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Published in: Neurotherapeutics 2/2011

01-04-2011 | Original Article

Interleukin-1β Biosynthesis Inhibition Reduces Acute Seizures and Drug Resistant Chronic Epileptic Activity in Mice

Authors: Mattia Maroso, Silvia Balosso, Teresa Ravizza, Valentina Iori, Christopher Ian Wright, Jacqueline French, Annamaria Vezzani, Phd

Published in: Neurotherapeutics | Issue 2/2011

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Summary

Experimental evidence and clinical observations indicate that brain inflammation is an important factor in epilepsy. In particular, induction of interleukin-converting enzyme (ICE)/caspase-1 and activation of interleukin (IL)-1β/IL-1 receptor type 1 axis both occur in human epilepsy, and contribute to experimentally induced acute seizures. In this study, the anticonvulsant activity of VX-765 (a selective ICE/caspase-1 inhibitor) was examined in a mouse model of chronic epilepsy with spontaneous recurrent epileptic activity refractory to some common anticonvulsant drugs. Moreover, the effects of this drug were studied in one acute model of seizures in mice, previously shown to involve activation of ICE/caspase-1. Quantitative analysis of electroencephalogram activity was done in mice exposed to acute seizures or those developing chronic epileptic activity after status epilepticus to assess the anticonvulsant effects of systemic administration of VX-765. Histological and immunohistochemical analysis of brain tissue was carried out at the end of pharmacological experiments in epileptic mice to evaluate neuropathology, glia activation and IL-1β expression, and the effect of treatment. Repeated systemic administration of VX-765 significantly reduced chronic epileptic activity in mice in a dose-dependent fashion (12.5-200 mg/kg). This effect was observed at doses ≥ 50 mg/kg, and was reversible with discontinuation of the drug. Maximal drug effect was associated with inhibition of IL-1β synthesis in activated astrocytes. The same dose regimen of VX-765 also reduced acute seizures in mice and delayed their onset time. These results support a new target system for anticonvulsant pharmacological intervention to control epileptic activity that does not respond to some common anticonvulsant drugs.
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Literature
1.
go back to reference Vezzani A, Balosso S, Ravizza T. The role of cytokines in the pathophysiology of epilepsy. Brain Behav Immun 2008;22:797–803.PubMedCrossRef Vezzani A, Balosso S, Ravizza T. The role of cytokines in the pathophysiology of epilepsy. Brain Behav Immun 2008;22:797–803.PubMedCrossRef
2.
go back to reference Ravizza T, Balosso S, Aronica E, Vezzani A. Brain Inflammation and epilepsy. In: Rho JM, Sankar R, Strafstrom CE, eds. Epilepsy: mechanisms, models, and translational perpsectives. Boca Raton, FL: CRC Press; 2010:45–59.CrossRef Ravizza T, Balosso S, Aronica E, Vezzani A. Brain Inflammation and epilepsy. In: Rho JM, Sankar R, Strafstrom CE, eds. Epilepsy: mechanisms, models, and translational perpsectives. Boca Raton, FL: CRC Press; 2010:45–59.CrossRef
3.
go back to reference Minami M, Kuraishi Y, Satoh M. Effects of kainic acid on messenger RNA levels of IL-1 beta, IL-6, TNF alpha and LIF in the rat brain. Biochem Biophys Res Commun 1991;176:593–598.PubMedCrossRef Minami M, Kuraishi Y, Satoh M. Effects of kainic acid on messenger RNA levels of IL-1 beta, IL-6, TNF alpha and LIF in the rat brain. Biochem Biophys Res Commun 1991;176:593–598.PubMedCrossRef
4.
go back to reference Eriksson C, Van Dam AM, Lucassen PJ, Bol JG, Winblad B, Schultzberg M. Immunohistochemical localization of interleukin-1beta, interleukin-1 receptor antagonist and interleukin-1beta converting enzyme/caspase-1 in the rat brain after peripheral administration of kainic acid. Neuroscience 1999;93:915–930.PubMedCrossRef Eriksson C, Van Dam AM, Lucassen PJ, Bol JG, Winblad B, Schultzberg M. Immunohistochemical localization of interleukin-1beta, interleukin-1 receptor antagonist and interleukin-1beta converting enzyme/caspase-1 in the rat brain after peripheral administration of kainic acid. Neuroscience 1999;93:915–930.PubMedCrossRef
5.
go back to reference Vezzani A, Conti M, De Luigi A, et al. Interleukin-1beta immunoreactivity and microglia are enhanced in the rat hippocampus by focal kainate application: functional evidence for enhancement of electrographic seizures. J Neurosci 1999;19:5054–5065.PubMed Vezzani A, Conti M, De Luigi A, et al. Interleukin-1beta immunoreactivity and microglia are enhanced in the rat hippocampus by focal kainate application: functional evidence for enhancement of electrographic seizures. J Neurosci 1999;19:5054–5065.PubMed
6.
go back to reference De Simoni MG, Perego C, Ravizza T, et al. Inflammatory cytokines and related genes are induced in the rat hippocampus by limbic status epilepticus. Eur J Neurosci 2000;12:2623–2633.PubMedCrossRef De Simoni MG, Perego C, Ravizza T, et al. Inflammatory cytokines and related genes are induced in the rat hippocampus by limbic status epilepticus. Eur J Neurosci 2000;12:2623–2633.PubMedCrossRef
7.
go back to reference Dubé C, Vezzani A, Behrens M, Bartfai T, Baram TZ. Interleukin-1beta contributes to the generation of experimental febrile seizures. Ann Neurol 2005;57:152–155.PubMedCrossRef Dubé C, Vezzani A, Behrens M, Bartfai T, Baram TZ. Interleukin-1beta contributes to the generation of experimental febrile seizures. Ann Neurol 2005;57:152–155.PubMedCrossRef
8.
go back to reference Heida JG, Moshe SL, Pittman QJ. The role of interleukin-1beta in febrile seizures. Brain Dev 2009;31:388–393.PubMedCrossRef Heida JG, Moshe SL, Pittman QJ. The role of interleukin-1beta in febrile seizures. Brain Dev 2009;31:388–393.PubMedCrossRef
9.
go back to reference Ravizza T, Lucas SM, Balosso S, et al. Inactivation of caspase-1 in rodent brain: a novel anticonvulsive strategy. Epilepsia 2006;47:1160–1168.PubMedCrossRef Ravizza T, Lucas SM, Balosso S, et al. Inactivation of caspase-1 in rodent brain: a novel anticonvulsive strategy. Epilepsia 2006;47:1160–1168.PubMedCrossRef
10.
go back to reference Ravizza T, Gagliardi B, Noé F, Boer K, Aronica E, Vezzani A. Innate and adaptive immunity during epileptogenesis and spontaneous seizures: evidence from experimental models and human temporal lobe epilepsy. Neurobiol Dis 2008;29:142–160.PubMedCrossRef Ravizza T, Gagliardi B, Noé F, Boer K, Aronica E, Vezzani A. Innate and adaptive immunity during epileptogenesis and spontaneous seizures: evidence from experimental models and human temporal lobe epilepsy. Neurobiol Dis 2008;29:142–160.PubMedCrossRef
11.
go back to reference Balosso S, Maroso M, Sanchez-Alavez M, et al. A novel non-transcriptional pathway mediates the proconvulsive effects of interleukin-1beta. Brain 2008;131:3256–3265.PubMedCrossRef Balosso S, Maroso M, Sanchez-Alavez M, et al. A novel non-transcriptional pathway mediates the proconvulsive effects of interleukin-1beta. Brain 2008;131:3256–3265.PubMedCrossRef
12.
go back to reference Ravizza T, Noé F, Zardoni D, Vaghi V, Sifringer M, Vezzani A. Interleukin converting enzyme inhibition impairs kindling epileptogenesis in rats by blocking astrocytic IL-1beta production. Neurobiol Dis 2008;31:327–333.PubMedCrossRef Ravizza T, Noé F, Zardoni D, Vaghi V, Sifringer M, Vezzani A. Interleukin converting enzyme inhibition impairs kindling epileptogenesis in rats by blocking astrocytic IL-1beta production. Neurobiol Dis 2008;31:327–333.PubMedCrossRef
13.
go back to reference Vezzani A, Moneta D, Conti M, et al. Powerful anticonvulsant action of IL-1 receptor antagonist on intracerebral injection and astrocytic overexpression in mice. Proc Natl Acad Sci U S A 2000;97:11534–11539.PubMedCrossRef Vezzani A, Moneta D, Conti M, et al. Powerful anticonvulsant action of IL-1 receptor antagonist on intracerebral injection and astrocytic overexpression in mice. Proc Natl Acad Sci U S A 2000;97:11534–11539.PubMedCrossRef
14.
go back to reference Vezzani A, Moneta D, Richichi C, et al. Functional role of inflammatory cytokines and antiinflammatory molecules in seizures and epileptogenesis. Epilepsia 2002;43(suppl 5):30–35.PubMedCrossRef Vezzani A, Moneta D, Richichi C, et al. Functional role of inflammatory cytokines and antiinflammatory molecules in seizures and epileptogenesis. Epilepsia 2002;43(suppl 5):30–35.PubMedCrossRef
15.
go back to reference Marchi N, Fan Q, Ghosh C, et al. Antagonism of peripheral inflammation reduces the severity of status epilepticus. Neurobiol Dis 2009;33:171–181.PubMedCrossRef Marchi N, Fan Q, Ghosh C, et al. Antagonism of peripheral inflammation reduces the severity of status epilepticus. Neurobiol Dis 2009;33:171–181.PubMedCrossRef
16.
go back to reference Randle JC, Harding MW, Ku G, Schonharting M, Kurrle R. ICE/Caspase-1 inhibitors as novel anti-inflammatory drugs. Expert Opin Investig Drugs 2001;10:1207–1209.PubMedCrossRef Randle JC, Harding MW, Ku G, Schonharting M, Kurrle R. ICE/Caspase-1 inhibitors as novel anti-inflammatory drugs. Expert Opin Investig Drugs 2001;10:1207–1209.PubMedCrossRef
17.
go back to reference Fantuzzi G, Dinarello CA. Interleukin-18 and interleukin-1 beta: two cytokine substrates for ICE (caspase-1). J Clin Immunol 1999;19:1–11.PubMedCrossRef Fantuzzi G, Dinarello CA. Interleukin-18 and interleukin-1 beta: two cytokine substrates for ICE (caspase-1). J Clin Immunol 1999;19:1–11.PubMedCrossRef
18.
go back to reference Henshall DC, Clark RS, Adelson PD, Chen M, Watkins SC, Simon RP. Alterations in bcl-2 and caspase gene family protein expression in human temporal lobe epilepsy. Neurology 2000;55:250–257.PubMed Henshall DC, Clark RS, Adelson PD, Chen M, Watkins SC, Simon RP. Alterations in bcl-2 and caspase gene family protein expression in human temporal lobe epilepsy. Neurology 2000;55:250–257.PubMed
19.
go back to reference Sheng JG, Boop FA, Mrak RE, Griffin WS. Increased neuronal beta-amyloid precursor protein expression in human temporal lobe epilepsy: association with interleukin-1 alpha immunoreactivity. J Neurochem 1994;63:1872–1879.PubMedCrossRef Sheng JG, Boop FA, Mrak RE, Griffin WS. Increased neuronal beta-amyloid precursor protein expression in human temporal lobe epilepsy: association with interleukin-1 alpha immunoreactivity. J Neurochem 1994;63:1872–1879.PubMedCrossRef
20.
go back to reference Crespel A, Coubes P, Rousset MC, et al. Inflammatory reactions in human medial temporal lobe epilepsy with hippocampal sclerosis. Brain Res 2002;952:159–169.PubMedCrossRef Crespel A, Coubes P, Rousset MC, et al. Inflammatory reactions in human medial temporal lobe epilepsy with hippocampal sclerosis. Brain Res 2002;952:159–169.PubMedCrossRef
21.
go back to reference Ravizza T, Boer K, Redeker S, et al. The IL-1beta system in epilepsy-associated malformations of cortical development. Neurobiol Dis 2006;24:128–143.PubMedCrossRef Ravizza T, Boer K, Redeker S, et al. The IL-1beta system in epilepsy-associated malformations of cortical development. Neurobiol Dis 2006;24:128–143.PubMedCrossRef
22.
go back to reference Boer K, Jansen F, Nellist M, et al. Inflammatory processes in cortical tubers and subependymal giant cell tumors of tuberous sclerosis complex. Epilepsy Res 2008;78:7–21.PubMedCrossRef Boer K, Jansen F, Nellist M, et al. Inflammatory processes in cortical tubers and subependymal giant cell tumors of tuberous sclerosis complex. Epilepsy Res 2008;78:7–21.PubMedCrossRef
23.
go back to reference Bouilleret V, Ridoux V, Depaulis A, Marescaux C, Nehlig A, Le Gal La Salle G. Recurrent seizures and hippocampal sclerosis following intrahippocampal kainate injection in adult mice: electroencephalography, histopathology and synaptic reorganization similar to mesial temporal lobe epilepsy. Neuroscience 1999;89:717–729.PubMedCrossRef Bouilleret V, Ridoux V, Depaulis A, Marescaux C, Nehlig A, Le Gal La Salle G. Recurrent seizures and hippocampal sclerosis following intrahippocampal kainate injection in adult mice: electroencephalography, histopathology and synaptic reorganization similar to mesial temporal lobe epilepsy. Neuroscience 1999;89:717–729.PubMedCrossRef
24.
go back to reference Riban V, Bouilleret V, Pham-Le BT, Fritschy JM, Marescaux C, Depaulis A. Evolution of hippocampal epileptic activity during the development of hippocampal sclerosis in a mouse model of temporal lobe epilepsy. Neuroscience 2002;112:101–111.PubMedCrossRef Riban V, Bouilleret V, Pham-Le BT, Fritschy JM, Marescaux C, Depaulis A. Evolution of hippocampal epileptic activity during the development of hippocampal sclerosis in a mouse model of temporal lobe epilepsy. Neuroscience 2002;112:101–111.PubMedCrossRef
25.
go back to reference Maroso M, Balosso S, Ravizza T, et al. Toll-like receptor 4 and high-mobility group box-1 are involved in ictogenesis and can be targeted to reduce seizures. Nat Med 2010;16:413–419.PubMedCrossRef Maroso M, Balosso S, Ravizza T, et al. Toll-like receptor 4 and high-mobility group box-1 are involved in ictogenesis and can be targeted to reduce seizures. Nat Med 2010;16:413–419.PubMedCrossRef
26.
go back to reference Balosso S, Ravizza T, Perego C, et al. Tumor necrosis factor-alpha inhibits seizures in mice via p75 receptors. Ann Neurol 2005;57:804–812.PubMedCrossRef Balosso S, Ravizza T, Perego C, et al. Tumor necrosis factor-alpha inhibits seizures in mice via p75 receptors. Ann Neurol 2005;57:804–812.PubMedCrossRef
27.
go back to reference Antonucci F, Di Garbo A, Novelli E, et al. Botulinum neurotoxin E (BoNT/E) reduces CA1 neuron loss and granule cell dispersion, with no effects on chronic seizures, in a mouse model of temporal lobe epilepsy. Exp Neurol 2008;210:388–401.PubMedCrossRef Antonucci F, Di Garbo A, Novelli E, et al. Botulinum neurotoxin E (BoNT/E) reduces CA1 neuron loss and granule cell dispersion, with no effects on chronic seizures, in a mouse model of temporal lobe epilepsy. Exp Neurol 2008;210:388–401.PubMedCrossRef
28.
go back to reference Kralic JE, Ledergerber DA, Fritschy JM. Disruption of the neurogenic potential of the dentate gyrus in a mouse model of temporal lobe epilepsy with focal seizures. Eur J Neurosci 2005;22:1916–1927.PubMedCrossRef Kralic JE, Ledergerber DA, Fritschy JM. Disruption of the neurogenic potential of the dentate gyrus in a mouse model of temporal lobe epilepsy with focal seizures. Eur J Neurosci 2005;22:1916–1927.PubMedCrossRef
29.
go back to reference Suzuki F, Heinrich C, Boehrer A, et al. Glutamate receptor antagonists and benzodiazepine inhibit the progression of granule cell dispersion in a mouse model of mesial temporal lobe epilepsy. Epilepsia 2005;46:193–202.PubMedCrossRef Suzuki F, Heinrich C, Boehrer A, et al. Glutamate receptor antagonists and benzodiazepine inhibit the progression of granule cell dispersion in a mouse model of mesial temporal lobe epilepsy. Epilepsia 2005;46:193–202.PubMedCrossRef
30.
go back to reference Paxinos KB. The mouse brain in stereotaxic coordinates. San Diego: Academic Press, 1997. Paxinos KB. The mouse brain in stereotaxic coordinates. San Diego: Academic Press, 1997.
31.
go back to reference Costantin L, Bozzi Y, Richichi C, et al. Antiepileptic effects of botulinum neurotoxin E. J Neurosci 2005;25:1943–1951.PubMedCrossRef Costantin L, Bozzi Y, Richichi C, et al. Antiepileptic effects of botulinum neurotoxin E. J Neurosci 2005;25:1943–1951.PubMedCrossRef
32.
go back to reference Ji-qun C, Ishihara K, Nagayama T, Serikawa T, Sasa M. Long-lasting antiepileptic effects of levetiracetam against epileptic seizures in the spontaneously epileptic rat (SER): differentiation of levetiracetam from conventional antiepileptic drugs. Epilepsia 2005;46:1362–1370.PubMedCrossRef Ji-qun C, Ishihara K, Nagayama T, Serikawa T, Sasa M. Long-lasting antiepileptic effects of levetiracetam against epileptic seizures in the spontaneously epileptic rat (SER): differentiation of levetiracetam from conventional antiepileptic drugs. Epilepsia 2005;46:1362–1370.PubMedCrossRef
33.
go back to reference Zuckerman SH, Bendele AM. Regulation of serum tumor necrosis factor in glucocorticoid-sensitive and -resistant rodent endotoxin shock models. Infect Immun 1989;57:3009–3013.PubMed Zuckerman SH, Bendele AM. Regulation of serum tumor necrosis factor in glucocorticoid-sensitive and -resistant rodent endotoxin shock models. Infect Immun 1989;57:3009–3013.PubMed
34.
go back to reference Ravizza T, Vezzani A. Status epilepticus induces time-dependent neuronal and astrocytic expression of interleukin-1 receptor type I in the rat limbic system. Neuroscience 2006;137:301–308.PubMedCrossRef Ravizza T, Vezzani A. Status epilepticus induces time-dependent neuronal and astrocytic expression of interleukin-1 receptor type I in the rat limbic system. Neuroscience 2006;137:301–308.PubMedCrossRef
35.
go back to reference Zangaladze A, Nei M, Liporace JD, Sperling MR. Characteristics and clinical significance of subclinical seizures. Epilepsia 2008;49:2016–2021.PubMedCrossRef Zangaladze A, Nei M, Liporace JD, Sperling MR. Characteristics and clinical significance of subclinical seizures. Epilepsia 2008;49:2016–2021.PubMedCrossRef
36.
go back to reference Sperling MR, O'Connor MJ. Auras and subclinical seizures: characteristics and prognostic significance. Ann Neurol 1990;28:320–328.PubMedCrossRef Sperling MR, O'Connor MJ. Auras and subclinical seizures: characteristics and prognostic significance. Ann Neurol 1990;28:320–328.PubMedCrossRef
37.
go back to reference Stack JH, Beaumont K, Larsen PD, et al. IL-converting enzyme/caspase-1 inhibitor VX-765 blocks the hypersensitive response to an inflammatory stimulus in monocytes from familial cold autoinflammatory syndrome patients. J Immunol 2005;175:2630–2634.PubMed Stack JH, Beaumont K, Larsen PD, et al. IL-converting enzyme/caspase-1 inhibitor VX-765 blocks the hypersensitive response to an inflammatory stimulus in monocytes from familial cold autoinflammatory syndrome patients. J Immunol 2005;175:2630–2634.PubMed
38.
go back to reference Bernardino L, Balosso S, Ravizza T, et al. Inflammatory events in hippocampal slice cultures prime neuronal susceptibility to excitotoxic injury: a crucial role of P2X7 receptor-mediated IL-1beta release. J Neurochem 2008;106:271–280.PubMedCrossRef Bernardino L, Balosso S, Ravizza T, et al. Inflammatory events in hippocampal slice cultures prime neuronal susceptibility to excitotoxic injury: a crucial role of P2X7 receptor-mediated IL-1beta release. J Neurochem 2008;106:271–280.PubMedCrossRef
39.
go back to reference Viviani B, Bartesaghi S, Gardoni F, et al. Interleukin-1beta enhances NMDA receptor-mediated intracellular calcium increase through activation of the Src family of kinases. J Neurosci 2003;23:8692–8700.PubMed Viviani B, Bartesaghi S, Gardoni F, et al. Interleukin-1beta enhances NMDA receptor-mediated intracellular calcium increase through activation of the Src family of kinases. J Neurosci 2003;23:8692–8700.PubMed
40.
go back to reference Fellin T. Communication between neurons and astrocytes: relevance to the modulation of synaptic and network activity. J Neurochem 2009;108:533–544.PubMedCrossRef Fellin T. Communication between neurons and astrocytes: relevance to the modulation of synaptic and network activity. J Neurochem 2009;108:533–544.PubMedCrossRef
41.
go back to reference Fellin T, Gomez-Gonzalo M, Gobbo S, Carmignoto G, Haydon PG. Astrocytic glutamate is not necessary for the generation of epileptiform neuronal activity in hippocampal slices. J Neurosci 2006;26:9312–9322.PubMedCrossRef Fellin T, Gomez-Gonzalo M, Gobbo S, Carmignoto G, Haydon PG. Astrocytic glutamate is not necessary for the generation of epileptiform neuronal activity in hippocampal slices. J Neurosci 2006;26:9312–9322.PubMedCrossRef
42.
go back to reference Hu S, Sheng WS, Ehrlich LC, Peterson PK, Chao CC. Cytokine effects on glutamate uptake by human astrocytes. Neuroimmunomodulation 2000;7:153–159.PubMedCrossRef Hu S, Sheng WS, Ehrlich LC, Peterson PK, Chao CC. Cytokine effects on glutamate uptake by human astrocytes. Neuroimmunomodulation 2000;7:153–159.PubMedCrossRef
43.
go back to reference Bezzi P, Domercq M, Brambilla L, et al. CXCR4-activated astrocyte glutamate release via TNFalpha: amplification by microglia triggers neurotoxicity. Nat Neurosci 2001;4:702–710.PubMedCrossRef Bezzi P, Domercq M, Brambilla L, et al. CXCR4-activated astrocyte glutamate release via TNFalpha: amplification by microglia triggers neurotoxicity. Nat Neurosci 2001;4:702–710.PubMedCrossRef
44.
go back to reference Vezzani A, French J, Bartfai T, Baram TZ. The role of inflammation in epilepsy. Nat Rev Neurol 2011;7:31–40.PubMedCrossRef Vezzani A, French J, Bartfai T, Baram TZ. The role of inflammation in epilepsy. Nat Rev Neurol 2011;7:31–40.PubMedCrossRef
45.
go back to reference Steimer T, Python A, Schulz PE, Aubry JM. Plasma corticosterone, dexamethasone (DEX) suppression and DEX/CRH tests in a rat model of genetic vulnerability to depression. Psychoneuroendocrinology 2007;32:575–579.PubMedCrossRef Steimer T, Python A, Schulz PE, Aubry JM. Plasma corticosterone, dexamethasone (DEX) suppression and DEX/CRH tests in a rat model of genetic vulnerability to depression. Psychoneuroendocrinology 2007;32:575–579.PubMedCrossRef
46.
go back to reference Hansen DK, LaBorde JB, Wall KS, Holson RR, Young JF. Pharmacokinetic considerations of dexamethasone-induced developmental toxicity in rats. Toxicol Sci 1999;48:230–239.PubMedCrossRef Hansen DK, LaBorde JB, Wall KS, Holson RR, Young JF. Pharmacokinetic considerations of dexamethasone-induced developmental toxicity in rats. Toxicol Sci 1999;48:230–239.PubMedCrossRef
47.
go back to reference Buckingham JC, Loxley HD, Taylor AD, Flower RJ. Cytokines, glucocorticoids and neuroendocrine function. Pharmacol Res 1994;30:35–42.PubMedCrossRef Buckingham JC, Loxley HD, Taylor AD, Flower RJ. Cytokines, glucocorticoids and neuroendocrine function. Pharmacol Res 1994;30:35–42.PubMedCrossRef
48.
go back to reference Goshen I, Yirmiya R. Interleukin-1 (IL-1): a central regulator of stress responses. Front Neuroendocrinol 2009;30:30–45.PubMedCrossRef Goshen I, Yirmiya R. Interleukin-1 (IL-1): a central regulator of stress responses. Front Neuroendocrinol 2009;30:30–45.PubMedCrossRef
49.
go back to reference Dinkel K, MacPherson A, Sapolsky RM. Novel glucocorticoid effects on acute inflammation in the CNS. J Neurochem 2003;84:705–716.PubMedCrossRef Dinkel K, MacPherson A, Sapolsky RM. Novel glucocorticoid effects on acute inflammation in the CNS. J Neurochem 2003;84:705–716.PubMedCrossRef
50.
go back to reference Sapolsky RM. A mechanism for glucocorticoid toxicity in the hippocampus: increased neuronal vulnerability to metabolic insults. J Neurosci 1985;5:1228–1232.PubMed Sapolsky RM. A mechanism for glucocorticoid toxicity in the hippocampus: increased neuronal vulnerability to metabolic insults. J Neurosci 1985;5:1228–1232.PubMed
51.
go back to reference Stein-Behrens BA, Elliott EM, Miller CA, Schilling JW, Newcombe R, Sapolsky RM. Glucocorticoids exacerbate kainic acid-induced extracellular accumulation of excitatory amino acids in the rat hippocampus. J Neurochem 1992;58:1730–1735.PubMedCrossRef Stein-Behrens BA, Elliott EM, Miller CA, Schilling JW, Newcombe R, Sapolsky RM. Glucocorticoids exacerbate kainic acid-induced extracellular accumulation of excitatory amino acids in the rat hippocampus. J Neurochem 1992;58:1730–1735.PubMedCrossRef
52.
go back to reference Imperato AK, Bingham CO 3 rd, Abramson SB. Overview of benefit/risk of biological agents. Clin Exp Rheumatol 2004;22:S108-S114.PubMed Imperato AK, Bingham CO 3 rd, Abramson SB. Overview of benefit/risk of biological agents. Clin Exp Rheumatol 2004;22:S108-S114.PubMed
53.
go back to reference Cornelis S, Kersse K, Festjens N, Lamkanfi M, Vandenabeele P. Inflammatory caspases: targets for novel therapies. Curr Pharm Des 2007;13:367–385.PubMedCrossRef Cornelis S, Kersse K, Festjens N, Lamkanfi M, Vandenabeele P. Inflammatory caspases: targets for novel therapies. Curr Pharm Des 2007;13:367–385.PubMedCrossRef
54.
go back to reference Vezzani A, Balosso S, Maroso M, Zardoni D, Noé F, Ravizza T. ICE/caspase 1 inhibitors and IL-1beta receptor antagonists as potential therapeutics in epilepsy. Curr Opin Investig Drugs 2010;11:43–50.PubMed Vezzani A, Balosso S, Maroso M, Zardoni D, Noé F, Ravizza T. ICE/caspase 1 inhibitors and IL-1beta receptor antagonists as potential therapeutics in epilepsy. Curr Opin Investig Drugs 2010;11:43–50.PubMed
Metadata
Title
Interleukin-1β Biosynthesis Inhibition Reduces Acute Seizures and Drug Resistant Chronic Epileptic Activity in Mice
Authors
Mattia Maroso
Silvia Balosso
Teresa Ravizza
Valentina Iori
Christopher Ian Wright
Jacqueline French
Annamaria Vezzani, Phd
Publication date
01-04-2011
Publisher
Springer-Verlag
Published in
Neurotherapeutics / Issue 2/2011
Print ISSN: 1933-7213
Electronic ISSN: 1878-7479
DOI
https://doi.org/10.1007/s13311-011-0039-z

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