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Riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy

Epileptogenic seizures, or status epilepticus (SE), leads to excitotoxic injury in hippocampal and limbic neurons in the kainic acid (KA) animal model of temporal lobe epilepsy (TLE). Here, we have further characterized neural activity regulated methylaminoisobutryic acid (MeAIB)/glutamine transport...

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Autores principales: Kyllo, Thomas, Singh, Vikrant, Shim, Heesung, Latika, Singh, Nguyen, Hai M., Chen, Yi-Je, Terry, Ellen, Wulff, Heike, Erickson, Jeffrey D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9843824/
https://www.ncbi.nlm.nih.gov/pubmed/36436594
http://dx.doi.org/10.1016/j.neuropharm.2022.109349
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author Kyllo, Thomas
Singh, Vikrant
Shim, Heesung
Latika, Singh
Nguyen, Hai M.
Chen, Yi-Je
Terry, Ellen
Wulff, Heike
Erickson, Jeffrey D.
author_facet Kyllo, Thomas
Singh, Vikrant
Shim, Heesung
Latika, Singh
Nguyen, Hai M.
Chen, Yi-Je
Terry, Ellen
Wulff, Heike
Erickson, Jeffrey D.
author_sort Kyllo, Thomas
collection PubMed
description Epileptogenic seizures, or status epilepticus (SE), leads to excitotoxic injury in hippocampal and limbic neurons in the kainic acid (KA) animal model of temporal lobe epilepsy (TLE). Here, we have further characterized neural activity regulated methylaminoisobutryic acid (MeAIB)/glutamine transport activity in mature rat hippocampal neurons in vitro that is inhibited by riluzole (IC(50) = 1 μM), an anti-convulsant benzothiazole agent. We screened a library of riluzole derivatives and identified SKA-41 followed by a second screen and synthesized several novel chlorinated aminothiazoles (SKA-377, SKA-378, SKA-379) that are also potent MeAIB transport inhibitors in vitro, and brain penetrant following systemic administration. When administered before KA, SKA-378 did not prevent seizures but still protected the hippocampus and several other limbic areas against SE-induced neurodegeneration at 3d. When SKA-377 - 379, (30 mg/kg) were administered after KA-induced SE, acute neural injury in the CA3, CA1 and CA4/hilus was also largely attenuated. Riluzole (10 mg/kg) blocks acute neural injury. Kinetic analysis of SKA-378 and riluzoles’ blockade of Ca(2+)-regulated MeAIB transport in neurons in vitro indicates that inhibition occurs via a non-competitive, indirect mechanism. Sodium channel Na(V)1.6 antagonism blocks neural activity regulated MeAIB/Gln transport in vitro (IC(50) = 60 nM) and SKA-378 is the most potent inhibitor of Na(V)1.6 (IC(50) = 28 μM) compared to Na(V)1.2 (IC(50) = 118 μM) in heterologous cells. However, pharmacokinetic analysis suggests that sodium channel blockade may not be the predominant mechanism of neuroprotection here. Riluzole and our novel aminothiazoles are agents that attenuate acute neural hippocampal injury following KA-induced SE and may help to understand mechanisms involved in the progression of epileptic disease.
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spelling pubmed-98438242023-02-15 Riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy Kyllo, Thomas Singh, Vikrant Shim, Heesung Latika, Singh Nguyen, Hai M. Chen, Yi-Je Terry, Ellen Wulff, Heike Erickson, Jeffrey D. Neuropharmacology Article Epileptogenic seizures, or status epilepticus (SE), leads to excitotoxic injury in hippocampal and limbic neurons in the kainic acid (KA) animal model of temporal lobe epilepsy (TLE). Here, we have further characterized neural activity regulated methylaminoisobutryic acid (MeAIB)/glutamine transport activity in mature rat hippocampal neurons in vitro that is inhibited by riluzole (IC(50) = 1 μM), an anti-convulsant benzothiazole agent. We screened a library of riluzole derivatives and identified SKA-41 followed by a second screen and synthesized several novel chlorinated aminothiazoles (SKA-377, SKA-378, SKA-379) that are also potent MeAIB transport inhibitors in vitro, and brain penetrant following systemic administration. When administered before KA, SKA-378 did not prevent seizures but still protected the hippocampus and several other limbic areas against SE-induced neurodegeneration at 3d. When SKA-377 - 379, (30 mg/kg) were administered after KA-induced SE, acute neural injury in the CA3, CA1 and CA4/hilus was also largely attenuated. Riluzole (10 mg/kg) blocks acute neural injury. Kinetic analysis of SKA-378 and riluzoles’ blockade of Ca(2+)-regulated MeAIB transport in neurons in vitro indicates that inhibition occurs via a non-competitive, indirect mechanism. Sodium channel Na(V)1.6 antagonism blocks neural activity regulated MeAIB/Gln transport in vitro (IC(50) = 60 nM) and SKA-378 is the most potent inhibitor of Na(V)1.6 (IC(50) = 28 μM) compared to Na(V)1.2 (IC(50) = 118 μM) in heterologous cells. However, pharmacokinetic analysis suggests that sodium channel blockade may not be the predominant mechanism of neuroprotection here. Riluzole and our novel aminothiazoles are agents that attenuate acute neural hippocampal injury following KA-induced SE and may help to understand mechanisms involved in the progression of epileptic disease. 2023-02-15 2022-11-24 /pmc/articles/PMC9843824/ /pubmed/36436594 http://dx.doi.org/10.1016/j.neuropharm.2022.109349 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Kyllo, Thomas
Singh, Vikrant
Shim, Heesung
Latika, Singh
Nguyen, Hai M.
Chen, Yi-Je
Terry, Ellen
Wulff, Heike
Erickson, Jeffrey D.
Riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy
title Riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy
title_full Riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy
title_fullStr Riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy
title_full_unstemmed Riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy
title_short Riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy
title_sort riluzole and novel naphthalenyl substituted aminothiazole derivatives prevent acute neural excitotoxic injury in a rat model of temporal lobe epilepsy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9843824/
https://www.ncbi.nlm.nih.gov/pubmed/36436594
http://dx.doi.org/10.1016/j.neuropharm.2022.109349
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