Loss of normal Alzheimer's disease-associated Presenilin 2 function alters antiseizure medicine potency and tolerability in the 6-Hz focal seizure model.
cFos
gabapentin
lamotrigine
levetiracetam
mouse seizure model
perampanel
piriform cortex
valproic acid
Journal
Frontiers in neurology
ISSN: 1664-2295
Titre abrégé: Front Neurol
Pays: Switzerland
ID NLM: 101546899
Informations de publication
Date de publication:
2023
2023
Historique:
received:
16
05
2023
accepted:
14
07
2023
medline:
18
8
2023
pubmed:
18
8
2023
entrez:
18
8
2023
Statut:
epublish
Résumé
Patients with early-onset Alzheimer's disease (EOAD) experience seizures and subclinical epileptiform activity, which may accelerate cognitive and functional decline. Antiseizure medicines (ASMs) may be a tractable disease-modifying strategy; numerous ASMs are marketed with well-established safety. However, little information is available to guide ASM selection as few studies have rigorously quantified ASM potency and tolerability in traditional seizure models in rodents with EOAD-associated risk factors. Presenilin 2 (PSEN2) variants evoke EOAD, and these patients experience seizures. This study thus established the anticonvulsant profile of mechanistically distinct ASMs in the frontline 6-Hz limbic seizure test evoked in PSEN2-knockout (KO) mice to better inform seizure management in EOAD. The median effective dose (ED50) of prototype ASMs was quantified in the 6-Hz test in male and female PSEN2-KO and wild-type (WT) C57BL/6J mice (3-4 months old). Minimal motor impairment (MMI) was assessed to estimate a protective index (PI). Immunohistological detection of cFos established the extent to which 6-Hz stimulation activates discrete brain regions in KO vs. WT mice. There were significant genotype-related differences in the potency and tolerability of several ASMs. Valproic acid and levetiracetam were significantly more potent in male KO than in WT mice. Additionally, high doses of valproic acid significantly worsened MMI in KO mice. Conversely, carbamazepine was significantly less potent in female KO vs. WT mice. In both male and female KO mice vs. WTs, perampanel and lamotrigine were equally potent. However, there were marked genotype-related shifts in PI of both carbamazepine and perampanel, with KO mice exhibiting less MMI at the highest doses tested. Gabapentin was ineffective against 6-Hz seizures in KO mice vs. WTs without MMI changes. Neuronal activation 90 min following 6-Hz stimulation was significantly increased in the posterior parietal association cortex overlying CA1 and in the piriform cortex of WT mice, while stimulation-induced increases in cFos immunoreactivity were absent in KO mice. Acute ASM potency and tolerability in the high-throughput 6-Hz test may be significantly altered with loss of normal PSEN2 function. Seizures in discrete EOAD populations may benefit from precisely selected medicines optimized for primary ASM pharmacological mechanisms.
Identifiants
pubmed: 37592944
doi: 10.3389/fneur.2023.1223472
pmc: PMC10427874
doi:
Types de publication
Journal Article
Langues
eng
Pagination
1223472Subventions
Organisme : NIA NIH HHS
ID : R01 AG067788
Pays : United States
Informations de copyright
Copyright © 2023 Lehmann and Barker-Haliski.
Déclaration de conflit d'intérêts
The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.
Références
Curr Alzheimer Res. 2016;13(7):817-30
pubmed: 26825094
Brain. 2010 Apr;133(Pt 4):1143-54
pubmed: 20375137
Epilepsia Open. 2018 Sep 15;3(Suppl Suppl 1):53-68
pubmed: 30450485
Oncotarget. 2017 Dec 15;9(19):15132-15143
pubmed: 29599933
Front Neurol. 2022 Apr 28;13:833624
pubmed: 35572927
Epilepsia. 2017 Jun;58(6):1073-1084
pubmed: 28449218
Epilepsia. 2020 Nov;61(11):2329-2339
pubmed: 33063849
Neurology. 2020 Oct 20;95(16):e2259-e2270
pubmed: 32764101
Clin Neurophysiol. 2021 Aug;132(8):1982-1989
pubmed: 34034963
Cell. 2016 Jun 30;166(1):193-208
pubmed: 27293189
J Pharmacol Exp Ther. 2019 Oct;371(1):25-35
pubmed: 31375638
Epilepsia. 2018 Jan;59(1):67-78
pubmed: 29152735
Lancet. 2020 Feb 29;395(10225):735-748
pubmed: 32113502
Epilepsia. 2020 Sep;61(9):2022-2034
pubmed: 32757210
Neurochem Res. 2017 Jul;42(7):1873-1888
pubmed: 28290134
Neurochem Res. 2017 Jul;42(7):1904-1918
pubmed: 28303498
Proc Natl Acad Sci U S A. 1999 Oct 12;96(21):11872-7
pubmed: 10518543
Epilepsia. 2002 Apr;43(4):325-35
pubmed: 11952761
Epilepsy Res. 2017 Aug;134:9-15
pubmed: 28521116
Arch Neurol. 2009 Apr;66(4):435-40
pubmed: 19204149
Expert Opin Drug Metab Toxicol. 2020 Oct;16(10):983-995
pubmed: 32757857
J Neurosci. 2022 Dec 7;42(49):9253-9262
pubmed: 36288945
J Alzheimers Dis. 2017;60(1):211-223
pubmed: 28826176
Seizure. 2022 Jan;94:107-111
pubmed: 34890976
Front Neurol. 2014 Dec 08;5:259
pubmed: 25538678
Proc Natl Acad Sci U S A. 2012 Oct 16;109(42):E2895-903
pubmed: 22869752
Epilepsy Curr. 2016 May-Jun;16(3):182-6
pubmed: 27330450
Arch Gen Psychiatry. 2011 Aug;68(8):853-61
pubmed: 21810649
Exp Neurol. 2023 Mar;361:114321
pubmed: 36634751
Epilepsia. 2008;49 Suppl 3:23-30
pubmed: 18304253
Rev Neurol (Paris). 2006 Oct;162(10):903-7
pubmed: 17028556
Sci Rep. 2015 Jun 09;5:10934
pubmed: 26055072
Neuron. 2007 Sep 6;55(5):697-711
pubmed: 17785178
Dtsch Arztebl Int. 2009 May;106(19):335-9
pubmed: 19547734
J Am Pharm Assoc Am Pharm Assoc. 1957 Mar;46(3):208-9
pubmed: 13502156
Trials. 2021 Jul 31;22(1):508
pubmed: 34332638
J Neurosci. 2008 Nov 12;28(46):11760-7
pubmed: 19005037
Neurology. 2016 Aug 30;87(9):912-9
pubmed: 27466472
Epilepsy Res. 2015 Sep;115:67-72
pubmed: 26220379
Neurobiol Dis. 2020 Mar;136:104719
pubmed: 31862541
Nat Med. 2017 Jun;23(6):678-680
pubmed: 28459436
Science. 1934 Jan 12;79(2037):38-9
pubmed: 17813446
Neuropharmacology. 2020 May 1;167:107750
pubmed: 31469995
JAMA Neurol. 2021 Nov 1;78(11):1345-1354
pubmed: 34570177
Exp Neurol. 2023 Feb;360:114288
pubmed: 36471511
Curr Opin Neurobiol. 2012 Jun;22(3):461-9
pubmed: 22217700
Arch Intern Med. 1997 Mar 24;157(6):605-17
pubmed: 9080915
Eur J Neurol. 2007 Oct;14(10):1176-8
pubmed: 17880574
Clin Pharmacokinet. 2013 Aug;52(8):627-45
pubmed: 23640503
Neurochem Res. 2017 Jul;42(7):1894-1903
pubmed: 28462454
Epilepsy Res. 2015 May;112:43-55
pubmed: 25847338
Ann Neurol. 2016 Dec;80(6):858-870
pubmed: 27696483
Epilepsia. 2006 May;47(5):867-72
pubmed: 16686651
J Alzheimers Dis. 2020;77(2):675-688
pubmed: 32741831
Front Neuroendocrinol. 1993 Jul;14(3):173-213
pubmed: 8349003
J Alzheimers Dis. 2010;21(2):655-66
pubmed: 20571220
Epilepsia. 2018 Jun;59(6):1245-1256
pubmed: 29750337
JAMA Neurol. 2013 Sep 1;70(9):1158-66
pubmed: 23835471
Epilepsy Curr. 2016 May-Jun;16(3):192-7
pubmed: 27330452
PLoS One. 2020 Jun 1;15(6):e0234070
pubmed: 32479532
Hum Brain Mapp. 2023 Jun 1;44(8):3196-3209
pubmed: 37052063
Epilepsy Res. 2001 Dec;47(3):217-27
pubmed: 11738929
Epilepsy Res. 2011 Mar;94(1-2):75-85
pubmed: 21300523
J Neurochem. 2005 Sep;94(5):1189-201
pubmed: 15992373
Neuron. 2012 May 10;74(3):467-74
pubmed: 22578498
Dev Cell. 2022 Jul 11;57(13):1643-1660.e7
pubmed: 35654038
PLoS One. 2010 Dec 29;5(12):e15743
pubmed: 21206757
Neurology. 2011 Sep 27;77(13):1263-71
pubmed: 21917762
Epilepsy Curr. 2016 May-Jun;16(3):198-205
pubmed: 27330453
Br J Clin Pharmacol. 2018 Jan;84(1):97-111
pubmed: 28815754
Epilepsia. 2023 Jan;64(1):231-246
pubmed: 36346209
Epilepsia. 2022 Oct;63(10):2703-2715
pubmed: 35775150
Cell Calcium. 2006 Jun;39(6):539-50
pubmed: 16620965
Lancet Neurol. 2017 Apr;16(4):311-322
pubmed: 28327340
Brain Res. 2000 Oct 20;881(1):9-17
pubmed: 11033088
Epilepsia. 2021 Jul;62(7):1665-1676
pubmed: 34002394
Epilepsy Behav. 2010 Apr;17(4):461-6
pubmed: 20188634
Neuropharmacology. 2020 May 15;168:107966
pubmed: 32120063
J Neurochem. 2013 Dec;127(5):592-9
pubmed: 23952003
Epilepsia. 2015 Jun;56(6):e73-7
pubmed: 25879152
Free Radic Biol Med. 2014 Feb;67:387-95
pubmed: 24355211
Br J Clin Pharmacol. 2023 Jan;89(1):410-415
pubmed: 36097795
Neurochem Res. 2021 Aug;46(8):1895-1912
pubmed: 33929683
Epilepsy Behav. 2017 Aug;73:214-235
pubmed: 28651171
J Epilepsy Res. 2021 Jun 30;11(1):93-95
pubmed: 34395228
Neurobiol Aging. 2016 Dec;48:161-171
pubmed: 27701029
Cold Spring Harb Perspect Med. 2012 Jan;2(1):a006304
pubmed: 22315713
Lancet. 2001 Apr 28;357(9265):1349-53
pubmed: 11343760
Epilepsy Res. 2016 Oct;126:157-84
pubmed: 27505294
EMBO Rep. 2007 Feb;8(2):141-6
pubmed: 17268505
Neuron. 2006 Dec 7;52(5):831-43
pubmed: 17145504
Neuropharmacology. 2020 Apr;166:107811
pubmed: 31790717