). Use of non-mammalian alternative models for neurotoxicological study. Neurotoxicology 29:546–555. [PubMed: 18538410]
  • Shafer TJ, Meyer DA. (2004). Effects of pyrethroids on voltage-sensitive calcium channels: a critical evaluation of strengths, weaknesses, data needs, and relationship to assessment of cumulative neurotoxicity. Toxicol Appl Pharmacol 196:303–318. [PubMed: 15081275]
  • Singh AK, Tiwari MN, Prakash O, Singh MP. (2012a). A current review of cypermethrin-induced neurotoxicity and nigrostriatal dopaminergic neurodegeneration. Curr Neuropharmacol 10:64–71. [PubMed: 22942879]
  • Singh AK, Tiwari MN, Upadhyay G, et al. (2012b). Long term exposure to cypermethrin induces nigrostriatal dopaminergic neurodegeneration in adult rats: postnatal exposure enhances the susceptibility during adulthood. Neurobiol Aging 33:404–415. [PubMed: 20371137]
  • Soderlund DM, Clark JM, Sheets LP, et al. (2002). Mechanisms of pyrethroid neurotoxicity: implications for cumulative risk assessment. Toxicology 171:3–59. [PubMed: 11812616]
  • Soderlund DM. (2010). State-dependent modification of voltage-gated sodium channels by pyrethroids. Pestic Biochem Physiol 97:78–86. [PubMed: 20652092]
  • Soderlund DM. (2012). Molecular mechanisms of pyrethroid insecticide neurotoxicity: recent advances. Arch Toxicol 86:165–181. [PubMed: 21710279]
  • Tan J, Soderlund DM. (2010). Divergent actions of the pyrethroid insecticides S-bioallethrin, tefluthrin, and deltamethrin on rat Na(v)1.6 sodium channel. Toxicol Appl Pharmacol 247:229–237. [PubMed: 20624410]
  • Tzingounis AV, Wadiche JI. (2007). Glutamate transporters: confining runaway excitation by shaping synaptic transmission. Nat Rev Neurosci 8:935–947. [PubMed: 17987031]
  • Vijverberg HP, van den Bercken J. (1990). Neurotoxicological effects and mode of action of pyrethroid insecticides. Crit Rev Toxicol 21:105–126. [PubMed: 1964560]
  • Wang X, Wu J, Xiao H, Shi Y. (2000). Effects of fenvalerate and phoxim insecticides on glutamate and gamma-aminobutyric acid immunoreactive cells in the central nervous system of rats. J Hygiene Res 29:1–3. [PubMed: 12725027]
  • Wu J, Xia R, Shi N, Liu Y. (1999). Effects of pyrethroids on the glutamate uptake system in synaptic vesicle of rats. J Hygiene Res 28:261–262. [PubMed: 12712690]

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