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Systemic injection of lidocaine induced expression of c-fos mRNA and protein in adult rat brain.

Chae Hj, Kang Js, SB Cho, Jin Bg, Won Sj, Gwag Bj, Kim Hr

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Abstract

Both direct and indirect environmental stress to the brain can increase the expression of transcription factor c-fos in various populations of neurons. In this study, we examined whether the intraperitoneal injections of lidocaine at doses inducing convulsions within 10 min, increased the level of c-fos mRNA and protein in forebrain areas. In in situ hybridization using [35S]UTP-labeled antisense c-fos, cRNA increased c-fos mRNA levels through the hippocampal formation, piriform cortex, septum, caudate-putamen, neostriatum, and amygdala within 2 hr. In parallel with the mRNA expression, c-fos protein immuno-reactivity was also observed in the same forebrain areas. In contrast to the seizure activity and wide-spread neuronal degeneration following kainate treatment, injections of lidocaine did not produce neuronal death within three days. The present study indicates that lidocaine induces convulsions and c-fos expression without causing neurotoxicity.

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Both direct and indirect environmental stress to the brain can increase the expression of transcription factor c-fos in various populations of neurons. In this study, we examined whether the intraperitoneal injections of lidocaine at doses inducing convulsions within 10 min, increased the level of c-fos mRNA and protein in forebrain areas. In in situ hybridization using [35S]UTP-labeled antisense c-fos, cRNA increased c-fos mRNA levels through the hippocampal formation, piriform cortex, septum, caudate-putamen, neostriatum, and amygdala within 2 hr. In parallel with the mRNA expression, c-fos protein immuno-reactivity was also observed in the same forebrain areas. In contrast to the seizure activity and wide-spread neuronal degeneration following kainate treatment, injections of lidocaine did not produce neuronal death within three days. The present study indicates that lidocaine induces convulsions and c-fos expression without causing neurotoxicity.

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Available abstract

Both direct and indirect environmental stress to the brain can increase the expression of transcription factor c-fos in various populations of neurons. In this study, we examined whether the intraperitoneal injections of lidocaine at doses inducing convulsions within 10 min, increased the level of c-fos mRNA and protein in forebrain areas. In in situ hybridization using [35S]UTP-labeled antisense c-fos, cRNA increased c-fos mRNA levels through the hippocampal formation, piriform cortex, septum, caudate-putamen, neostriatum, and amygdala within 2 hr. In parallel with the mRNA expression, c-fos protein immuno-reactivity was also observed in the same forebrain areas. In contrast to the seizure activity and wide-spread neuronal degeneration following kainate treatment, injections of lidocaine did not produce neuronal death within three days. The present study indicates that lidocaine induces convulsions and c-fos expression without causing neurotoxicity.

Key concepts: Piriform cortex, Forebrain, c-Fos, Messenger RNA, Hippocampal formation, Neurotoxicity, In situ hybridization, Chemistry

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Systemic injection of lidocaine induced expression of c-fos mRNA and protein in adult rat brain. — Research Paper | ScholarLens