用户名: 密码: 验证码:
Antimuscarinic-induced convulsions in fasted animals after food intake: evaluation of the effects of levetiracetam, topiramate and different doses of atropine
详细信息    查看全文
  • 作者:Bahar Büget ; Aslı Zengin Türkmen…
  • 关键词:Atropine ; induced convulsion ; Food deprivation ; Food intake ; Levetiracetam ; Topiramate
  • 刊名:Naunyn-Schmiedeberg's Archives of Pharmacology
  • 出版年:2016
  • 出版时间:January 2016
  • 年:2016
  • 卷:389
  • 期:1
  • 页码:57-62
  • 全文大小:289 KB
  • 参考文献:Albrecht C, Bloss HG, Jackisch R, Feuerstein TJ (1999) Evaluation of autoreceptor-mediated control of [(3)H]acetylcholine release in rat and human neocortex. Exp Brain Res 128:383–389. doi:10.​1007/​s002210050858 PubMed CrossRef
    Anderson DR, Harris LW, Bowersox SL, Lennox WJ, Anders JC (1994) Efficacy of injectable anticholinergic drugs against soman-induced convulsive/subconvulsive activity. Drug Chem Toxicol 17:139–148. doi:10.​3109/​0148054940901430​7 PubMed CrossRef
    Baghdoyan HA, Lydic R, Fleegal MA (1998) M2 muscarinic autoreceptors modulate acetylcholine release in the medial pontine reticular formation. J Pharmacol Exp Ther 286:1446–1452PubMed
    Bell LA, Bell KA, McQuiston AR (2015) Acetylcholine release in mouse hippocampal CA1 preferentially activates inhibitory-selective interneurons via α4β2* nicotinic receptor activation. Front Cell Neurosci 9:115. doi:10.​3389/​fncel.​2015.​00115 PubMed PubMedCentral CrossRef
    Brown DA (2010) Muscarinic acetylcholine receptors (mAChRs) in the nervous system: some functions and mechanisms. J Mol Neurosci 41:340–346. doi:10.​1007/​s12031-010-9377-2 PubMed CrossRef
    Enginar N, Nurten A (2010) Seizures triggered by food intake in antimuscarinic-treated fasted animals: evaluation of the experimental findings in terms of similarities to eating-triggered epilepsy. Epilepsia 51(Suppl 3):80–84. doi:10.​1111/​j.​1528-1167.​2010.​02616.​x PubMed CrossRef
    Enginar N, Nurten A, Yamantürk-Çelik P, Açıkmeşe B (2005) Scopolamine-induced convulsions in fasted mice after food intake: effects of glucose intake, antimuscarinic activity and anticonvulsant drugs. Neuropharmacology 49:293–299. doi:10.​1016/​j.​neuropharm.​2005.​01.​032 PubMed CrossRef
    Enginar N, Nurten A, Özünal ZG, Zengin A (2009) Scopolamine-induced convulsions in fasted mice after food intake: the effect of food deprivation. Epilepsia 50:143–146. doi:10.​1111/​j.​1528-1167.​2008.​01786.​x PubMed CrossRef
    Goldbach R, Allgaier C, Heimrich B, Jackisch R (1998) Postnatal development of muscarinic autoreceptors modulating acetylcholine release in the septohippocampal cholinergic system. I. Axon terminal region: hippocampus. Brain Res Dev Brain Res 108:23–30. doi:10.​1016/​S0165-3806(98)00026-1 PubMed CrossRef
    Guimaraes J, Simoes-Riberio F, Mendes-Riberio JA, Abreu P, Pires I, Georgina S (2005) Eating seizures and emotional facial paresis: evidence suggesting the amygdala is a common anatomophysiological substratum. Epilepsy Behav 6:266–269. doi:10.​1016/​j.​yebeh.​2004.​11.​016 PubMed CrossRef
    Iwanaga K, Murata T, Okada M, Hori M, Ozaki H (2009) Carbachol induces Ca2+-dependent contraction via muscarinic M2 and M3 receptors in rat intestinal subepithelial myofibroblasts. J Pharmacol Sci 110:306–314. doi:10.​1254/​jphs.​09118FP PubMed CrossRef
    Kaminski RM, Banerjee M, Rogawski MA (2004) Topiramate selectively protects against seizures induced by ATPA, a GluR5 kainate receptor agonist. Neuropharmacology 46:1097–1104. doi:10.​1016/​j.​neuropharm.​2004.​02.​010 PubMed CrossRef
    Kammerer M, Brawek B, Freiman TM, Jackisch R, Feuerstein TJ (2011) Effects of antiepileptic drugs on glutamate release from rat and human neocortical synaptosomes. Naunyn-Schmied Arch Pharmacol 383:531–542. doi:10.​1007/​s00210-011-0620-3 CrossRef
    Kichigina VF, Butuzova MV, Sinel’nikova VV (2007) Medial septal region as a target for modulation of seizure discharges in the hippocampus in a model of acute temporal lobe epilepsy. Zh Vyssh Nerv Deiat Im I P Pavlova 57:52–64PubMed
    Klein S, Bankstahl M, Löscher W (2015) Inter-individual variation in the effect of antiepileptic drugs in the intrahippocampal kainate model of mesial temporal lobe epilepsy in mice. Neuropharmacology 90:53–62. doi:10.​1016/​j.​neuropharm.​2014.​11.​008 PubMed CrossRef
    Kumari A, Sreetama S, Mohanakumar KP (2007) Atropine, a muscarinic receptor antagonist increases serotonin, but not dopamine levels in discrete brain regions of mice. Neurosci Lett 423:100–103. doi:10.​1016/​j.​neulet.​2007.​06.​027 PubMed CrossRef
    Lee CY, Chen CC, Liou HH (2009) Levetiracetam inhibits glutamate transmission through presynaptic P/Q-type calcium channels on the granule cells of the dentate gyrus. Br J Pharmacol 158:1753–1762. doi:10.​1111/​j.​1476-5381.​2009.​00463.​x PubMed PubMedCentral CrossRef
    Lukyanetz EA, Shkryl VM, Kostyuk PG (2002) Selective blockade of N-type calcium channels by levetiracetam. Epilepsia 43:9–18. doi:10.​1046/​j.​1528-1157.​2002.​24501.​x PubMed CrossRef
    Luszczki JJ, Trojnar MK, Trojnar MP, Kimber-Trojnar Z, Szostakiewicz B, Zadrozniak A, Borowicz KK, Czuczwar SJ (2008) Effects of amlodipine, diltiazem, and verapamil on the anticonvulsant action of topiramate against maximal electroshock-induced seizures in mice. Can J Physiol Pharmacol 86:113–121PubMed CrossRef
    Maslanski JA, Powelt R, Deirmengiant C, Patelt J (1994) Assessment of the muscarinic receptor subtypes involved in pilocarpine-induced seizures in mice. Neurosci Lett 168:225–258. doi:10.​1016/​0304-3940(94)90456-1 PubMed CrossRef
    Meyer EM, Otero DH (1985) Pharmacological and ionic characterizations of the muscarinic receptors modulating [3H]acetylcholine release from rat cortical synaptosomes. J Neurosci 5:1202–1207PubMed
    Nurten A, Enginar N (2006) The evaluation of antimuscarinic-induced convulsions in fasted rats after food intake. Epilepsy Res 72:171–177. doi:10.​1016/​j.​eplepsyres.​2006.​07.​018 PubMed CrossRef
    Nurten A, Özen İ, Karamürsel S, Kara İ (2006) Electroencephalographic characterization of scopolamine-induced convulsions in fasted mice after food intake. Seizure 15:509–519. doi:10.​1016/​j.​seizure.​2006.​06.​006 PubMed CrossRef
    Nurten A, Özerman B, Özen İ, Kara İ (2009) The role of solid fluid intake in antimuscarinic-induced convulsions in fasted mice. Epilepsy Behav 15:142–145. doi:10.​1016/​j.​yebeh.​2009.​03.​025 PubMed CrossRef
    Ohno Y, Ishihara S, Terada R, Serikawa T, Sasa M (2010) Antiepileptogenic and anticonvulsive actions of levetiracetam in a pentylenetetrazole kindling model. Epilepsy Res 89:360–364. doi:10.​1016/​j.​eplepsyres.​2010.​01.​011 PubMed CrossRef
    Oliveira AA, Nogueira CRA, Nascimento VS, Aguiar LMV, Freitas RM, Sousa FCF, Viana GSB, Fonteles MMF (2005) Evaluation of levetiracetam effects on pilocarpine-induced seizures: cholinergic muscarinic system involvement. Neurosci Lett 383:184–188. doi:10.​1016/​j.​neulet.​2005.​05.​048 CrossRef
    Poulsen CF, Simeone TA, Maar TE, Smith-Swintosky V, White HS, Schousboe A (2004) Modulation by topiramate of AMPA and kainate mediated calcium influx in cultured cerebral cortical, hippocampal and cerebellar neurons. Neurochem Res 29:275–282. doi:10.​1023/​B:​NERE.​0000010456.​92887.​3b PubMed CrossRef
    Rigo JM, Hans G, Nguyen L, Rocher V, Belachew S, Malgrange B, Leprince P, Moonen G, Selak I, Matagne A, Klitgaard H (2002) The anti-epileptic drug levetiracetam reverses the inhibition by negative allosteric modulators of neuronal GABA- and glycine-gated currents. Br J Pharmacol 136:659–672. doi:10.​1038/​sj.​bjp.​0704766 PubMed PubMedCentral CrossRef
    Roth MT, Fleegal MA, Lydic R, Baghdoyan HA (1996) Pontine acetylcholine release is regulated by muscarinic autoreceptors. Neuroreport 7:3069–3072. doi:10.​1097/​00001756-199611250-00055 PubMed CrossRef
    Senanayake N (1994) Reflex epilepsies: experience in Sri Lanka. Ceylon Med J 39:67–74PubMed
    Simeone TA, Wilcox KS, White HS (2011) c-AMP-dependent protein kinase A activity modulates topiramate potentiation of GABA(A) receptors. Epilepsy Res 96:176–179. doi:10.​1016/​j.​eplepsyres.​2011.​05.​009 PubMed CrossRef
    Striano S, Coppola A, del Gaudio L, Striano P (2012) Reflex seizures and reflex epilepsies: old models for understanding mechanisms of epileptogenesis. Epilepsy Res 100:1–11. doi:10.​1016/​j.​eplepsyres.​2012.​01.​013 PubMed CrossRef
    Tan U, Şenyuva F, Marangoz C (1978) Electrocorticographic effects of topically applied scopolamine. Epilepsia 19:223–232. doi:10.​1111/​j.​1528-1157.​1978.​tb04484.​x PubMed CrossRef
    Turski WA, Cavalheiro EA, Bortolotto ZA, Mello LM, Schwarz M, Turski L (1984) Seizures produced by pilocarpine in mice: a behavioral, electroencephalographic and morphological analysis. Brain Res 321:237–253. doi:10.​1016/​0006-8993(84)-90177.​X PubMed CrossRef
    Vannucchi MG, Pepeu G (1995) Muscarinic receptor modulation of acetylcholine release from rat cerebral cortex and hippocampus. Neurosci Lett 190:53–56. doi:10.​1016/​0304-3940(95)-11498-L PubMed CrossRef
    Wasterlain CG, Jonec V (1983) Chemical kindling by muscarinic amygdaloid stimulation in the rat. Brain Res 271:311–323. doi:10.​1016/​0006-8993(83)-90293-7 PubMed CrossRef
    Watanabe H, Shimizu H (1989) Effect of anticholinergic drugs on striatal acetylcholine release and motor activity in freely moving rats studied by brain microdialysis. Jpn J Pharmacol 51:75–82. doi:10.​1254/​jjp.​51.​75 PubMed CrossRef
    Zarrindast MR, Nouraei N, Khallilzadeh A, Askari E (2006) Influence of acute and sub-chronic nicotine pretreatment on morphine state-dependent learning. Behav Brain Res 173:268–273. doi:10.​1016/​j.​bbr.​2006.​06.​032 PubMed CrossRef
    Zona C, Ciotti MT, Avoli M (1997) Topiramate attenuates voltage-gated sodium currents in rat cerebellar granule cells. Neurosci Lett 231:123–126. doi:10.​1016/​S0303-3940(97)00543-0 PubMed CrossRef
  • 作者单位:Bahar Büget (1)
    Aslı Zengin Türkmen (2)
    Oruc Allahverdiyev (1)
    Nurhan Enginar (1)

    1. Department of Pharmacology, Istanbul Faculty of Medicine, Istanbul University, Çapa, 34093, Istanbul, Turkey
    2. Department of Neuroscience, Institute for Experimental Medicine (DETAE), Istanbul University, Istanbul, Turkey
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Biomedicine
    Pharmacology and Toxicology
    Neurosciences
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1432-1912
文摘
This study evaluated the effects of different doses of atropine and new antiepileptics, levetiracetam and topiramate, on the development of convulsions triggered by food intake in antimuscarinic-treated fasted animals. Mice deprived of food for 24 h and treated i.p. with atropine at a dose of 2.4 or 24 mg/kg developed convulsions after being allowed to eat ad libitum. No convulsions were observed in fasted animals treated with 0.24 mg/kg atropine. There was no difference in the incidence of convulsions between the two atropine treatments, but latency to convulsions was longer in 24 mg/kg atropine treated animals. The lowest dose of atropine, 0.24 mg/kg, caused stage 1 and stage 2 activity, but did not provide the convulsive endpoint (stage 3, 4, 5 activity). Administration of levetiracetam (50 or 200 mg/kg) or topiramate (50 or 100 mg/kg) to another group of 24-h fasted mice was ineffective in reducing the incidence of convulsions developed in the animals after 2.4 mg/kg atropine treatment and food intake. However, the higher dose of levetiracetam prolonged the onset of convulsions. Present results demonstrated the efficacy of low and high doses of atropine on the development of convulsions in fasted animals and provided additional evidence for the ineffectiveness of antiepileptic treatment in these seizures. Keywords Atropine-induced convulsion Food deprivation Food intake Levetiracetam Topiramate

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700