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Trkb-IP3 Pathway Mediating Neuroprotection in Rat Hippocampal Neuronal Cell Culture Following Induction of Kainic Acid

BACKGROUND: Following brain injury, development of hippocampal sclerosis often led to the temporal lobe epilepsy which is sometimes resistant to common anti-epileptic drugs. Cellular and molecular changes underlying epileptogenesis in animal models were studied, however, the underlying mechanisms of...

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Autores principales: Chong, Pei Nei, Sangu, Muthuraju, Huat, Tee Jong, Reza, Faruque, Begum, Tahamina, Yusoff, Abdul Aziz Mohamed, Jaafar, Hasnan, Abdullah, Jafri Malin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Penerbit Universiti Sains Malaysia 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6422567/
https://www.ncbi.nlm.nih.gov/pubmed/30914877
http://dx.doi.org/10.21315/mjms2018.25.6.4
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author Chong, Pei Nei
Sangu, Muthuraju
Huat, Tee Jong
Reza, Faruque
Begum, Tahamina
Yusoff, Abdul Aziz Mohamed
Jaafar, Hasnan
Abdullah, Jafri Malin
author_facet Chong, Pei Nei
Sangu, Muthuraju
Huat, Tee Jong
Reza, Faruque
Begum, Tahamina
Yusoff, Abdul Aziz Mohamed
Jaafar, Hasnan
Abdullah, Jafri Malin
author_sort Chong, Pei Nei
collection PubMed
description BACKGROUND: Following brain injury, development of hippocampal sclerosis often led to the temporal lobe epilepsy which is sometimes resistant to common anti-epileptic drugs. Cellular and molecular changes underlying epileptogenesis in animal models were studied, however, the underlying mechanisms of kainic acid (KA) mediated neuronal damage in rat hippocampal neuron cell culture alone has not been elucidated yet. METHODS: Embryonic day 18 (E-18) rat hippocampus neurons were cultured with poly-L-lysine coated glass coverslips. Following optimisation, KA (0.5 μM), a chemoconvulsant agent, was administered at three different time-points (30, 60 and 90 min) to induce seizure in rat hippocampal neuronal cell culture. We examined cell viability, neurite outgrowth density and immunoreactivity of the hippocampus neuron culture by measuring brain derived neurotrophic factor (BDNF), γ-amino butyric acid A (GABA(A)) subunit α-1 (GABRA1), tyrosine receptor kinase B (TrkB), and inositol trisphosphate receptor (IP(3)R/IP3) levels. RESULTS: The results revealed significantly decreased and increased immunoreactivity changes in TrkB (a BDNF receptor) and IP(3)R, respectively, at 60 min time point. CONCLUSION: The current findings suggest that TrkB and IP3 could have a neuroprotective role which could be a potential pharmacological target for anti-epilepsy drugs.
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spelling pubmed-64225672019-03-26 Trkb-IP3 Pathway Mediating Neuroprotection in Rat Hippocampal Neuronal Cell Culture Following Induction of Kainic Acid Chong, Pei Nei Sangu, Muthuraju Huat, Tee Jong Reza, Faruque Begum, Tahamina Yusoff, Abdul Aziz Mohamed Jaafar, Hasnan Abdullah, Jafri Malin Malays J Med Sci Original Article BACKGROUND: Following brain injury, development of hippocampal sclerosis often led to the temporal lobe epilepsy which is sometimes resistant to common anti-epileptic drugs. Cellular and molecular changes underlying epileptogenesis in animal models were studied, however, the underlying mechanisms of kainic acid (KA) mediated neuronal damage in rat hippocampal neuron cell culture alone has not been elucidated yet. METHODS: Embryonic day 18 (E-18) rat hippocampus neurons were cultured with poly-L-lysine coated glass coverslips. Following optimisation, KA (0.5 μM), a chemoconvulsant agent, was administered at three different time-points (30, 60 and 90 min) to induce seizure in rat hippocampal neuronal cell culture. We examined cell viability, neurite outgrowth density and immunoreactivity of the hippocampus neuron culture by measuring brain derived neurotrophic factor (BDNF), γ-amino butyric acid A (GABA(A)) subunit α-1 (GABRA1), tyrosine receptor kinase B (TrkB), and inositol trisphosphate receptor (IP(3)R/IP3) levels. RESULTS: The results revealed significantly decreased and increased immunoreactivity changes in TrkB (a BDNF receptor) and IP(3)R, respectively, at 60 min time point. CONCLUSION: The current findings suggest that TrkB and IP3 could have a neuroprotective role which could be a potential pharmacological target for anti-epilepsy drugs. Penerbit Universiti Sains Malaysia 2018-11 2018-12-28 /pmc/articles/PMC6422567/ /pubmed/30914877 http://dx.doi.org/10.21315/mjms2018.25.6.4 Text en © Penerbit Universiti Sains Malaysia, 2018 This work is licensed under the terms of the Creative Commons Attribution (CC BY) (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Chong, Pei Nei
Sangu, Muthuraju
Huat, Tee Jong
Reza, Faruque
Begum, Tahamina
Yusoff, Abdul Aziz Mohamed
Jaafar, Hasnan
Abdullah, Jafri Malin
Trkb-IP3 Pathway Mediating Neuroprotection in Rat Hippocampal Neuronal Cell Culture Following Induction of Kainic Acid
title Trkb-IP3 Pathway Mediating Neuroprotection in Rat Hippocampal Neuronal Cell Culture Following Induction of Kainic Acid
title_full Trkb-IP3 Pathway Mediating Neuroprotection in Rat Hippocampal Neuronal Cell Culture Following Induction of Kainic Acid
title_fullStr Trkb-IP3 Pathway Mediating Neuroprotection in Rat Hippocampal Neuronal Cell Culture Following Induction of Kainic Acid
title_full_unstemmed Trkb-IP3 Pathway Mediating Neuroprotection in Rat Hippocampal Neuronal Cell Culture Following Induction of Kainic Acid
title_short Trkb-IP3 Pathway Mediating Neuroprotection in Rat Hippocampal Neuronal Cell Culture Following Induction of Kainic Acid
title_sort trkb-ip3 pathway mediating neuroprotection in rat hippocampal neuronal cell culture following induction of kainic acid
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6422567/
https://www.ncbi.nlm.nih.gov/pubmed/30914877
http://dx.doi.org/10.21315/mjms2018.25.6.4
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